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Mashhadi Akbar Boojar M. An Overview of the Cellular Mechanisms of Flavonoids Radioprotective Effects. Adv Pharm Bull 2019; 10:13-19. [PMID: 32002357 PMCID: PMC6983988 DOI: 10.15171/apb.2020.002] [Citation(s) in RCA: 18] [Impact Index Per Article: 3.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/05/2019] [Revised: 08/30/2019] [Accepted: 09/02/2019] [Indexed: 12/17/2022] Open
Abstract
Considering the remarkable application of radiotherapy in the treatment and diagnosis of various diseases and even nuclear war, it is important to protect healthy tissues and people at risk from the radiation. Currently, there is no ideal and safe radioprotective agent available and we are seeing a great effort to find these agents from natural sources. Phenolic compounds, as well as flavonoid, are presented widely as the second metabolite in plants and they have been considered for investigation according to their benefits for human health, healing and preventing many disorders. The major bioactive benefits of flavonoids include antioxidant, anti-inflammatory, anti-tumor, anti-aging, anti-bacterial and viral, neuroprotection and radioprotective effects. Their lower toxicity and oral administration have made it suitable for radiotherapy patient, radiation, military forces, and even the general public. This review attempts to provide a summary of the main molecular mechanisms involved in flavonoid radio-protective effects. Data of these studies will provide a comprehensive perspective to flavonoids and can help to optimize their effects in radioprotection procedures.
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Affiliation(s)
- Mahdi Mashhadi Akbar Boojar
- Student Research Committee, Baqiyatallah University of Medical Sciences, Tehran, Iran.,Department of Pharmacology and Toxicology, Faculty of Pharmacy, Baqiyatallah University of Medical Sciences, Tehran, Iran
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Wang J, Li T, Feng J, Li L, Wang R, Cheng H, Yuan Y. Kaempferol protects against gamma radiation-induced mortality and damage via inhibiting oxidative stress and modulating apoptotic molecules in vivo and vitro. ENVIRONMENTAL TOXICOLOGY AND PHARMACOLOGY 2018; 60:128-137. [PMID: 29705372 DOI: 10.1016/j.etap.2018.04.014] [Citation(s) in RCA: 15] [Impact Index Per Article: 2.1] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 11/28/2017] [Revised: 04/12/2018] [Accepted: 04/16/2018] [Indexed: 05/02/2023]
Abstract
To investigate the potential protective effect of kaempferol, a representative flavonoid, against radiation induced mortality and injury in vivo and vitro.C57BL/6 male mice and human umbilical venous endothelial cells (HUVECs) were pretreated with kaempferol before radiation. We found that kaempferol can effectively increase 30-day survival rate after 8.5 Gy lethal total body irradiation (TBI). Mice were sacrificed at 7th day after 7 Gy TBI, we found kaempferol against radiation-induced tissues damage, by inhibiting the oxidative stress, and attenuating morphological changes and cell apoptosis. In vitro, kaempferol increased HUVECs cell viability and decrease apoptosis. It also mitigated oxidative stress and restored the abnormal expression of prx-5, Cyt-c, Caspase9 and Caspase3 in mRNA and protein level in HUVECs after radiation. Taken together, it suggests kaempferol can protect against gamma-radiation induced tissue damage and mortality. The present study is the first report of the radioprotective role of kaempferol in vivo and vitro.
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Affiliation(s)
- Jing Wang
- Department of Pharmacy, Shanghai 9th People's Hospital, Shanghai Jiao Tong University School of Medicine, 280 Mo He Rd, Shanghai 201999, China; Department of Pharmacy, Punan Hospital, Shanghai 200125, China; Department of Pharmacology, College of Pharmacy, Second Millitary Medical University, Shanghai 200433, China
| | - Tiejun Li
- Department of Pharmacy, Punan Hospital, Shanghai 200125, China
| | - Jingjing Feng
- Department of Pharmacology, College of Pharmacy, Second Millitary Medical University, Shanghai 200433, China
| | - Li Li
- Department of Pharmacology, College of Pharmacy, Second Millitary Medical University, Shanghai 200433, China
| | - Rong Wang
- Department of Pharmacy, Shanghai 9th People's Hospital, Shanghai Jiao Tong University School of Medicine, 280 Mo He Rd, Shanghai 201999, China
| | - Hao Cheng
- Department of Pharmacology, College of Pharmacy, Second Millitary Medical University, Shanghai 200433, China
| | - Yongfang Yuan
- Department of Pharmacy, Shanghai 9th People's Hospital, Shanghai Jiao Tong University School of Medicine, 280 Mo He Rd, Shanghai 201999, China.
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Intervention Effect of Electroacupuncture Combined with EPCs Transplantation on the Mice in Aging Model. EVIDENCE-BASED COMPLEMENTARY AND ALTERNATIVE MEDICINE 2015; 2015:972749. [PMID: 26379754 PMCID: PMC4562170 DOI: 10.1155/2015/972749] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Track Full Text] [Download PDF] [Figures] [Subscribe] [Scholar Register] [Received: 05/23/2015] [Revised: 07/14/2015] [Accepted: 07/15/2015] [Indexed: 11/17/2022]
Abstract
The results of this experiment suggested that electroacupuncture promotes the endothelialization of liver endothelial progenitor cells (EPCs) for mice in D-gal model and improves the repair of vascular endothelial function, as well as increasing the vascular endothelial growth factor (VEGF) expression in liver tissue fluorescence and KL protein levels. Also, it reduces the malondialdehyde (MDA) activity and delays vascular aging and even overall aging. Results showed that the in vivo fluorescence intensity for D-gal EA group was significantly lower than that of D-gal group, P < 0.05; VEGF fluorescence expression in liver tissue for D-gal EA group was significantly higher than that for D-gal group, P < 0.05; KL protein content in liver tissue for D-gal EA group was significantly higher than that for D-gal group, P < 0.05; MDA activity for D-gal EA group was significantly lower than that for D-gal group, P < 0.05.
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Duan Y, Chen F, Yao X, Zhu J, Wang C, Zhang J, Li X. Protective Effect of Lycium ruthenicum Murr. Against Radiation Injury in Mice. INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH 2015; 12:8332-47. [PMID: 26193298 PMCID: PMC4515725 DOI: 10.3390/ijerph120708332] [Citation(s) in RCA: 37] [Impact Index Per Article: 3.7] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Subscribe] [Scholar Register] [Received: 05/15/2015] [Revised: 06/29/2015] [Accepted: 07/02/2015] [Indexed: 01/09/2023]
Abstract
The protective effect of Lycium ruthenicum Murr. against radiation injury was examined in mice. Kunming mice were randomly divided into a control group, model group, positive drug group and L. ruthenicum high dose (8 g/kg), L. ruthenicum middle dose (4 g/kg), L. ruthenicum low dose (2 g/kg) treatment groups, for which doses were administered the third day, seventh day and 14th day after irradiation. L. ruthenicum extract was administered orally to the mice in the three treatment groups and normal saline was administered orally to the mice in the control group and model group for 14 days. The positive group was treated with amifostine (WR-2721) at 30 min before irradiation. Except for the control group, the groups of mice received a 5 Gy quantity of X-radiation evenly over their whole body at one time. Body weight, hemogram, thymus and spleen index, DNA, caspase-3, caspase-6, and P53 contents were observed at the third day, seventh day, and 14th day after irradiation. L. ruthenicum could significantly increase the total red blood cell count, hemoglobin count and DNA contents (p < 0.05). The spleen index recovered significantly by the third day and 14th day after irradiation (p < 0.05). L. ruthenicum low dose group showed a significant reduction in caspase-3 and caspase-6 of serum in mice at the third day, seventh day, and 14th day after irradiation and L. ruthenicum middle dose group experienced a reduction in caspase-6 of serum in mice by the seventh day after irradiation. L. ruthenicum could decrease the expression of P53. The results showed that L. ruthenicum had protective effects against radiation injury in mice.
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Affiliation(s)
- Yabin Duan
- Department of Pharmacy, Qinghai University Medical College, Xining 810001, China.
| | - Fan Chen
- Department of Radiotherapy Oncology, Qinghai University Affiliated Hospital, Xining 810001, China.
| | - Xingchen Yao
- Department of Pharmacy, Qinghai University Medical College, Xining 810001, China.
| | - Junbo Zhu
- Department of Pharmacy, Qinghai University Medical College, Xining 810001, China.
| | - Cai Wang
- Department of Radiotherapy Oncology, Qinghai University Affiliated Hospital, Xining 810001, China.
| | - Juanling Zhang
- Department of Pharmacy, Qinghai University Medical College, Xining 810001, China.
| | - Xiangyang Li
- Department of Pharmacy, Qinghai University Medical College, Xining 810001, China.
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Park H, Hwang YH, Yang HJ, Kim HK, Song KS, Ma JY. Acute toxicity and genotoxicity study of fermented traditional herb formula Guibi-tang. JOURNAL OF ETHNOPHARMACOLOGY 2014; 156:182-189. [PMID: 25218323 DOI: 10.1016/j.jep.2014.09.004] [Citation(s) in RCA: 10] [Impact Index Per Article: 0.9] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 05/28/2014] [Revised: 09/02/2014] [Accepted: 09/04/2014] [Indexed: 06/03/2023]
Abstract
ETHNOPHARMACOLOGY RELEVANCE Guibi-tang (Guipi-tang in Chinese and Kihi-to in Japanese) is a multi-herb traditional medicine commonly prescribed to treat psychoneurosis in East Asia. Although this medicine has been widely used, there is little available information on the safety and toxicity of Guibi-tang, especially on the fermented one. MATERIALS AND METHODS Guibi-tang, composed of 12 herbs, was fermented with bacteria and lyophilized. Single dose acute toxicity in rats was observed for 14 days after administration. Genetic toxicity of fermented Guibi-tang was evaluated on bacterial reverse mutation in Salmonella and Escherichia spp., chromosome aberrations in Chinese hamster ovary cells, and micronucleus formation in mice. Ingredients in FGBT were identified and quantified by high performance liquid chromatography-mass spectrometry. RESULTS In acute oral toxicity study, behavior, clinical signs and body weight changes were normal observing in all experimental animals. No revertant colonies were found in any bacterial cultures examined. Morphological or numerical anomalies and significant increased number of aberrant metaphases were not observed. Micronucleus assay showed no significant increases in the frequency of inducing micronuclei in any dose examined. Decursinol, decursin, glycyrrhizin, and 6-gingerol in fermented Guibi-tang were identified and quantitated. As a whole, no acute and genotoxic effects were found in all the assays and parameters analyzed. CONCLUSION Fermented Guibi-tang was recognized as safe and non-toxic, and therefore can be used for applications of traditional medicine in modern complementary and alternative therapeutics and health care.
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Affiliation(s)
- Hwayong Park
- KM-based Herbal Drug Development Group, Korea Institute of Oriental Medicine, 1672 Yuseong-daero, Yuseong-gu, Daejeon 305-811, Republic of Korea.
| | - Youn-Hwan Hwang
- KM-based Herbal Drug Development Group, Korea Institute of Oriental Medicine, 1672 Yuseong-daero, Yuseong-gu, Daejeon 305-811, Republic of Korea.
| | - Hye Jin Yang
- KM-based Herbal Drug Development Group, Korea Institute of Oriental Medicine, 1672 Yuseong-daero, Yuseong-gu, Daejeon 305-811, Republic of Korea.
| | - Hyun-Kyu Kim
- Nutraceutical Food R&D center, Kolmar BNH, 22-15 Sandan-gil, Jeonui-myeon, Sejong 339-851, Republic of Korea.
| | - Kyung Seuk Song
- Korea Conformity Laboratories, 8 Gaetbeol-ro 145beon-gil, Yeonsu-gu, Incheon 406-840, Republic of Korea.
| | - Jin Yeul Ma
- KM-based Herbal Drug Development Group, Korea Institute of Oriental Medicine, 1672 Yuseong-daero, Yuseong-gu, Daejeon 305-811, Republic of Korea.
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Zhao X, Yang H, Jiang G, Ni M, Deng Y, Cai J, Li Z, Shen F, Tao X. Simvastatin attenuates radiation-induced tissue damage in mice. JOURNAL OF RADIATION RESEARCH 2014; 55:257-64. [PMID: 24105712 PMCID: PMC3951077 DOI: 10.1093/jrr/rrt115] [Citation(s) in RCA: 21] [Impact Index Per Article: 1.9] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 03/06/2013] [Revised: 08/17/2013] [Accepted: 08/21/2013] [Indexed: 05/18/2023]
Abstract
The aim of this study was to investigate the protective effect of simvastatin against radiation-induced tissue injury in mice. Mice were radiated with 4 Gy or 8 Gy after 20 mg/kg/d simvastatin treatment over 2 weeks. Morphological changes were observed in the jejunum and bone marrow, and apoptotic cells were determined in both tissues. Peripheral blood cells were counted, and the superoxide dismutase (SOD) activity and the malondialdehyde (MDA) level in tissues of both thymus and spleen were measured. Compared with the radiation-only group, 20 mg/kg/d simvastatin administration significantly increased the mean villi height and decreased apoptotic cells in jejunum tissue, and stimulated regeneration and reduced apoptotic cells in bone marrow. Peripheral blood cell analysis revealed that simvastatin treatment induced a larger number of red blood cells and increased the hemoglobin level present after 4 Gy of radiation. Interestingly, it was also found that the number of peripheral endothelial progenitor cells was markedly increased following simvastatin administration. Antioxidant determination for tissues displayed that simvastatin therapy increased the SOD activity after both 4 and 8 Gy of radiation, but only decreased the MDA level after 4 Gy. Simvastatin ameliorated radiation-induced tissue damage in mice. The radioprotective effect of simvastatin was possibly related to inhibition of apoptosis and improvement of oxygen-carrying and antioxidant activities.
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Affiliation(s)
- Xinbin Zhao
- Department of Pharmacy, Changzheng Hospital, Second Military Medical University, 415 Feng-Yang Road, Shanghai 200003, China
| | - Hong Yang
- Department of Pharmacy, Changzheng Hospital, Second Military Medical University, 415 Feng-Yang Road, Shanghai 200003, China
| | - Guojun Jiang
- Department of Pharmacy, Xiaoshan Hospital, 728 Yu-Cai-Bei Road, Hangzhou, Zhejiang 311202, China
| | - Min Ni
- Department of Pharmacy, Changzheng Hospital, Second Military Medical University, 415 Feng-Yang Road, Shanghai 200003, China
| | - Yaping Deng
- Department of Pharmacology, School of Pharmacy, Second Military Medical University, 325 Guo-He Road, Shanghai 200433, China
| | - Jian Cai
- Department of Pharmacy, Xiaoshan Hospital, 728 Yu-Cai-Bei Road, Hangzhou, Zhejiang 311202, China
| | - Zhangpeng Li
- Department of Pharmacology, School of Pharmacy, Second Military Medical University, 325 Guo-He Road, Shanghai 200433, China
| | - Fuming Shen
- Department of Pharmacology, School of Pharmacy, Second Military Medical University, 325 Guo-He Road, Shanghai 200433, China
- Department of Pharmacy, Shanghai Tenth People's Hospital, Tongji University, 301 Yan-Chang-Zhong Road, Shanghai 200072, China
| | - Xia Tao
- Department of Pharmacy, Changzheng Hospital, Second Military Medical University, 415 Feng-Yang Road, Shanghai 200003, China
- Corresponding author. Tel: +86-21-8188-6182; Fax: +86-21-6549-3951;
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