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Devin-Leclerc J, Meng X, Delahaye F, Leclerc P, Baulieu EE, Catelli MG. Interaction and dissociation by ligands of estrogen receptor and Hsp90: the antiestrogen RU 58668 induces a protein synthesis-dependent clustering of the receptor in the cytoplasm. Mol Endocrinol 1998; 12:842-54. [PMID: 9626660 DOI: 10.1210/mend.12.6.0121] [Citation(s) in RCA: 43] [Impact Index Per Article: 1.6] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 02/07/2023] Open
Abstract
The in vivo interaction of estrogen receptor (ER) and Hsp90, demonstrated in the absence of hormone by a nuclear cotranslocation assay of the cytoplasmic Hsp90 with the karyophilic receptor, was disrupted by agonist and antagonist ligands, which, after dissociating the Hsp90, allowed the chaperone protein to be relocalized in the cytoplasm. The pure antiestrogen RU 58668 (RU), which was unable to stimulate an estrogen-dependent reporter gene and completely inhibited its estradiol-induced activity, also profoundly modified the subcellular distribution of ER in a specific time- and dose-dependent manner; ER appeared as speckled fluorescent clusters mainly located in the perinuclear region of the cytoplasm. The kinetics of appearance and reversal of the RU-dependent ER mislocalization in the presence or absence of cycloheximide demonstrated 1) that this effect was reversed by RU withdrawal or estradiol (E2) treatment, and 2) that cycloheximide with RU inhibited and reversed the ER cytoplasmic mislocalization induced by RU alone. These results point to a protein synthesis-dependent step in the mechanism of action of this antiestrogen. After RU treatment, a large portion of ER was found in the particulate fraction of the cytoplasm. However, confocal and electron microscopic analysis showed that ER clusters were not associated with specific cytoplasmic organelles or compartments. Using ER mutants, it was found that the ligand binding domain was sufficient for RU to produce receptor mislocalization, while the constitutive nuclear localization signals were dispensable. We propose that the antiestrogenic properties of RU are primarily due to the induction of an aggregation-prone receptor conformation that cannot undertake the constitutive and the ligand-induced nuclear localization function of the receptor because it is sequestered in the cytoplasm by fast turning over protein(s). We predict that antiestrogens able to block ER nuclear localization will behave as pure antihormones and will inhibit all the nuclear action of ER elicited by agonistic ligands or by ligand-independent mechanisms such as growth factor stimulation.
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Meng X, Mojaverian P, Doedée M, Lin E, Weinryb I, Chiang ST, Kowey PR. Bioavailability of amiodarone tablets administered with and without food in healthy subjects. Am J Cardiol 2001; 87:432-5. [PMID: 11179527 DOI: 10.1016/s0002-9149(00)01396-5] [Citation(s) in RCA: 43] [Impact Index Per Article: 1.8] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 11/24/2022]
Abstract
The tablet form of amiodarone is indicated for the treatment of recurrent ventricular fibrillation or hemodynamically unstable ventricular tachycardia. It is recommended that the tablet be taken with meals in cases of gastrointestinal intolerance. However, the effect of food on its bioavailability is unknown. The primary objective of this study was to determine the effect of food on the bioavailability of amiodarone. This was a 2-period crossover study conducted in 30 healthy male subjects. Subjects were randomly assigned to 1 of 2 sequences in which the following 2 treatments were administered: (1) a single-dose of amiodarone (three 200-mg Cordarone tablets) after an overnight fast, and (2) the same dose immediately after a standard high-fat breakfast. Plasma concentrations of amiodarone and desethylamiodarone (DEA) were measured for 6 weeks after each dose. Food enhanced the extent of absorption, resulting in a peak concentration (Cmax) and area under the curve (AUCT) 3.8 and 2.4 times the respective values under fasting conditions. Food also significantly increased the rate of absorption, reducing the time (tmax) to Cmax from 7.1 to 4.5 hours. The effect of food on DEA levels was significant but less pronounced. An in vitro dissolution study confirmed a marked difference between amiodarone release under simulated fed and fasting conditions. Thus, food significantly enhances both the rate and extent of absorption of amiodarone, which is attributed partially to the effect of food on drug release from its formulation. Therefore, it is recommended that amiodarone tablets be taken consistently with meals.
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Clinical Trial |
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Shames BD, Selzman CH, Pulido EJ, Meng X, Meldrum DR, McIntyre RC, Harken AH, Banerjee A. LPS-Induced NF-kappaB activation and TNF-alpha release in human monocytes are protein tyrosine kinase dependent and protein kinase C independent. J Surg Res 1999; 83:69-74. [PMID: 10210645 DOI: 10.1006/jsre.1998.5564] [Citation(s) in RCA: 42] [Impact Index Per Article: 1.6] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/22/2022]
Abstract
BACKGROUND Tumor necrosis factor alpha (TNF-alpha) is an important mediator of septic shock. Endotoxin (LPS) signal transduction in human monocytes leads to activation of nuclear factor-kappa B (NF-kappaB) and TNF-alpha release. Previous studies have implicated activation of both protein kinase C (PKC) and protein tyrosine kinases (PTK) in LPS-induced NF-kappaB activation and TNF-alpha production. We hypothesized that inhibition of either PKC or PTK would decrease LPS-induced NF-kappaB DNA binding and TNF-alpha release in human monocytes. MATERIALS AND METHODS Human monocytes were stimulated with PMA (50 ng/ml) alone or LPS (100 ng/ml) with and without a nonspecific serine/threonine protein kinase inhibitor staurosporine (Stauro), a specific pan-PKC inhibitor bisindolylmaleimide (Bis), or an inhibitor of PTK genistein (Gen). TNF-alpha release in culture supernatants was measured by an ELISA. NF-kappaB DNA binding was evaluated by electrophoretic mobility shift assay. RESULTS LPS increased NF-kappaB DNA binding and TNF-alpha release in human monocytes. Nonspecific protein kinase inhibition inhibited NF-kappaB activation and TNF-alpha release, while specific PKC inhibition with Bis had no effect on LPS-induced NF-kappaB DNA binding or TNF-alpha release. PTK inhibition with Gen attenuated both LPS-induced NF-kappaB DNA binding and TNF-alpha production in human monocytes. Direct activation of PKC with PMA induced both NF-kappaB activation and TNF-alpha production by human monocytes. CONCLUSIONS These results suggest that LPS-induced NF-kappaB activation and TNF-alpha release in human monocytes are independent of PKC activity. Furthermore, our results provide evidence that PTK plays a role in LPS-induced NF-kappaB activation and TNF-alpha release in human monocytes and thus could be a potential therapeutic target in inflammatory states.
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Meng X, Vander Ark A, Lee P, Hostetter G, Bhowmick NA, Matrisian LM, Williams BO, Miranti CK, Li X. Myeloid-specific TGF-β signaling in bone promotes basic-FGF and breast cancer bone metastasis. Oncogene 2015; 35:2370-8. [PMID: 26279296 DOI: 10.1038/onc.2015.297] [Citation(s) in RCA: 41] [Impact Index Per Article: 4.1] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/28/2015] [Revised: 06/04/2015] [Accepted: 06/29/2015] [Indexed: 12/25/2022]
Abstract
Breast cancer (BCa) bone metastases cause osteolytic bone lesions, which result from the interactions of metastatic BCa cells with osteoclasts and osteoblasts. Osteoclasts differentiate from myeloid lineage cells. To understand the cell-specific role of transforming growth factor beta (TGF-β) in the myeloid lineage, in BCa bone metastases, MDA-MB-231 BCa cells were intra-tibially or intra-cardially injected into LysM(Cre)/Tgfbr2(floxE2/floxE2) knockout (LysM(Cre)/Tgfbr2 KO) or Tgfbr2(floxE2/floxE2) mice. Metastatic bone lesion development was compared by analysis of both lesion number and area. We found that LysM(Cre)/Tgfbr2 knockout significantly decreased MDA-MB-231 bone lesion development in both the cardiac and tibial injection models. LysM(Cre)/Tgfbr2 knockout inhibited the tumor cell proliferation, angiogenesis and osteoclastogenesis of the metastatic bones. Cytokine array analysis showed that basic fibroblast growth factor (bFGF) was downregulated in MDA-MB-231-injected tibiae from the LysM(Cre)/Tgfbr2 KO group, and intravenous injection of the recombinant bFGF to LysM(Cre)/Tgfbr2 KO mice rescued the inhibited metastatic bone lesion development. The mechanism by which bFGF rescued the bone lesion development was by promotion of tumor cell proliferation through the downstream mitogen-activated protein kinase (MAPK)-extracellular signal-regulated kinase (ERK)-cFos pathway after binding to the FGF receptor 1 (FGFR1). Consistent with animal studies, we found that in human BCa bone metastatic tissues, TGF-β type II receptor (TβRII) and p-Smad2 were expressed in osteoclasts and tumor cells, and were correlated with the expression of FGFR1. Our studies suggest that myeloid-specific TGF-β signaling-mediated bFGF in the bone promotes BCa bone metastasis.
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Journal Article |
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Donnahoo KK, Meng X, Ao L, Ayala A, Shames BD, Cain MP, Harken AH, Meldrum DR. Differential cellular immunolocalization of renal tumour necrosis factor-alpha production during ischaemia versus endotoxaemia. Immunology 2001; 102:53-8. [PMID: 11168637 PMCID: PMC1783149 DOI: 10.1046/j.1365-2567.2001.01141.x] [Citation(s) in RCA: 40] [Impact Index Per Article: 1.7] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/13/1999] [Revised: 04/06/2000] [Accepted: 08/24/2000] [Indexed: 11/20/2022] Open
Abstract
Both renal ischaemia and endotoxaemia provoke renal dysfunction and cellular injury. Although the clinical manifestation of each insult is similar (global renal dysfunction), ischaemia and endotoxaemia induce different patterns of cellular injury. Tumour necrosis factor-alpha (TNF-alpha) has been implicated in both types of renal injury; however, it remains unknown whether differential cellular TNF-alpha expression accounts for these changes. We hypothesized that renal glomerular cells and tubular cells differentially express TNF-alpha in response to ischaemia compared with endotoxaemia. To investigate this hypothesis, male Sprague-Dawley rats were anaesthetized and exposed to various time-periods of renal ischaemia, with or without reperfusion (sham operation=negative control), or lipopolysaccharide (LPS) 0.5 mg/kg intraperitoneally (i.p.). The kidneys were harvested following renal injury, and rat TNF-alpha protein expression was determined (by enzyme-linked immunosorbent assay), as were TNF-alpha bioactivity (by WEHI-164 cell clone cytotoxicity assay) and TNF-alpha cellular localization (by immunohistochemistry). TNF-alpha protein expression and TNF-alpha bioactivity peaked following 1 hr of ischaemia and 2 hr of reperfusion (48 +/- 11 pg/mg of protein, P < 0.05, and 12 +/- 0.5 x 10-3 units/mg of protein, P < 0.05, respectively). The concentration of TNF-alpha increased to a similar extent following exposure to LPS; however, while TNF-alpha production following ischaemia-reperfusion injury localized predominantly to renal tubular epithelial cells, animals exposed to LPS demonstrated a primarily glomerular distribution of TNF-alpha production. Hence, the cellular localization of renal TNF-alpha production appears to be injury specific, i.e. renal tubular cells are the primary source of TNF-alpha following an ischaemic insult, whereas LPS induces glomerular TNF-alpha production. The cellular source of TNF-alpha following different insults may have therapeutic implications for targeted inhibition of TNF-alpha production.
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Comparative Study |
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Yambe T, Meng X, Hou X, Wang Q, Sekine K, Shiraishi Y, Watanabe M, Yamaguchi T, Shibata M, Kuwayama T, Maruyama M, Konno S, Nitta S. Cardio-ankle vascular index (CAVI) for the monitoring of the atherosclerosis after heart transplantation. Biomed Pharmacother 2005; 59 Suppl 1:S177-9. [PMID: 16275490 DOI: 10.1016/s0753-3322(05)80028-9] [Citation(s) in RCA: 39] [Impact Index Per Article: 2.0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/23/2022] Open
Abstract
Atherosclerosis has been reported to progress rapidly after heart transplantation. A quantitative diagnosis is required for the diagnosis of atherosclerosis after heart transplantation. In this study, we compared brachial-ankle pulse wave velocity (baPWV) and cardio-ankle vascular index (CAVI) for the diagnosis. The average values of both baPWV and CAVI in the seven cases after heart transplantation were found to be signif-icantly large in comparison to the average values of the normal healthy people of the same age group. When comparisons were made before and after the heart transplantation in a particular case, CAVI was stable and baPWV changed sharply. A lot of parameters such as blood pressure, blood volume, etc. have been reported to influence baPWV. The results of this study suggested that CAVI was a stable parameter in comparison to baPWV even after heart transplantation. Thus, CAVI may be useful in the diagnosis of arteriosclerosis after heart transplantation.
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Research Support, Non-U.S. Gov't |
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Kessler CM, Gill JC, White GC, Shapiro A, Arkin S, Roth DA, Meng X, Lusher JM. B-domain deleted recombinant factor VIII preparations are bioequivalent to a monoclonal antibody purified plasma-derived factor VIII concentrate: a randomized, three-way crossover study. Haemophilia 2005; 11:84-91. [PMID: 15810908 DOI: 10.1111/j.1365-2516.2005.01068.x] [Citation(s) in RCA: 39] [Impact Index Per Article: 2.0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/29/2022]
Abstract
BACKGROUND Deletion of the B-domain of recombinant blood coagulation factor VIII (BDDrFVIII) increases the manufacturing yield of the product but does not impair in vitro or in vivo functionality. BDDrFVIII (ReFacto) has been developed with the additional benefit of being formulated without human albumin. OBJECTIVE The primary objective of this three-way crossover-design study was to compare the pharmacokinetic (PK) parameters of two BDDrFVIII formulations (one reconstituted with 5 mL of sterile water, the other reconstituted with 4 mL sodium chloride 0.9% USP) with those of a plasma-derived, full-length FVIII preparation (Hemofil M) in patients with haemophilia A to determine bioequivalence. METHODS A series of blood samples were collected over a period of 48 h after i.v. administration of each of the FVIII preparations. Plasma FVIII activity was determined using a validated chromogenic substrate assay. Plasma FVIII activity vs. time curves was characterized for a standard set of PK parameter estimates. Two parameter estimates, the maximum plasma concentration (Cmax) and the area under plasma concentration vs. time curves (AUCs), were used to evaluate bioequivalence. The two preparations were considered bioequivalent if the 90% confidence intervals for the ratio of geometric means for Cmax and AUCs fell within the bioequivalence window of 80% to 125%. RESULTS/CONCLUSION Results show that each BDDrFVIII formulation is bioequivalent to Hemofil M and the two formulations of BDDrFVIII are bioequivalent to each other.
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Meng X, Jérôme V, Devin J, Baulieu EE, Catelli MG. Cloning of chicken hsp90 beta: the only vertebrate hsp90 insensitive to heat shock. Biochem Biophys Res Commun 1993; 190:630-6. [PMID: 7916597 DOI: 10.1006/bbrc.1993.1095] [Citation(s) in RCA: 38] [Impact Index Per Article: 1.2] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/27/2023]
Abstract
The cloning of chicken hsp90 beta, reported here, supports the hypothesis that the hsp90 alpha and beta genes are the result of a gene duplication event that occurred at the time of the emergence of vertebrates. Avian hsp90 beta mRNA is not inducible by thermal stress contrary to the mouse and human hsp90 alpha and beta mRNAs. Moreover, hsp90 beta mRNA level is not increased by mitogenic stimuli, like serum or insulin, which induce hsp90 alpha mRNA. Different functions and regulations of hsp90 alpha and beta will be probably more easily understood in the avian species than in higher vertebrates.
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Filipovic DM, Meng X, Reeves WB. Inhibition of PARP prevents oxidant-induced necrosis but not apoptosis in LLC-PK1 cells. THE AMERICAN JOURNAL OF PHYSIOLOGY 1999; 277:F428-36. [PMID: 10484526 DOI: 10.1152/ajprenal.1999.277.3.f428] [Citation(s) in RCA: 38] [Impact Index Per Article: 1.5] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 11/22/2022]
Abstract
Oxidant-induced cell injury has been implicated in the pathogenesis of several forms of acute renal failure. The present studies examined whether activation of poly(ADP-ribose)polymerase (PARP) by oxidant-induced DNA damage contributes to oxidant injury of renal epithelial cells. H2O2 exposure resulted in an increase in PARP activity and decreases in cell ATP and NAD content. These changes were significantly inhibited by 10 mM 3-aminobenzamide (3-ABA), a PARP inhibitor. In contrast, H2O2-induced DNA damage was not prevented by 3-ABA. Exposure of LLC-PK(1) cells to 1 mM H2O2 for 2 h induced necrotic cell death as measured by increased lactate dehydrogenase (LDH) release. 3-ABA completely prevented the H2O2-induced LDH release. Live/dead fluorescent staining confirmed the protection by 3-ABA. These results are consistent with the view that oxidant-induced DNA damage activates PARP and that the subsequent ATP and NAD depletion contribute to necrotic cell death. Of note, although protected from necrosis, cells treated with H2O2 and 3-ABA underwent apoptosis as evidenced by DNA fragmentation and bis-benzimide staining. In conclusion, activation of PARP contributes to oxidant-induced ATP depletion and necrosis in LLC-PK1 cells. However, PARP inhibition may target cells toward an apoptotic form of cell death.
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Chatrchyan S, Khachatryan V, Sirunyan A, Tumasyan A, Adam W, Bergauer T, Dragicevic M, Erö J, Fabjan C, Friedl M, Frühwirth R, Ghete V, Hartl C, Hörmann N, Hrubec J, Jeitler M, Kiesenhofer W, Knünz V, Krammer M, Krätschmer I, Liko D, Mikulec I, Rabady D, Rahbaran B, Rohringer H, Schöfbeck R, Strauss J, Taurok A, Treberer-Treberspurg W, Waltenberger W, Wulz CE, Mossolov V, Shumeiko N, Suarez Gonzalez J, Alderweireldt S, Bansal M, Bansal S, Cornelis T, De Wolf E, Janssen X, Knutsson A, Luyckx S, Mucibello L, Ochesanu S, Roland B, Rougny R, Van Haevermaet H, Van Mechelen P, Van Remortel N, Van Spilbeeck A, Blekman F, Blyweert S, D’Hondt J, Heracleous N, Kalogeropoulos A, Keaveney J, Kim T, Lowette S, Maes M, Olbrechts A, Strom D, Tavernier S, Van Doninck W, Van Mulders P, Van Onsem G, Villella I, Caillol C, Clerbaux B, De Lentdecker G, Favart L, Gay A, Léonard A, Marage P, Mohammadi A, Perniè L, Reis T, Seva T, Thomas L, Vander Velde C, Vanlaer P, Wang J, Adler V, Beernaert K, Benucci L, Cimmino A, Costantini S, Dildick S, Garcia G, Klein B, Lellouch J, Mccartin J, Ocampo Rios A, Ryckbosch D, Salva Diblen S, Sigamani M, Strobbe N, Thyssen F, Tytgat M, Walsh S, Yazgan E, Vischia P, Bunin P, Gavrilenko M, Golutvin I, Gorbunov I, Kamenev A, Karjavin V, Konoplyanikov V, Kozlov G, Lanev A, Zaganidis N, Malakhov A, Matveev V, Moisenz P, Palichik V, Perelygin V, Shmatov S, Skatchkov N, Smirnov V, Zarubin A, Golovtsov V, Basegmez S, Ivanov Y, Kim V, Levchenko P, Murzin V, Oreshkin V, Smirnov I, Sulimov V, Uvarov L, Vavilov S, Vorobyev A, Beluffi C, Vorobyev A, Andreev Y, Dermenev A, Gninenko S, Golubev N, Kirsanov M, Krasnikov N, Pashenkov A, Tlisov D, Toropin A, Bruno G, Epshteyn V, Gavrilov V, Lychkovskaya N, Popov V, Safronov G, Semenov S, Spiridonov A, Stolin V, Vlasov E, Zhokin A, Castello R, Andreev V, Azarkin M, Dremin I, Kirakosyan M, Leonidov A, Mesyats G, Rusakov S, Vinogradov A, Belyaev A, Boos E, Caudron A, Dudko L, Gribushin A, Khein L, Klyukhin V, Kodolova O, Lokhtin I, Obraztsov S, Petrushanko S, Proskuryakov A, Savrin V, Ceard L, Snigirev A, Azhgirey I, Bayshev I, Bitioukov S, Kachanov V, Kalinin A, Konstantinov D, Krychkine V, Petrov V, Ryutin R, Da Silveira G, Sobol A, Tourtchanovitch L, Troshin S, Tyurin N, Uzunian A, Volkov A, Adzic P, Djordjevic M, Ekmedzic M, Milosevic J, Delaere C, Aguilar-Benitez M, Alcaraz Maestre J, Battilana C, Calvo E, Cerrada M, Chamizo Llatas M, Colino N, De La Cruz B, Delgado Peris A, Domínguez Vázquez D, du Pree T, Fernandez Bedoya C, Fernández Ramos J, Ferrando A, Flix J, Fouz M, Garcia-Abia P, Gonzalez Lopez O, Goy Lopez S, Hernandez J, Josa M, Favart D, Merino G, Navarro De Martino E, Puerta Pelayo J, Quintario Olmeda A, Redondo I, Romero L, Soares M, Willmott C, Albajar C, de Trocóniz J, Forthomme L, Missiroli M, Brun H, Cuevas J, Fernandez Menendez J, Folgueras S, Gonzalez Caballero I, Lloret Iglesias L, Brochero Cifuentes J, Cabrillo I, Calderon A, Giammanco A, Chuang S, Duarte Campderros J, Fernandez M, Gomez G, Gonzalez Sanchez J, Graziano A, Lopez Virto A, Marco J, Marco R, Martinez Rivero C, Hollar J, Matorras F, Munoz Sanchez F, Piedra Gomez J, Rodrigo T, Rodríguez-Marrero A, Ruiz-Jimeno A, Scodellaro L, Vila I, Vilar Cortabitarte R, Abbaneo D, Jez P, Auffray E, Auzinger G, Bachtis M, Baillon P, Ball A, Barney D, Bendavid J, Benhabib L, Benitez J, Bernet C, Komm M, Bianchi G, Bloch P, Bocci A, Bonato A, Bondu O, Botta C, Breuker H, Camporesi T, Cerminara G, Christiansen T, Lemaitre V, Coarasa Perez J, Colafranceschi S, D’Alfonso M, d’Enterria D, Dabrowski A, David A, De Guio F, De Roeck A, De Visscher S, Di Guida S, Liao J, Dobson M, Dupont-Sagorin N, Elliott-Peisert A, Eugster J, Franzoni G, Funk W, Giffels M, Gigi D, Gill K, Girone M, Militaru O, Giunta M, Glege F, Gomez-Reino Garrido R, Gowdy S, Guida R, Hammer J, Hansen M, Harris P, Innocente V, Janot P, Nuttens C, Karavakis E, Kousouris K, Krajczar K, Lecoq P, Lourenço C, Magini N, Malgeri L, Mannelli M, Masetti L, Meijers F, Pagano D, Mersi S, Meschi E, Moortgat F, Mulders M, Musella P, Orsini L, Palencia Cortezon E, Perez E, Perrozzi L, Petrilli A, Pin A, Petrucciani G, Pfeiffer A, Pierini M, Pimiä M, Piparo D, Plagge M, Racz A, Reece W, Rolandi G, Rovere M, Piotrzkowski K, Sakulin H, Santanastasio F, Schäfer C, Schwick C, Sekmen S, Sharma A, Siegrist P, Silva P, Simon M, Sphicas P, Popov A, Steggemann J, Stieger B, Stoye M, Tsirou A, Veres G, Vlimant J, Wöhri H, Zeuner W, Bertl W, Deiters K, Quertenmont L, Erdmann W, Horisberger R, Ingram Q, Kaestli H, König S, Kotlinski D, Langenegger U, Renker D, Rohe T, Bachmair F, Selvaggi M, Bäni L, Bianchini L, Bortignon P, Buchmann M, Casal B, Chanon N, Deisher A, Dissertori G, Dittmar M, Donegà M, Vidal Marono M, Dünser M, Eller P, Grab C, Hits D, Lustermann W, Mangano B, Marini A, Martinez Ruiz del Arbol P, Meister D, Mohr N, Vizan Garcia J, Nägeli C, Nef P, Nessi-Tedaldi F, Pandolfi F, Pape L, Pauss F, Peruzzi M, Quittnat M, Ronga F, Rossini M, Beliy N, Starodumov A, Takahashi M, Tauscher L, Theofilatos K, Treille D, Wallny R, Weber H, Amsler C, Chiochia V, De Cosa A, Caebergs T, Favaro C, Hinzmann A, Hreus T, Ivova Rikova M, Kilminster B, Millan Mejias B, Ngadiuba J, Robmann P, Snoek H, Taroni S, Daubie E, Verzetti M, Yang Y, Cardaci M, Chen K, Ferro C, Kuo C, Li S, Lin W, Lu Y, Volpe R, Hammad G, Yu S, Bartalini P, Chang P, Chang Y, Chang Y, Chao Y, Chen K, Chen P, Dietz C, Grundler U, Alves G, Hou WS, Hsiung Y, Kao K, Lei Y, Liu Y, Lu RS, Majumder D, Petrakou E, Shi X, Shiu J, Correa Martins Junior M, Tzeng Y, Wang M, Wilken R, Asavapibhop B, Suwonjandee N, Adiguzel A, Bakirci M, Cerci S, Dozen C, Dumanoglu I, Martins T, Eskut E, Girgis S, Gokbulut G, Gurpinar E, Hos I, Kangal E, Kayis Topaksu A, Onengut G, Ozdemir K, Ozturk S, Pol M, Polatoz A, Sogut K, Sunar Cerci D, Tali B, Topakli H, Vergili M, Akin I, Aliev T, Bilin B, Bilmis S, Souza M, Deniz M, Gamsizkan H, Guler A, Karapinar G, Ocalan K, Ozpineci A, Serin M, Sever R, Surat U, Yalvac M, Aldá Júnior W, Zeyrek M, Gülmez E, Isildak B, Kaya M, Kaya O, Ozkorucuklu S, Bahtiyar H, Barlas E, Cankocak K, Günaydin Y, Carvalho W, Vardarlı F, Yücel M, Levchuk L, Sorokin P, Brooke J, Clement E, Cussans D, Flacher H, Frazier R, Goldstein J, Chinellato J, Grimes M, Heath G, Heath H, Jacob J, Kreczko L, Lucas C, Meng Z, Newbold D, Paramesvaran S, Poll A, Custódio A, Senkin S, Smith V, Williams T, Bell K, Belyaev A, Brew C, Brown R, Cockerill D, Coughlan J, Harder K, Da Costa E, Harper S, Ilic J, Olaiya E, Petyt D, Shepherd-Themistocleous C, Thea A, Tomalin I, Womersley W, Worm S, Baber M, De Jesus Damiao D, Bainbridge R, Buchmuller O, Burton D, Colling D, Cripps N, Cutajar M, Dauncey P, Davies G, Della Negra M, Ferguson W, De Oliveira Martins C, Fulcher J, Futyan D, Gilbert A, Guneratne Bryer A, Hall G, Hatherell Z, Hays J, Iles G, Jarvis M, Karapostoli G, Fonseca De Souza S, Kenzie M, Lane R, Lucas R, Lyons L, Magnan AM, Marrouche J, Mathias B, Nandi R, Nash J, Nikitenko A, Malbouisson H, Pela J, Pesaresi M, Petridis K, Pioppi M, Raymond D, Rogerson S, Rose A, Seez C, Sharp P, Sparrow A, Malek M, Tapper A, Vazquez Acosta M, Virdee T, Wakefield S, Wardle N, Cole J, Hobson P, Khan A, Kyberd P, Leggat D, Matos Figueiredo D, Leslie D, Martin W, Reid I, Symonds P, Teodorescu L, Turner M, Dittmann J, Hatakeyama K, Kasmi A, Liu H, Mundim L, Scarborough T, Charaf O, Cooper S, Henderson C, Rumerio P, Avetisyan A, Bose T, Fantasia C, Heister A, Lawson P, Nogima H, Lazic D, Rohlf J, Sperka D, St. John J, Sulak L, Alimena J, Bhattacharya S, Christopher G, Cutts D, Demiragli Z, Prado Da Silva W, Ferapontov A, Garabedian A, Heintz U, Jabeen S, Kukartsev G, Laird E, Landsberg G, Luk M, Narain M, Segala M, Santaolalla J, Sinthuprasith T, Speer T, Swanson J, Breedon R, Breto G, Calderon De La Barca Sanchez M, Chauhan S, Chertok M, Conway J, Conway R, Santoro A, Cox P, Erbacher R, Gardner M, Ko W, Kopecky A, Lander R, Miceli T, Pellett D, Pilot J, Ricci-Tam F, 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Bergholz M, Bethani A, Borras K, Burgmeier A, Cakir A, Calligaris L, Campbell A, Choudhury S, Costanza F, Diez Pardos C, Dooling S, Dorland T, Eckerlin G, Eckstein D, Eichhorn T, Flucke G, Geiser A, Grebenyuk A, Gunnellini P, Habib S, Hauk J, Hellwig G, Hempel M, Horton D, Jung H, Kasemann M, Katsas P, Kieseler J, Kleinwort C, Krämer M, Krücker D, Lange W, Leonard J, Lipka K, Lohmann W, Lutz B, Mankel R, Marfin I, Melzer-Pellmann IA, Meyer A, Mnich J, Mussgiller A, Naumann-Emme S, Novgorodova O, Nowak F, Perrey H, Petrukhin A, Pitzl D, Placakyte R, Raspereza A, Ribeiro Cipriano P, Riedl C, Ron E, Sahin M, Salfeld-Nebgen J, Saxena P, Schmidt R, Schoerner-Sadenius T, Schröder M, Stein M, Vargas Trevino A, Walsh R, Wissing C, Aldaya Martin M, Blobel V, Enderle H, Erfle J, Garutti E, Goebel K, Görner M, Gosselink M, Haller J, Höing R, Kirschenmann H, Klanner R, Kogler R, Lange J, Lapsien T, Marchesini I, Ott J, Peiffer T, Pietsch N, Rathjens D, Sander C, Schettler H, Schleper P, Schlieckau E, Schmidt A, Seidel M, Sibille J, Sola V, Stadie H, Steinbrück G, Troendle D, Usai E, Vanelderen L, Barth C, Baus C, Berger J, Böser C, Butz E, Chwalek T, De Boer W, Descroix A, Dierlamm A, Feindt M, Guthoff M, Hartmann F, Hauth T, Held H, Hoffmann K, Husemann U, Katkov I, Kornmayer A, Kuznetsova E, Lobelle Pardo P, Martschei D, Mozer M, Müller T, Niegel M, Nürnberg A, Oberst O, Quast G, Rabbertz K, Ratnikov F, Röcker S, Schilling FP, Schott G, Simonis H, Stober F, Ulrich R, Wagner-Kuhr J, Wayand S, Weiler T, Wolf R, Zeise M, Anagnostou G, Daskalakis G, Geralis T, Kesisoglou S, Kyriakis A, Loukas D, Markou A, Markou C, Ntomari E, Psallidas A, Topsis-giotis I, Gouskos L, Panagiotou A, Saoulidou N, Stiliaris E, Aslanoglou X, Evangelou I, Flouris G, Foudas C, Jones J, Kokkas P, Manthos N, Papadopoulos I, Paradas E, Bencze G, Hajdu C, Hidas P, Horvath D, Sikler F, Veszpremi V, Vesztergombi G, Zsigmond A, Beni N, Czellar S, Molnar J, Palinkas J, Szillasi Z, Karancsi J, Raics P, Trocsanyi 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Lopez-Fernandez R, Martínez-Ortega J, Sanchez-Hernandez A, Villasenor-Cendejas L, Carrillo Moreno S, Vazquez Valencia F, Salazar Ibarguen H, Casimiro Linares E, Morelos Pineda A, Krofcheck D, Butler P, Doesburg R, Reucroft S, Ahmad M, Asghar M, Butt J, Hoorani H, Khalid S, Khan W, Khurshid T, Qazi S, Shah M, Shoaib M, Bialkowska H, Bluj M, Boimska B, Frueboes T, Górski M, Kazana M, Nawrocki K, Romanowska-Rybinska K, Szleper M, Wrochna G, Zalewski P, Brona G, Bunkowski K, Cwiok M, Dominik W, Doroba K, Kalinowski A, Konecki M, Krolikowski J, Misiura M, Wolszczak W, Bargassa P, Beirão Da Cruz E Silva C, Faccioli P, Ferreira Parracho P, Gallinaro M, Nguyen F, Rodrigues Antunes J, Seixas J, Varela J. Measurement of four-jet production in proton-proton collisions ats=7 TeV. Int J Clin Exp Med 2014. [DOI: 10.1103/physrevd.89.092010] [Citation(s) in RCA: 37] [Impact Index Per Article: 3.4] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/06/2022]
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Abstract
The BRCA2 gene is involved in recombinational DNA repair and cytokinesis. BRCA2 defects are associated with chromosomal abnormalities, which is a hallmark of genomic instability that contributes to tumorigenesis. Here, we show that downregulation of a BRCA2 interacting protein (BCCIP) in HT1080 cells leads to chromosomal polyploidization, centrosome amplification and abnormal mitotic spindle formation. The BCCIP knockdown cells can enter mitosis and retain spindle checkpoint, but fail to complete cytokinesis. Our data suggest an essential role of BCCIP in the maintenance of genomic integrity.
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Lv F, Tang J, Luo Y, Li Z, Meng X, Zhu Z, Li T. Contrast-enhanced ultrasound imaging of active bleeding associated with hepatic and splenic trauma. Radiol Med 2011; 116:1076-82. [PMID: 21509551 DOI: 10.1007/s11547-011-0680-y] [Citation(s) in RCA: 36] [Impact Index Per Article: 2.6] [Reference Citation Analysis] [Abstract] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/08/2010] [Accepted: 08/30/2010] [Indexed: 12/26/2022]
Abstract
PURPOSE The aim of this study was to evaluate contrast-enhanced ultrasound (CEUS) imaging of active bleeding from hepatic and splenic trauma. MATERIALS AND METHODS Three hundred and ninety-two patients with liver or/and spleen trauma (179 liver and 217 spleen injuries), who underwent CEUS examinations following contrast-enhanced computed tomography (CT), were enrolled in this retrospective study over a period of >4 years. CEUS detected contrast medium extravasation or pooling in 16% (63/396) of liver or spleen lesions in 61 patients, which was confirmed by contrast-enhanced CT. Special attention was paid to observing the presence, location, and characteristics of the extravasated or pooled contrast medium. RESULTS The CEUS detection rate for active bleeding was not different from that of contrast-enhanced CT (p=0.333). Information from surgery, minimally invasive treatment and conservative treatment was used as reference standard, and the sensitivities of the two techniques were not different (p=0.122). Of 63 lesions in 61 patients, CEUS showed that 74.6% (47/63) (21 liver lesions and 26 spleen lesions) presented contrast medium extravasation or pooling, both in the organ and out the capsule, in 14.3% (9/63) and only outside the capsule in 11.1% (7/63). CEUS imaging of active bleeding from hepatic and splenic trauma presented various characteristics, and the sizes and shapes of the active bleeding due to contrast medium extravasation or pooling were variable. CONCLUSIONS CEUS can show the active bleeding associated with hepatic and splenic trauma with various imaging characteristics, thus making it possible to diagnose active bleeding using CEUS.
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Shames BD, McIntyre RC, Bensard DD, Pulido EJ, Selzman CH, Reznikov LL, Harken AH, Meng X. Suppression of tumor necrosis factor alpha production by cAMP in human monocytes: dissociation with mRNA level and independent of interleukin-10. J Surg Res 2001; 99:187-93. [PMID: 11469886 DOI: 10.1006/jsre.2001.6178] [Citation(s) in RCA: 36] [Impact Index Per Article: 1.5] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/22/2022]
Abstract
BACKGROUND Elevation of cellular cAMP inhibits lipopolysaccharide(LPS)-stimulated tumor necrosis factor alpha (TNF-alpha) production and increases the expression of interleukin (IL)-10 in mononuclear cells. TNF-alpha gene expression obligates activation of the transcription factor nuclear factor kappaB (NF-kappaB). Exogenous IL-10 inhibits NF-kappaB in monocytes and thus attenuates TNF-alpha production. We examined the role of endogenous IL-10 in the regulation of NF-kappaB activation and TNF-alpha production in human monocytes by cAMP. METHODS Human monocytes were stimulated with Escherichia coli LPS (100 ng/ml) with and without forskolin (FSK, 50 microM) or dibutyryl cyclic AMP (dbcAMP, 100 microM). Cytokine (TNF-alpha and IL-10) release was measured by immunoassay. TNF-alpha mRNA was measured by reverse transcription polymerase chain reaction, and NF-kappaB DNA binding activity was assessed by gel mobility shift assay. RESULTS cAMP-elevating agents inhibited LPS-stimulated TNF-alpha release (0.77 +/- 0.13 ng/10(6) cells in LPS + dbcAMP and 0.68 +/- 0.19 ng/10(6) cells in LPS + FSK, both P < 0.05 vs 1.61 +/- 0.34 ng/10(6) cells in LPS alone). Conversely, cAMP enhanced LPS-stimulated IL-10 release (100 +/- 21.5 pg/10(6) cells in LPS + dbcAMP and 110 +/- 25.2 pg/10(6) cells in LPS + FSK, both P < 0.05 vs 53.3 +/- 12.8 pg/10(6) cells in LPS alone). Neither TNF-alpha mRNA expression nor NF-kappaB activation stimulated by LPS was inhibited by the cAMP-elevating agents. Neutralization of IL-10 with a specific antibody did not attenuate the effect of cAMP-elevating agents on TNF-alpha production. CONCLUSION The results indicate that cAMP inhibits LPS-stimulated TNF-alpha production through a posttranscriptional mechanism that is independent of endogenous IL-10.
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Lin H, Zhang Y, Wang H, Xu D, Meng X, Shao Y, Lin C, Ye Y, Qian H, Wang S. Tissue inhibitor of metalloproteinases-3 transfer suppresses malignant behaviors of colorectal cancer cells. Cancer Gene Ther 2012; 19:845-51. [DOI: 10.1038/cgt.2012.70] [Citation(s) in RCA: 35] [Impact Index Per Article: 2.7] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/26/2022]
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Meng X, Brown JM, Ao L, Rowland RT, Nordeen SK, Banerjee A, Harken AH. Myocardial gene reprogramming associated with a cardiac cross-resistant state induced by LPS preconditioning. THE AMERICAN JOURNAL OF PHYSIOLOGY 1998; 275:C475-83. [PMID: 9688602 DOI: 10.1152/ajpcell.1998.275.2.c475] [Citation(s) in RCA: 35] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 02/08/2023]
Abstract
Lipopolysaccharide (LPS) preconditioning induces cardiac resistance to subsequent LPS or ischemia. This study tested the hypothesis that resistance to LPS and resistance to ischemia are two manifestations of cardiac cross-resistance which may involve reprogramming of cardiac gene expression. Rats were preconditioned with a single dose of LPS (0.5 mg/kg ip). Cardiac resistance to LPS was examined with a subsequent LPS challenge. Cardiac resistance to ischemia was determined by subjecting hearts to ischemia-reperfusion. Total RNA was extracted from myocardium for Northern analysis of mRNAs encoding protooncoproteins, antioxidant enzymes, and contractile protein isoforms. Rats preconditioned with LPS 1-7 days earlier acquired cardiac resistance to endotoxemic depression. This resistance temporally correlated with resistance to ischemia. Pretreatment with cycloheximide (0.5 mg/kg ip) abolished resistance to both LPS and ischemia. LPS preconditioning induced the expression of c-jun and c-fos mRNAs. LPS also transiently increased mRNAs encoding catalase and Mn-containing superoxide dismutase. The expression of both alpha- and beta-myosin heavy chain mRNAs was upregulated, whereas the expression of cardiac alpha-actin mRNA was suppressed. We conclude that 1) LPS induces sustained cardiac resistance to both LPS and ischemia, 2) resistance to ischemia and resistance to LPS seem to be two mechanistically indistinct components of cardiac cross-resistance, and 3) the cardiac cross-resistance is associated with reprogramming of myocardial gene expression.
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Abazov VM, Abbott B, Abolins M, Acharya BS, Adams DL, Adams M, Adams T, Agelou M, Agram JL, Ahmed SN, Ahn SH, Alexeev GD, Alkhazov G, Alton A, Alverson G, Alves GA, Anderson S, Andrieu B, Arnoud Y, Askew A, Asman B, Autermann C, Avila C, Babukhadia L, Bacon TC, Baden A, Baffioni S, Baldin B, Balm PW, Banerjee S, Barberis E, Bargassa P, Baringer P, Barnes C, Barreto J, Bartlett JF, Bassler U, Bauer D, Bean A, Beauceron S, Beaudette F, Begel M, Beri SB, Bernardi G, Bertram I, Besançon M, Besson A, Beuselinck R, Bezzubov VA, Bhat PC, Bhatnagar V, Bhattacharjee M, Binder M, Bischoff A, Black KM, Blackler I, Blazey G, Blekman F, Bloch D, Blumenschein U, Boehnlein A, Bolton TA, Bonamy P, Borcherding F, Borissov G, Bos K, Bose T, Boswell C, Brandt A, Briskin G, Brock R, Brooijmans G, Bross A, Buchholz D, Buehler M, Buescher V, Burdin S, Burnett TH, Busato E, Butler JM, Bystricky J, Canelli F, Carvalho W, Casey BCK, Casey D, Cason NM, Castilla-Valdez H, Chakrabarti S, Chakraborty D, Chan KM, Chandra A, Chapin D, Charles F, Cheu E, Chevalier L, Cho DK, Choi S, Chopra S, Christiansen T, Christofek L, Claes D, Clark AR, Clément C, Coadou Y, Colling DJ, Coney L, Connolly B, Cooper WE, Coppage D, Corcoran M, Coss J, Cothenet A, Cousinou MC, Crépé-Renaudin S, Cristetiu M, Cummings MAC, Cutts D, da Motta H, Davies B, Davies G, Davis GA, De K, de Jong P, de Jong SJ, De La Cruz-Burelo E, De Oliveira Martins C, Dean S, Del Signore K, Déliot F, Delsart PA, Demarteau M, Demina R, Demine P, Denisov D, Denisov SP, Desai S, Diehl HT, Diesburg M, Doidge M, Dong H, Doulas S, Duflot L, Dugad SR, Duperrin A, Dyer J, Dyshkant A, Eads M, Edmunds D, Edwards T, Ellison J, Elmsheuser J, Eltzroth JT, Elvira VD, Eno S, Ermolov P, Eroshin OV, Estrada J, Evans D, Evans H, Evdokimov A, Evdokimov VN, Fast J, Fatakia SN, Fein D, Feligioni L, Ferbel T, Fiedler F, Filthaut F, Fisk HE, Fleuret F, Fortner M, Fox H, Freeman W, Fu S, Fuess S, Galea CF, Gallas E, Galyaev E, Gao M, Garcia C, Garcia-Bellido A, Gardner J, Gavrilov V, Gelé D, Gelhaus R, Genser K, Gerber CE, Gershtein Y, Geurkov G, Ginther G, Goldmann K, Golling T, Gómez B, Gounder K, Goussiou A, Graham G, Grannis PD, Greder S, Green JA, Greenlee H, Greenwood ZD, Gregores EM, Grinstein S, Grivaz JF, Groer L, Grünendahl S, Grünewald MW, Gu W, Gurzhiev SN, Gutierrez G, Gutierrez P, Haas A, Hadley NJ, Haggerty H, Hagopian S, Hall I, Hall RE, Han C, Han L, Hanagaki K, Hanlet P, Harder K, Hauptman JM, Hauser R, Hays C, Hays J, Hebert C, Hedin D, Heinmiller JM, Heinson AP, Heintz U, Hensel C, Hesketh G, Hildreth MD, Hirosky R, Hobbs JD, Hoeneisen B, Hohlfeld M, Hong SJ, Hooper R, Hou S, Hu Y, Huang J, Huang Y, Iashvili I, Illingworth R, Ito AS, Jabeen S, Jaffré M, Jain S, Jain V, Jakobs K, Jenkins A, Jesik R, Jiang Y, Johns K, Johnson M, Johnson P, Jonckheere A, Jonsson P, Jöstlein H, Juste A, Kado MM, Käfer D, Kahl W, Kahn S, Kajfasz E, Kalinin AM, Kalk J, Karmanov D, Kasper J, Kau D, Ke Z, Kehoe R, Kermiche S, Kesisoglou S, Khanov A, Kharchilava A, Kharzheev YM, Kim KH, Klima B, Klute M, Kohli JM, Kopal M, Korablev V, Kotcher J, Kothari B, Kotwal AV, Koubarovsky A, Kouchner A, Kouznetsov O, Kozelov AV, Kozminski J, Krane J, Krishnaswamy MR, Krzywdzinski S, Kubantsev M, Kuleshov S, Kulik Y, Kunori S, Kupco A, Kurca T, Kuznetsov VE, Lager S, Lahrichi N, Landsberg G, Lazoflores J, Le Bihan AC, Lebrun P, Lee SW, Lee WM, Leflat A, Leggett C, Lehner F, Leonidopoulos C, Lewis P, Li J, Li QZ, Li X, Lima JGR, Lincoln D, Linn SL, Linnemann J, Lipton R, Lobo L, Lobodenko A, Lokajicek M, Lounis A, Lu J, Lubatti HJ, Lucotte A, Lueking L, Luo C, Lynker M, Lyon AL, Maciel AKA, Madaras RJ, Mättig P, Magnan AM, Maity M, Mal PK, Malik S, Malyshev VL, Manankov V, Mao HS, Maravin Y, Marshall T, Martens M, Martin MI, Mattingly SEK, Mayorov AA, McCarthy R, McCroskey R, McMahon T, Meder D, Melanson HL, Melnitchouk A, Meng X, Merkin M, Merritt KW, Meyer A, Miao C, Miettinen H, Mihalcea D, Mishra CS, Mitrevski J, Mokhov N, Molina J, Mondal NK, Montgomery HE, Moore RW, Mostafa M, Muanza GS, Mulders M, Mutaf YD, Nagy E, Nang F, Narain M, Narasimham VS, Naumann NA, Neal HA, Negret JP, Nelson S, Neustroev P, Noeding C, Nomerotski A, Novaes SF, Nunnemann T, Nurse E, O'Dell V, O'Neil DC, Oguri V, Oliveira N, Olivier B, Oshima N, Otero y Garzón GJ, Padley P, Papageorgiou K, Parashar N, Park J, Park SK, Parsons J, Partridge R, Parua N, Patwa A, Perea PM, Perez E, Peters O, Pétroff P, Petteni M, Phaf L, Piegaia R, Podesta-Lerma PLM, Podstavkov VM, Pope BG, Popkov E, Prado da Silva WL, Prosper HB, Protopopescu S, Przybycien MB, Qian J, Quadt A, Quinn B, Rani KJ, Rapidis PA, Ratoff PN, Reay NW, Renardy JF, Reucroft S, Rha J, Ridel M, Rijssenbeek M, Ripp-Baudot I, Rizatdinova F, Royon C, Rubinov P, Ruchti R, Sabirov BM, Sajot G, Sánchez-Hernández A, Sanders MP, Santoro A, Savage G, Sawyer L, Scanlon T, Schamberger RD, Schellman H, Schieferdecker P, Schmitt C, Schukin A, Schwartzman A, Schwienhorst R, Sengupta S, Shabalina E, Shary V, Shephard WD, Shpakov D, Sidwell RA, Simak V, Sirotenko V, Skow D, Slattery P, Smith RP, Smolek K, Snow GR, Snow J, Snyder S, Söldner-Rembold S, Song X, Song Y, Sonnenschein L, Sopczak A, Sorín V, Sosebee M, Soustruznik K, Souza M, Stanton NR, Stark J, Steele J, Steinbrück G, Stevenson K, Stolin V, Stone A, Stoyanova DA, Strandberg J, Strang MA, Strauss M, Ströhmer R, Strovink M, Stutte L, Sznajder A, Talby M, Tamburello P, Taylor W, Telford P, Temple J, Tentindo-Repond S, Thomas E, Thooris B, Tomoto M, Toole T, Torborg J, Towers S, Trefzger T, Trincaz-Duvoid S, Trippe TG, Tuchming B, Tully C, Turcot AS, Tuts PM, Uvarov L, Uvarov S, Uzunyan S, Vachon B, Van Kooten R, van Leeuwen WM, Varelas N, Varnes EW, Vasilyev I, Vaupel M, Verdier P, Vertogradov LS, Verzocchi M, Villeneuve-Seguier F, Vlimant JR, Von Toerne E, Vreeswijk M, Vu Anh T, Wahl HD, Walker R, Wallace N, Wang ZM, Warchol J, Warsinsky M, Watts G, Wayne M, Weber M, Weerts H, Wegner M, White A, White V, Whiteson D, Wicke D, Wijngaarden DA, Wilson GW, Wimpenny SJ, Wittlin J, Wlodek T, Wobisch M, Womersley J, Wood DR, Wu Z, Wyatt TR, Xu Q, Xuan N, Yamada R, Yasuda T, Yatsunenko YA, Yen Y, Yip K, Youn SW, Yu J, Yurkewicz A, Zabi A, Zatserklyaniy A, Zdrazil M, Zeitnitz C, Zhang B, Zhang D, Zhang X, Zhao T, Zhao Z, Zheng H, Zhou B, Zhou Z, Zhu J, Zielinski M, Zieminska D, Zieminski A, Zitoun R, Zutshi V, Zverev EG, Zylberstejn A. Observation and properties of the X(3872) decaying to J/psipi(+)pi(-) in pp collisions at sqrt[s]=1.96 TeV. PHYSICAL REVIEW LETTERS 2004; 93:162002. [PMID: 15524981 DOI: 10.1103/physrevlett.93.162002] [Citation(s) in RCA: 34] [Impact Index Per Article: 1.6] [Reference Citation Analysis] [Abstract] [Track Full Text] [Subscribe] [Scholar Register] [Received: 05/05/2004] [Indexed: 05/24/2023]
Abstract
We report the observation of the X(3872) in the J/psipi(+)pi(-) channel, with J/psi decaying to mu(+)mu(-), in pp collisions at sqrt[s]=1.96 TeV. Using approximately 230 pb(-1) of data collected with the Run II D0 detector, we observe 522+/-100 X(3872) candidates. The mass difference between the X(3872) state and the J/psi is measured to be 774.9+/-3.1(stat)+/-3.0(syst) MeV/c(2). We have investigated the production and decay characteristics of the X(3872) and find them to be similar to those of the psi(2S) state.
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Raeburn CD, Calkins CM, Zimmerman MA, Song Y, Ao L, Banerjee A, Meng X, Harken AH. Vascular cell adhesion molecule--1 expression is obligatory for endotoxin-induced myocardial neutrophil accumulation and contractile dysfunction. Surgery 2001; 130:319-25. [PMID: 11490366 DOI: 10.1067/msy.2001.116410] [Citation(s) in RCA: 34] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/22/2022]
Abstract
BACKGROUND Sepsis-induced cardiac dysfunction occurs commonly in critically ill patients and is associated with high mortality rates. Neutrophils play a central role in sepsis-induced lung and liver injury; however, the mechanism of sepsis-induced cardiac dysfunction remains unclear. Vascular cell adhesion molecule-1 (VCAM-1) has been implicated in neutrophil-mediated liver injury during endotoxemia and is also expressed in myocardium. The purposes of this study were to examine the temporal relationship of myocardial VCAM-1 expression with neutrophil accumulation during endotoxemia and to determine whether VCAM-1 mediates neutrophil accumulation and cardiac dysfunction during endotoxemia. METHODS Mice were subjected to lipopolysaccharide (LPS; 0.5 mg/kg, intraperitoneally). Myocardial VCAM-1 expression and neutrophil accumulation were determined by immunofluorescence staining. Cardiac performance with or without VCAM-1 blocking antibody (5 mg/kg, intravenously) was determined by the Langendorff technique. RESULTS LPS caused a time-dependent increase in both myocardial VCAM-1 expression and neutrophil accumulation. At 6 hours after LPS, the immunofluorescent intensity for VCAM-1 increased from 2.5 +/- 0.6 x 10(6) in saline solution controls to 19.9 +/- 3.5 x 10(6) (P <.05, analysis of variance), and neutrophil count increased from 2.4 +/- 1.7/mm(2) in saline solution controls to 13.0 +/- 2.5/mm(2) (P <.05). Left ventricular developed pressure was decreased maximally at 6 hours after LPS compared with saline solution controls (29.1 +/- 1.1 mm Hg vs 53.1 +/- 3.9 mm Hg; P <.05). Treatment with VCAM-1 monoclonal antibody abrogated both myocardial neutrophil accumulation and cardiac dysfunction during endotoxemia. CONCLUSIONS LPS-induced myocardial dysfunction is associated with increased expression of VCAM-1 and with neutrophil accumulation. Blockade of VCAM-1 abrogates myocardial neutrophil accumulation and preserves cardiac function during endotoxemia, which supports a role for VCAM-1 as a therapeutic target for myocardial protection during sepsis.
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Chatrchyan S, Khachatryan V, Sirunyan AM, Tumasyan A, Adam W, Aguilo E, Bergauer T, Dragicevic M, Erö J, Fabjan C, Friedl M, Frühwirth R, Ghete VM, Hörmann N, Hrubec J, Jeitler M, Kiesenhofer W, Knünz V, Krammer M, Krätschmer I, Liko D, Mikulec I, Pernicka M, Rabady D, Rahbaran B, Rohringer C, Rohringer H, Schöfbeck R, Strauss J, Taurok A, Waltenberger W, Wulz CE, Mossolov V, Shumeiko N, Suarez Gonzalez J, Alderweireldt S, Bansal M, Bansal S, Cornelis T, De Wolf EA, Janssen X, Luyckx S, Mucibello L, Ochesanu S, Roland B, Rougny R, Van Haevermaet H, Van Mechelen P, Van Remortel N, Van Spilbeeck A, Blekman F, Blyweert S, D'Hondt J, Gonzalez Suarez R, Kalogeropoulos A, Maes M, Olbrechts A, Tavernier S, Van Doninck W, Van Mulders P, Van Onsem GP, Villella I, Clerbaux B, De Lentdecker G, Dero V, Gay APR, Hreus T, Léonard A, Marage PE, Mohammadi A, Reis T, Thomas L, Vander Velde C, Vanlaer P, Wang J, Adler V, Beernaert K, Cimmino A, Costantini S, Garcia G, Grunewald M, Klein B, Lellouch J, Marinov A, McCartin J, Ocampo Rios AA, Ryckbosch D, Sigamani M, Strobbe N, Thyssen F, Tytgat M, Walsh S, Yazgan E, Zaganidis N, Basegmez S, Bruno G, Castello R, Ceard L, Delaere C, du Pree T, Favart D, Forthomme L, Giammanco A, Hollar J, Lemaitre V, Liao J, Militaru O, Nuttens C, Pagano D, Pin A, Piotrzkowski K, Selvaggi M, Vizan Garcia JM, Beliy N, Caebergs T, Daubie E, Hammad GH, Alves GA, Correa Martins Junior M, Martins T, Pol ME, Souza MHG, Aldá Júnior WL, Carvalho W, Chinellato J, Custódio A, Da Costa EM, De Jesus Damiao D, De Oliveira Martins C, Fonseca De Souza S, Malbouisson H, Malek M, Matos Figueiredo D, Mundim L, Nogima H, Prado Da Silva WL, Santoro A, Soares Jorge L, Sznajder A, Tonelli Manganote EJ, Vilela Pereira A, Anjos TS, Bernardes CA, Dias FA, Fernandez Perez Tomei TR, Gregores EM, Lagana C, Marinho F, Mercadante PG, Novaes SF, Padula SS, Genchev V, Iaydjiev P, Piperov S, Rodozov M, Stoykova S, Sultanov G, Tcholakov V, Trayanov R, Vutova M, Dimitrov A, Hadjiiska R, Kozhuharov V, Litov L, Pavlov B, Petkov P, Bian JG, Chen GM, Chen HS, Jiang CH, Liang D, Liang S, Meng X, Tao J, Wang J, Wang X, Wang Z, Xiao H, Xu M, Zang J, Zhang Z, Asawatangtrakuldee C, Ban Y, Guo Y, Li W, Liu S, Mao Y, Qian SJ, Teng H, Wang D, Zhang L, Zou W, Avila C, Carrillo Montoya CA, Gomez JP, Gomez Moreno B, Osorio Oliveros AF, Sanabria JC, Godinovic N, Lelas D, Plestina R, Polic D, Puljak I, Antunovic Z, Kovac M, Brigljevic V, Duric S, Kadija K, Luetic J, Mekterovic D, Morovic S, Tikvica L, Attikis A, Mavromanolakis G, Mousa J, Nicolaou C, Ptochos F, Razis PA, Finger M, Finger M, Assran Y, Elgammal S, Ellithi Kamel A, Kuotb Awad AM, Mahmoud MA, Radi A, Kadastik M, Müntel M, Murumaa M, Raidal M, Rebane L, Tiko A, Eerola P, Fedi G, Voutilainen M, Härkönen J, Heikkinen A, Karimäki V, Kinnunen R, Kortelainen MJ, Lampén T, Lassila-Perini K, Lehti S, Lindén T, Luukka P, Mäenpää T, Peltola T, Tuominen E, Tuominiemi J, Tuovinen E, Ungaro D, Wendland L, Korpela A, Tuuva T, Besancon M, Choudhury S, Couderc F, Dejardin M, Denegri D, Fabbro B, Faure JL, Ferri F, Ganjour S, Givernaud A, Gras P, Hamel de Monchenault G, Jarry P, Locci E, Malcles J, Millischer L, Nayak A, Rander J, Rosowsky A, Titov M, Baffioni S, Beaudette F, Benhabib L, Bianchini L, Bluj M, Busson P, Charlot C, Daci N, Dahms T, Dalchenko M, Dobrzynski L, Florent A, Granier de Cassagnac R, Haguenauer M, Miné P, Mironov C, Naranjo IN, Nguyen M, Ochando C, Paganini P, Sabes D, Salerno R, Sirois Y, Veelken C, Zabi A, Agram JL, Andrea J, Bloch D, Bodin D, Brom JM, Chabert EC, Collard C, Conte E, Drouhin F, Fontaine JC, Gelé D, Goerlach U, Juillot P, Le Bihan AC, Van Hove P, Beauceron S, Beaupere N, Bondu O, Boudoul G, Brochet S, Chasserat J, Chierici R, Contardo D, Depasse P, El Mamouni H, Fay J, Gascon S, Gouzevitch M, Ille B, Kurca T, Lethuillier M, Mirabito L, Perries S, Sgandurra L, Sordini V, Tschudi Y, Verdier P, Viret S, Tsamalaidze Z, Autermann C, Beranek S, Calpas B, Edelhoff M, Feld L, Heracleous N, Hindrichs O, Jussen R, Klein K, Merz J, Ostapchuk A, Perieanu A, Raupach F, Sammet J, Schael S, Sprenger D, Weber H, Wittmer B, Zhukov V, Ata M, Caudron J, Dietz-Laursonn E, Duchardt D, Erdmann M, Fischer R, Güth A, Hebbeker T, Heidemann C, Hoepfner K, Klingebiel D, Kreuzer P, Merschmeyer M, Meyer A, Olschewski M, Padeken K, Papacz P, Pieta H, Reithler H, Schmitz SA, Sonnenschein L, Steggemann J, Teyssier D, Thüer S, Weber M, Bontenackels M, Cherepanov V, Erdogan Y, Flügge G, Geenen H, Geisler M, Haj Ahmad W, Hoehle F, Kargoll B, Kress T, Kuessel Y, Lingemann J, Nowack A, Nugent IM, Perchalla L, Pooth O, Sauerland P, Stahl A, Aldaya Martin M, Asin I, Bartosik N, Behr J, Behrenhoff W, Behrens U, Bergholz M, Bethani A, Borras K, Burgmeier A, Cakir A, Calligaris L, Campbell A, Castro E, Costanza F, Dammann D, Diez Pardos C, Dorland T, Eckerlin G, Eckstein D, Flucke G, Geiser A, Glushkov I, Gunnellini P, Habib S, Hauk J, Hellwig G, Jung H, Kasemann M, Katsas P, Kleinwort C, Kluge H, Knutsson A, Krämer M, Krücker D, Kuznetsova E, Lange W, Leonard J, Lohmann W, Lutz B, Mankel R, Marfin I, Marienfeld M, Melzer-Pellmann IA, Meyer AB, Mnich J, Mussgiller A, Naumann-Emme S, Novgorodova O, Nowak F, Olzem J, Perrey H, Petrukhin A, Pitzl D, Raspereza A, Ribeiro Cipriano PM, Riedl C, Ron E, Rosin M, Salfeld-Nebgen J, Schmidt R, Schoerner-Sadenius T, Sen N, Spiridonov A, Stein M, Walsh R, Wissing C, Blobel V, Enderle H, Erfle J, Gebbert U, Görner M, Gosselink M, Haller J, Hermanns T, Höing RS, Kaschube K, Kaussen G, Kirschenmann H, Klanner R, Lange J, Peiffer T, Pietsch N, Rathjens D, Sander C, Schettler H, Schleper P, Schlieckau E, Schmidt A, Schröder M, Schum T, Seidel M, Sibille J, Sola V, Stadie H, Steinbrück G, Thomsen J, Vanelderen L, Barth C, Baus C, Berger J, Böser C, Chwalek T, De Boer W, Descroix A, Dierlamm A, Feindt M, Guthoff M, Hackstein C, Hartmann F, Hauth T, Heinrich M, Held H, Hoffmann KH, Husemann U, Katkov I, Komaragiri JR, Lobelle Pardo P, Martschei D, 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A, Saka H, Stickland D, Tully C, Werner JS, Zenz SC, Zuranski A, Brownson E, Lopez A, Mendez H, Ramirez Vargas JE, Alagoz E, Barnes VE, Benedetti D, Bolla G, Bortoletto D, De Mattia M, Everett A, Hu Z, Jones M, Koybasi O, Kress M, Laasanen AT, Leonardo N, Maroussov V, Merkel P, Miller DH, Neumeister N, Shipsey I, Silvers D, Svyatkovskiy A, Vidal Marono M, Yoo HD, Zablocki J, Zheng Y, Guragain S, Parashar N, Adair A, Akgun B, Boulahouache C, Ecklund KM, Geurts FJM, Li W, Padley BP, Redjimi R, Roberts J, Zabel J, Betchart B, Bodek A, Chung YS, Covarelli R, de Barbaro P, Demina R, Eshaq Y, Ferbel T, Garcia-Bellido A, Goldenzweig P, Han J, Harel A, Miner DC, Vishnevskiy D, Zielinski M, Bhatti A, Ciesielski R, Demortier L, Goulianos K, Lungu G, Malik S, Mesropian C, Arora S, Barker A, Chou JP, Contreras-Campana C, Contreras-Campana E, Duggan D, Ferencek D, Gershtein Y, Gray R, Halkiadakis E, Hidas D, Lath A, Panwalkar S, Park M, Patel R, Rekovic V, Robles J, Rose K, Salur S, Schnetzer S, Seitz C, Somalwar S, Stone R, Thomas S, Walker M, Cerizza G, Hollingsworth M, Spanier S, Yang ZC, York A, Eusebi R, Flanagan W, Gilmore J, Kamon T, Khotilovich V, Montalvo R, Osipenkov I, Pakhotin Y, Perloff A, Roe J, Safonov A, Sakuma T, Sengupta S, Suarez I, Tatarinov A, Toback D, Akchurin N, Damgov J, Dragoiu C, Dudero PR, Jeong C, Kovitanggoon K, Lee SW, Libeiro T, Volobouev I, Appelt E, Delannoy AG, Florez C, Greene S, Gurrola A, Johns W, Kurt P, Maguire C, Melo A, Sharma M, Sheldon P, Snook B, Tuo S, Velkovska J, Arenton MW, Balazs M, Boutle S, Cox B, Francis B, Goodell J, Hirosky R, Ledovskoy A, Lin C, Neu C, Wood J, Gollapinni S, Harr R, Karchin PE, Kottachchi Kankanamge Don C, Lamichhane P, Sakharov A, Anderson M, Belknap DA, Borrello L, Carlsmith D, Cepeda M, Dasu S, Friis E, Gray L, Grogg KS, Grothe M, Hall-Wilton R, Herndon M, Hervé A, Klabbers P, Klukas J, Lanaro A, Lazaridis C, Loveless R, Mohapatra A, Mozer MU, Ojalvo I, Palmonari F, Pierro GA, Ross I, Savin A, Smith WH, Swanson J. Study of the mass and spin-parity of the Higgs boson candidate via its decays to Z boson pairs. PHYSICAL REVIEW LETTERS 2013; 110:081803. [PMID: 23473131 DOI: 10.1103/physrevlett.110.081803] [Citation(s) in RCA: 33] [Impact Index Per Article: 2.8] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 12/29/2012] [Indexed: 06/01/2023]
Abstract
A study is presented of the mass and spin-parity of the new boson recently observed at the LHC at a mass near 125 GeV. An integrated luminosity of 17.3 fb(-1), collected by the CMS experiment in proton-proton collisions at center-of-mass energies of 7 and 8 TeV, is used. The measured mass in the ZZ channel, where both Z bosons decay to e or μ pairs, is 126.2 ± 0.6(stat) ± 0.2(syst) GeV. The angular distributions of the lepton pairs in this channel are sensitive to the spin-parity of the boson. Under the assumption of spin 0, the present data are consistent with the pure scalar hypothesis, while disfavoring the pure pseudoscalar hypothesis.
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Yu W, Qin M, Xu L, van Kuijk C, Meng X, Xing X, Cao J, Genant HK. Normal changes in spinal bone mineral density in a Chinese population: assessment by quantitative computed tomography and dual-energy X-ray absorptiometry. Osteoporos Int 1999; 9:179-87. [PMID: 10367047 DOI: 10.1007/s001980050133] [Citation(s) in RCA: 33] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Indexed: 10/28/2022]
Abstract
This study was designed to determine age- and gender-based normative values for spinal bone mineral density (BMD) in a Chinese population. In addition, we compared our data with those of other countries and populations. Four hundred and forty-three healthy Chinese subjects, aged 10-79 years (189 males, mean age 46.9 years; 254 females, mean age 45.7 years) were recruited for BMD assessment. BMD was measured by quantitative computed tomography (QCT) and dual-energy X-ray absorptiometry (DXA), including posteroanterior DXA (PA-DXA), lateral DXA (L-DXA) and midlateral DXA (mL-DXA). For both genders, BMD values peaked in the 10-19 year age group when measured by QCT, and in the 30-39 year age group when measured by PA-DXA. BMD values decreased with age after reaching peak bone density in males and females for all measurements, except for PA-DXA in males. Male BMD values by DXA tended to increase beginning with the 60-69 age group through the 70-79 age group whether by PA-DXA, or L-DXA and mL-DXA. However, male QCT data showed stable BMD values among these two older groups. Comparative results showed female QCT data were higher in the 20-39 age group and lower after the 40-49 age group compared with American females. The peak BMD value by PA-DXA in Chinese females was reached in the same age group as American and European females and was similar in magnitude (p > 0.05). However, the peak BMD value for Chinese females was reached earlier and was significantly higher than that observed in Japanese females (p < 0.001). We conclude that the age group in which the peak BMD values are reached is different depending on the technique used, as is the calculated age-related rate of bone loss. It can be speculated that such differences reflect different timing for bone maturation in cancellous and cortical bone.
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Calkins CM, Heimbach JK, Bensard DD, Song Y, Raeburn CD, Meng X, McIntyre RC. TNF receptor I mediates chemokine production and neutrophil accumulation in the lung following systemic lipopolysaccharide. J Surg Res 2001; 101:232-7. [PMID: 11735280 DOI: 10.1006/jsre.2001.6274] [Citation(s) in RCA: 32] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/22/2022]
Abstract
BACKGROUND Tumor necrosis factor (TNF)-alpha is a critical effector of lipopolysaccharide (LPS)-induced acute lung injury, and its effects are mediated by two structurally related receptors, RI and RII. Cellular adhesion molecules and C-X-C chemokines (Keratinocyte chemoattractant (KC) and macrophage inflammatory protein [MIP]-2) regulate tissue neutrophil polymorphonuclear neutrophil (PMN) accumulation in a multitude of inflammatory states. We hypothesized that TNFRI signaling dictates PMN accumulation in the lung via regulation of chemokine molecule production. Therefore, the purposes of this study were to (1) delineate LPS-induced lung TNF-alpha production and (2) characterize the contribution of both TNF receptors to lung chemokine production and neutrophil influx following systemic LPS. METHODS Wild-type or TNFRI and TNFRII knockout (KO) mice were injected with vehicle (saline) or LPS (Escherichia coli 0.5 mg/kg intraperitoneally). After 2, 4, 6, or 24 h, lungs were analyzed for TNF-alpha and chemokine (KC and MIP-2) protein expression (enzyme-linked immunosorbent assay) and PMN accumulation (myeloperoxidase assay). RESULTS There was an increase in total lung TNF-alpha (vehicle, 5.0 +/- 1.2 pg/mg total protein vs LPS, 950 +/- 318; P < 0.05) after LPS. Lung chemokine production and PMN accumulation were also increased compared to vehicle-injected mice. Lung chemokine production and PMN accumulation were significantly lower in TNFRI KO, but not TNFRII KO, mice, despite no difference in TNF-alpha production (TNFRI KO, 925 +/- 301 vs TNFRII KO, 837 +/- 267, P = 0.82). CONCLUSIONS Acute lung injury following systemic LPS administration is characterized by increased lung (1) TNF-alpha production, (2) C-X-C chemokine production, and (3) neutrophil accumulation. The maximal effect of LPS-induced lung neutrophil accumulation appears to be dependent upon the TNFRI receptor but not the TNFRII receptor. .
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Hemavathy K, Meng X, Ip YT. Differential regulation of gastrulation and neuroectodermal gene expression by Snail in the Drosophila embryo. Development 1997; 124:3683-91. [PMID: 9367424 DOI: 10.1242/dev.124.19.3683] [Citation(s) in RCA: 32] [Impact Index Per Article: 1.1] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/20/2022]
Abstract
The initiation of mesoderm differentiation in the Drosophila embryo requires the gene products of twist and snail. In either mutant, the ventral cell invagination during gastrulation is blocked and no mesoderm-derived tissue is formed. One of the functions of Snail is to repress neuroectodermal genes and restrict their expressions to the lateral regions. The derepression of the neuroectodermal genes into the ventral region in snail mutant is a possible cause of defects in gastrulation and in mesoderm differentiation. To investigate such possibility, we analysed a series of snail mutant alleles. We found that different neuroectodermal genes respond differently in various snail mutant background. Due to the differential response of target genes, one of the mutant alleles, V2, that has reduced Snail function showed an intermediate phenotype. In V2 embryos, neuroectodermal genes, such as single-minded and rhomboid, are derepressed while ventral invagination proceeds normally. However, the differentiation of these invaginated cells into mesodermal lineage is disrupted. The results suggest that the establishment of mesodermal cell fate requires the proper restriction of neuroectodermal genes, while the ventral cell movement is independent of the expression patterns of these genes. Together with the data showing that the expression of some ventral genes disappear in snail mutants, we propose that Snail may repress or activate another set of target genes that are required specifically for gastrulation.
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Meldrum DR, Meng X, Sheridan BC, McIntyre RC, Harken AH, Banerjee A. Tissue-specific protein kinase C isoforms differentially mediate macrophage TNFalpha and IL-1beta production. Shock 1998; 9:256-60. [PMID: 9565253 DOI: 10.1097/00024382-199804000-00004] [Citation(s) in RCA: 32] [Impact Index Per Article: 1.2] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 02/07/2023]
Abstract
UNLABELLED Macrophage subpopulations are differentially activated during sepsis, shock, or trauma; however, it is unknown whether inherent mechanistic and phenotypic differences exist between macrophage subpopulations that may account for region-specific inflammation. We hypothesized that macrophage expression/function of protein kinase C (PKC) isoforms is tissue specific (alveolar versus peritoneal). Rat alveolar and peritoneal macrophages were each probed for the expression of PKC isoforms alpha, beta1, beta2, gamma, delta, epsilon, zeta, and theta by immunoblot. PKC isoforms alpha, beta1, beta2, and zeta were detected in both populations; however, isoforms epsilon, gamma, and eta were found in alveolar macrophages only. To investigate the functional role of the Ca2+-dependent PKC (cPKC) versus Ca2+-independent PKC (nPKC) isoforms, pan-PKC isoform inhibition (cPKC and nPKC), or cPKC isoform selective inhibition (alpha, beta1, beta2, gamma) was performed before endotoxin (lipopolysaccharide, Salmonella minnesota, 100 ng/mL) stimulation in vitro. Pan-PKC isoform inhibition attenuated TNFalpha and IL-1beta production by each population; however, selective cPKC (alpha, beta1, beta2, gamma) inhibition decreased peritoneal, but not alveolar, macrophage TNFalpha production. IL-1beta production was not affected by cPKC inhibition in either population. CONCLUSIONS 1) alveolar and peritoneal macrophages constitutively express different PKC isoforms; 2) alveolar macrophages uniquely express isoforms epsilon, gamma, eta; 3) TNFalpha production is regulated by cPKCs in peritoneal macrophages, but by nPKCs in alveolar macrophages; 4) nPKCs regulate IL-1beta production in both populations. These results suggest that tissue-specific PKC isoforms differentially mediate macrophage function, which may have important regulatory implications in the compartmentalization of immune function. Further understanding may allow region-specific manipulation of inflammation.
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Meldrum DR, Cleveland JC, Meng X, Sheridan BC, Gamboni F, Cain BS, Harken AH, Banerjee A. Protein kinase C isoform diversity in preconditioning. J Surg Res 1997; 69:183-7. [PMID: 9202667 DOI: 10.1006/jsre.1997.5072] [Citation(s) in RCA: 31] [Impact Index Per Article: 1.1] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 02/04/2023]
Abstract
Protein kinase C (PKC) appears to be a common intracellular effector and signal collector during cardiac preconditioning; however, it remains unknown whether agonists that activate different PKC isoforms are also linked to select aspects of myocardial protection. Using agonists that are known to activate unique combinations of PKC isoforms, we interrogated the relationship between isoform activation and the different aspects (pH, function, and viability) of endogenous myocardial protection. To study this, isolated rat hearts were subjected to ischemia-reperfusion (I/R) (20 min/40 min), without (control = Ctrl) or with receptor-dependent [phenylephrine (PE), 50 microM; adenosine (ADO), 125 microM] or -independent [phorbol myristate acetate (PMA), 100 nM] activation of PKC. Function, pH, and viability were assessed by rate pressure product (%RPP) and coronary flow (CF; ml/min), by 31P NMR, and by CF creatine kinase (CK; U/liter) leak, respectively. PMA, which activates PKC delta but not eta, resulted in intracellular pH (pHi) and viability protection, but did not protect against postischemic myocardial stunning. ADO, which activates PKC eta but not delta, protects against stunning, but not acidosis or necrosis. PE, which activates PKC delta and eta, provided global myocardial protection against necrosis, acidosis, and stunning. Different PKC isoforms may be linked to distinct aspects of myocardial protection. Targeted activation of PKC isoforms may allow precise mechanistic application of preconditioning-like myocardial protection.
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Chatrchyan S, Khachatryan V, Sirunyan AM, Tumasyan A, Adam W, Bergauer T, Dragicevic M, Erö J, Fabjan C, Friedl M, Frühwirth R, Ghete VM, Hammer J, Hörmann N, Hrubec J, Jeitler M, Kiesenhofer W, Krammer M, Liko D, Mikulec I, Pernicka M, Rahbaran B, Rohringer C, Rohringer H, Schöfbeck R, Strauss J, Taurok A, Teischinger F, Wagner P, Waltenberger W, Walzel G, Widl E, Wulz CE, Mossolov V, Shumeiko N, Suarez Gonzalez J, Bansal S, Cerny K, Cornelis T, De Wolf EA, Janssen X, Luyckx S, Maes T, Mucibello L, Ochesanu S, Roland B, Rougny R, Selvaggi M, Van Haevermaet H, Van Mechelen P, Van Remortel N, Van Spilbeeck A, Blekman F, Blyweert S, D’Hondt J, Gonzalez Suarez R, Kalogeropoulos A, Maes M, Olbrechts A, Van Doninck W, Van Mulders P, Van Onsem GP, Villella I, Charaf O, Clerbaux B, De Lentdecker G, Dero V, Gay APR, Hreus T, Léonard A, Marage PE, Thomas L, Vander Velde C, Vanlaer P, Adler V, Beernaert K, Cimmino A, Costantini S, Garcia G, Grunewald M, Klein B, Lellouch J, Marinov A, Mccartin J, Ocampo Rios AA, Ryckbosch D, Strobbe N, Thyssen F, Tytgat M, Vanelderen L, Verwilligen P, Walsh S, Yazgan E, Zaganidis N, Basegmez S, Bruno G, Ceard L, Delaere C, du Pree T, Favart D, Kirsanov M, Krasnikov N, Matveev V, Pashenkov A, Tlisov D, Toropin A, Epshteyn V, Erofeeva M, Gavrilov V, Kossov M, Forthomme L, Lychkovskaya N, Popov V, Safronov G, Semenov S, Stolin V, Vlasov E, Zhokin A, Belyaev A, Boos E, Bunichev V, Giammanco A, Dubinin M, Dudko L, Ershov A, Gribushin A, Klyukhin V, Kodolova O, Lokhtin I, Markina A, Obraztsov S, Perfilov M, Hollar J, Petrushanko S, Sarycheva L, Savrin V, Andreev V, Azarkin M, Dremin I, Kirakosyan M, Leonidov A, Mesyats G, Rusakov SV, Lemaitre V, Vinogradov A, Azhgirey I, Bayshev I, Bitioukov S, Grishin V, Kachanov V, Konstantinov D, Korablev A, Krychkine V, Petrov V, Liao J, Ryutin R, Sobol A, Tourtchanovitch L, Troshin S, Tyurin N, Uzunian A, Volkov A, Adzic P, Djordjevic M, Ekmedzic M, Militaru O, Krpic D, Milosevic J, Aguilar-Benitez M, Alcaraz Maestre J, Arce P, Battilana C, Calvo E, Cerrada M, Chamizo Llatas M, Colino N, Nuttens C, De La Cruz B, Delgado Peris A, Diez Pardos C, Domínguez Vázquez D, Fernandez Bedoya C, Fernández Ramos JP, Ferrando A, Flix J, Fouz MC, Garcia-Abia P, Pagano D, Gonzalez Lopez O, Goy Lopez S, Hernandez JM, Josa MI, Merino G, Puerta Pelayo J, Redondo I, Romero L, Santaolalla J, Soares MS, Pin A, Willmott C, Albajar C, Codispoti G, de Trocóniz JF, Cuevas J, Fernandez Menendez J, Folgueras S, Gonzalez Caballero I, Lloret Iglesias L, Piedra Gomez J, Piotrzkowski K, Vizan Garcia JM, Brochero Cifuentes JA, Cabrillo IJ, Calderon A, Chuang SH, Duarte Campderros J, Felcini M, Fernandez M, Gomez G, Gonzalez Sanchez J, Schul N, Jorda C, Lobelle Pardo P, Lopez Virto A, Marco J, Marco R, Martinez Rivero C, Matorras F, Munoz Sanchez FJ, Rodrigo T, Rodríguez-Marrero AY, Beliy N, Ruiz-Jimeno A, Scodellaro L, Sobron Sanudo M, Vila I, Vilar Cortabitarte R, Abbaneo D, Auffray E, Auzinger G, Baillon P, Ball AH, Caebergs T, Barney D, Bernet C, Bianchi G, Bloch P, Bocci A, Bonato A, Breuker H, Bunkowski K, Camporesi T, Cerminara G, Daubie E, Christiansen T, Coarasa Perez JA, D’Enterria D, De Roeck A, Di Guida S, Dobson M, Dupont-Sagorin N, Elliott-Peisert A, Frisch B, Funk W, Hammad GH, Georgiou G, Giffels M, Gigi D, Gill K, Giordano D, Giunta M, Glege F, Gomez-Reino Garrido R, Govoni P, Gowdy S, Alves GA, Guida R, Hansen M, Harris P, Hartl C, Harvey J, Hegner B, Hinzmann A, Innocente V, Janot P, Kaadze K, Correa Martins Junior M, Karavakis E, Kousouris K, Lecoq P, Lenzi P, Lourenço C, Mäki T, Malberti M, Malgeri L, Mannelli M, Masetti L, De Jesus Damiao D, Meijers F, Mersi S, Meschi E, Moser R, Mozer MU, Mulders M, Nesvold E, Nguyen M, Orimoto T, Orsini L, Martins T, Palencia Cortezon E, Perez E, Petrilli A, Pfeiffer A, Pierini M, Pimiä M, Piparo D, Polese G, Quertenmont L, Racz A, Pol ME, Reece W, Rodrigues Antunes J, Rolandi G, Rommerskirchen T, Rovelli C, Rovere M, Sakulin H, Santanastasio F, Schäfer C, Schwick C, Souza MHG, Segoni I, Sekmen S, Sharma A, Siegrist P, Silva P, Simon M, Sphicas P, Spiga D, Spiropulu M, Stoye M, Aldá Júnior WL, Tsirou A, Veres GI, Vlimant JR, Wöhri HK, Worm SD, Zeuner WD, Bertl W, Deiters K, Erdmann W, Gabathuler K, Carvalho W, Horisberger R, Ingram Q, Kaestli HC, König S, Kotlinski D, Langenegger U, Meier F, Renker D, Rohe T, Sibille J, Custódio A, Bäni L, Bortignon P, Buchmann MA, Casal B, Chanon N, Chen Z, Deisher A, Dissertori G, Dittmar M, Dünser M, Da Costa EM, Eugster J, Freudenreich K, Grab C, Lecomte P, Lustermann W, Marini AC, Martinez Ruiz del Arbol P, Mohr N, Moortgat F, Nägeli C, De Oliveira Martins C, Nef P, Nessi-Tedaldi F, Pape L, Pauss F, Peruzzi M, Ronga FJ, Rossini M, Sala L, Sanchez AK, Starodumov A, Fonseca De Souza S, Stieger B, Takahashi M, Tauscher L, Thea A, Theofilatos K, Treille D, Urscheler C, Wallny R, Weber HA, Wehrli L, Matos Figueiredo D, Aguilo E, Amsler C, Chiochia V, De Visscher S, Favaro C, Ivova Rikova M, Millan Mejias B, Otiougova P, Robmann P, Snoek H, Mundim L, Tupputi S, Verzetti M, Chang YH, Chen KH, Go A, Kuo CM, Li SW, Lin W, Liu ZK, Lu YJ, Nogima H, Mekterovic D, Singh AP, Volpe R, Yu SS, Bartalini P, Chang P, Chang YH, Chang YW, Chao Y, Chen KF, Oguri V, Dietz C, Grundler U, Hou WS, Hsiung Y, Kao KY, Lei YJ, Lu RS, Majumder D, Petrakou E, Shi X, Prado Da Silva WL, Shiu JG, Tzeng YM, Wang M, Adiguzel A, Bakirci MN, Cerci S, Dozen C, Dumanoglu I, Eskut E, Girgis S, Santoro A, Gokbulut G, Hos I, Kangal EE, Karapinar G, Kayis Topaksu A, Onengut G, Ozdemir K, Ozturk S, Polatoz A, Sogut K, Silva Do Amaral SM, Sunar Cerci D, Tali B, Topakli H, Vergili LN, Vergili M, Akin IV, Aliev T, Bilin B, Bilmis S, Deniz M, Soares Jorge L, Gamsizkan H, Guler AM, Ocalan K, Ozpineci A, Serin M, Sever R, Surat UE, Yalvac M, Yildirim E, Zeyrek M, Sznajder A, Deliomeroglu M, Gülmez E, Isildak B, Kaya M, Kaya O, Ozkorucuklu S, Sonmez N, Cankocak K, Levchuk L, Bostock F, Anjos TS, Brooke JJ, Clement E, 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Wang HQ, Zhang HY, Hao FJ, Meng X, Guan Y, Du ZX. Induction of BAG2 protein during proteasome inhibitor-induced apoptosis in thyroid carcinoma cells. Br J Pharmacol 2008; 155:655-60. [PMID: 18660828 DOI: 10.1038/bjp.2008.302] [Citation(s) in RCA: 31] [Impact Index Per Article: 1.8] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/09/2022] Open
Abstract
BACKGROUND AND PURPOSE Proteasome inhibitors exhibit cytotoxic against tumours of different histology. However, the mechanism of apoptosis induction by these compounds remains unclear and is likely to be a complex cascade of events. Bcl-2-associated athanogene (BAG) family proteins are characterized by their property of interaction with a variety of partners involved in modulating the proliferation/death balance, including heat shock proteins (HSP), Bcl-2, Raf-1. The role of BAG family proteins in proteasome inhibition has not been elucidated. EXPERIMENTAL APPROACH Effects of proteasome inhibitors on BAG2 expression were evaluated using real-time reverse transcription-polymerase chain reaction (RT-PCR). BAG2 expression was knocked down by small interfering RNAs (siRNA). Cell death was evaluated using Annexin V/propidium iodide staining and subsequent FACS. KEY RESULTS The proteasome inhibitors, MG132, PSI, lactacystin and epoxomicin, induced BAG2 at the transcriptional level. MG132-induced apoptosis was significantly suppressed by BAG2 knockdown using RNA interference. CONCLUSIONS AND IMPLICATIONS Our results suggest that BAG2 is a novel molecule induced by proteasome inhibition, which exhibits a pro-apoptotic property in death of thyroid cancer cells induced by proteasome inhibition.
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Research Support, Non-U.S. Gov't |
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