1
|
Jiang Y, Yuan F, Xu X, Liu Y, Liang Y, Zhang Y, Lin Z, Zhao C. Correlation between neuropsychiatric systemic lupus erythematosus and immunological markers: a real-world retrospective study. Clin Rheumatol 2024; 43:2833-2842. [PMID: 38997542 DOI: 10.1007/s10067-024-07056-6] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/30/2023] [Revised: 05/03/2024] [Accepted: 07/03/2024] [Indexed: 07/14/2024]
Abstract
OBJECTIVES This study aimed to investigate disparities in clinical profiles and autoantibody patterns between patients with and without neuropsychiatric systemic lupus erythematosus (NPSLE) in a cohort and to identify risk factors associated with NPSLE in the Chinese population. METHODS SLE patients were retrospectively reviewed from two tertiary hospitals. The relationships between NPSLE and immunological biomarkers were explored. RESULTS Among the 945 SLE patients, 75 (7.94%) were diagnosed with NPSLE. The most prevalent NP manifestations involved cognitive disorder (30.67%), headache (26.67%), seizure disorder (26.67%), and psychosis (26.67%).We observed significant associations between psychosis and anti-β2GPI antibodies (F = 6.092, p = 0.015), polyneuropathy and anti-Scl70 antibodies (F = 20.161, p < 0.001), demyelinating syndrome and anti-cardiolipin antibodies (F = 6.637, p = 0.011), myasthenia gravis and anti-RNP (F = 5.864, p = 0.017), and anti-Smith antibodies (F = 5.096, p = 0.026). Multivariate logistics analysis showed that anti-prothrombin (aPT) IgM antibodies (OR = 10.985, CI 1.279-94.343, p = 0.029), age (OR = 1.169, CI 1.032-1.325, p = 0.014), and serum creatinine (SCr) (OR = 1.014, CI 1.003-1.025, p = 0.009) were independent risk factors of NPSLE, while anti-Sjogren syndrome antigen B (SSB) antibodies (OR 0.023, CI 0.002-0.622, p = 0.023) and high complement C3 (OR = 0.001, CI 0-0.045, p < 0.001) indicated reduced risk of NPSLE. CONCLUSION Various neuropsychiatric manifestations in SLE were found to be correlated with specific autoantibodies. Independent risk factors for NPSLE included aPT IgM antibodies, age, and elevated serum creatinine, while the absence of anti-SSB antibodies and low complement C3 levels were associated with increased risk. KEY POINTS •Significant associations were found between specific autoantibodies and neuropsychiatric symptoms, shedding light on potential biomarkers for predicting and understanding NPSLE. •The study identifies independent risk factors for NPSLE in the Chinese population, including the presence of anti-prothrombin IgM antibodies, older age, elevated serum creatinine, and lower complement C3 levels.
Collapse
Affiliation(s)
- Yutong Jiang
- Department of Rheumatology and Immunology, Third Affiliated Hospital of Sun Yat-Sen University, Guangzhou, China
| | - Fei Yuan
- Department of Rheumatology and Immunology, The Tenth Affiliated Hospital of Southern Medical University, Dongguan People's Hospital, Dongguan, China
| | - Xinyuan Xu
- Department of Rheumatology and Immunology, Third Affiliated Hospital of Sun Yat-Sen University, Guangzhou, China
| | - Yuhong Liu
- Department of Rheumatology and Immunology, Third Affiliated Hospital of Sun Yat-Sen University, Guangzhou, China
| | - Yao Liang
- Department of Rheumatology and Immunology, Third Affiliated Hospital of Sun Yat-Sen University, Guangzhou, China
| | - Yanli Zhang
- Department of Rheumatology and Immunology, Third Affiliated Hospital of Sun Yat-Sen University, Guangzhou, China
| | - Zhiming Lin
- Department of Rheumatology and Immunology, Third Affiliated Hospital of Sun Yat-Sen University, Guangzhou, China.
| | - Changlin Zhao
- Department of Cardiology, Third Affiliated Hospital of Sun Yat-Sen University, 600 Tianhe Road, Guangzhou, 510630, China.
| |
Collapse
|
2
|
Abou Raya A, Raya SA. Neuromyelitis optica spectrum disorders (NMOSD) and systemic lupus erythematosus (SLE): Dangerous duo. Int J Rheum Dis 2024; 27:e14973. [PMID: 37975635 DOI: 10.1111/1756-185x.14973] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/05/2023] [Revised: 10/25/2023] [Accepted: 10/31/2023] [Indexed: 11/19/2023]
Affiliation(s)
- Anna Abou Raya
- Rheumatology & Clinical Immunology Department, Faculty of Medicine, University of Alexandria, Alexandria, Egypt
| | - Suzan Abou Raya
- Internal Medicine Department, Faculty of Medicine, University of Alexandria, Alexandria, Egypt
| |
Collapse
|
3
|
Lee J, Thomas Broome S, Jansen MI, Mandwie M, Logan GJ, Marzagalli R, Musumeci G, Castorina A. Altered Hippocampal and Striatal Expression of Endothelial Markers and VIP/PACAP Neuropeptides in a Mouse Model of Systemic Lupus Erythematosus. Int J Mol Sci 2023; 24:11118. [PMID: 37446298 DOI: 10.3390/ijms241311118] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/22/2023] [Revised: 07/01/2023] [Accepted: 07/02/2023] [Indexed: 07/15/2023] Open
Abstract
Neuropsychiatric systemic lupus erythematosus (NPSLE) is one of the most common and severe manifestations of lupus; however, its pathogenesis is still poorly understood. While there is sparse evidence suggesting that the ongoing autoimmunity may trigger pathogenic changes to the central nervous system (CNS) microvasculature, culminating in inflammatory/ischemic damage, further evidence is still needed. In this study, we used the spontaneous mouse model of SLE (NZBWF1 mice) to investigate the expression of genes and proteins associated with endothelial (dys)function: tissue and urokinase plasminogen activators (tPA and uPA), intercellular and vascular adhesion molecules 1 (ICAM-1 and VCAM-1), brain derived neurotrophic factor (BDNF), endothelial nitric oxide synthase (eNOS) and Krüppel-like factor 4 (KLF4) and neuroprotection/immune modulation: pituitary adenylate cyclase-activating peptide (PACAP), vasoactive intestinal peptide (VIP), PACAP receptor (PAC1), VIP receptors 1 and 2 (VPAC1 and VPAC2). Analyses were carried out both in the hippocampus and striatum of SLE mice of two different age groups (2 and 7 months old), since age correlates with disease severity. In the hippocampus, we identified a gene/protein expression profile indicative of mild endothelial dysfunction, which increased in severity in aged SLE mice. These alterations were paralleled by moderate alterations in the expression of VIP, PACAP and related receptors. In contrast, we report a robust upregulation of endothelial activation markers in the striatum of both young and aged mice, concurrent with significant induction of the VIP/PACAP system. These data identify molecular signatures of endothelial alterations in the hippocampus and striatum of NZBWF1 mice, which are accompanied by a heightened expression of endogenous protective/immune-modulatory neuropeptides. Collectively, our results support the idea that NPSLE may cause alterations of the CNS micro-vascular compartment that cannot be effectively counteracted by the endogenous activity of the neuropeptides PACAP and VIP.
Collapse
Affiliation(s)
- Jayden Lee
- Laboratory of Cellular and Molecular Neuroscience (LCMN), School of Life Science, Faculty of Science, University of Technology Sydney, Sydney, NSW 2007, Australia
| | - Sarah Thomas Broome
- Laboratory of Cellular and Molecular Neuroscience (LCMN), School of Life Science, Faculty of Science, University of Technology Sydney, Sydney, NSW 2007, Australia
| | - Margo Iris Jansen
- Laboratory of Cellular and Molecular Neuroscience (LCMN), School of Life Science, Faculty of Science, University of Technology Sydney, Sydney, NSW 2007, Australia
| | - Mawj Mandwie
- Gene Therapy Research Unit, Children's Medical Research Institute, Faculty of Medicine and Health, The University of Sydney and Sydney Children's Hospitals Network, Westmead, NSW 2145, Australia
| | - Grant J Logan
- Gene Therapy Research Unit, Children's Medical Research Institute, Faculty of Medicine and Health, The University of Sydney and Sydney Children's Hospitals Network, Westmead, NSW 2145, Australia
| | - Rubina Marzagalli
- Laboratory of Cellular and Molecular Neuroscience (LCMN), School of Life Science, Faculty of Science, University of Technology Sydney, Sydney, NSW 2007, Australia
| | - Giuseppe Musumeci
- Department of Biomedical and Biotechnological Sciences, Anatomy, Histology and Movement Sciences Section, School of Medicine, University of Catania, 95124 Catania, Italy
| | - Alessandro Castorina
- Laboratory of Cellular and Molecular Neuroscience (LCMN), School of Life Science, Faculty of Science, University of Technology Sydney, Sydney, NSW 2007, Australia
| |
Collapse
|
4
|
Kısaarslan AP, Çiçek SÖ, Batu ED, Şahin S, Gürgöze MK, Çetinkaya SB, Ekinci MK, Atmış B, Barut K, Adrovic A, Ağar BE, Şahin N, Demir F, Bağlan E, Kara MA, Selçuk ŞZ, Özdel S, Çomak E, Akkoyunlu B, Yener GO, Yıldırım DG, Öztürk K, Yıldız M, Haşlak F, Şener S, Kısaoğlu H, Baba Ö, Kızıldağ Z, İşgüder R, Çağlayan Ş, Bilgin RBG, Aytaç G, Yücel BB, Tanatar A, Sönmez HE, Çakan M, Kara A, Elmas AT, Kılıç BD, Ayaz NA, Kasap B, Acar BÇ, Ozkaya O, Yüksel S, Bakkaloğlu S, Aydoğ Ö, Aksu G, Akman S, Dönmez O, Bülbül M, Büyükçelik M, Tabel Y, Sözeri B, Kalyoncu M, Bilginer Y, Poyrazoğlu MH, Ünsal E, Kasapçopur Ö, Özen S, Düşünsel R. Neuropsychiatric involvement in juvenile-onset systemic lupus erythematosus: A multicenter study. Joint Bone Spine 2023; 90:105559. [PMID: 36858168 DOI: 10.1016/j.jbspin.2023.105559] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/23/2022] [Revised: 02/07/2023] [Accepted: 02/13/2023] [Indexed: 03/02/2023]
Abstract
INTRODUCTION Neuropsychiatric (NP) involvement is a restricted area in juvenile-onset systemic lupus erythematosus (jSLE). AIM To investigate the prevalence, demographic and clinical features, and outcomes of the neurological involvement in the Turkish jSLE population. METHODS This study was based upon 24 referral centers' SLE cohorts, multicenter and multidisciplinary network in Turkey. Patient data were collected by a case report form which was standardized for NP definitions according to American Collage of Rheumatology (ACR). Systemic Lupus International Collaborating Clinics/American College of Rheumatology Damage Index (SDI) neuropsychiatric part was used to determine NP damage. Variables were evaluated Ward's hierarchical clustering analyses, univariate, and multivariate logistic regression analyses. RESULTS A hundred forty-nine of 1107 jSLE patients had NP involvement (13.5%). The most common NPSLE findings were headache (50.3%), seizure (38.3%), and acute confusional state (33.6%). Five clusters were identified with all clinical and laboratory findings. The first two clusters involved neuropathies, demyelinating diseases, aseptic meningitis, and movement disorder. Cluster 3 involved headache, activity markers and other SLE involvements. Idiopathic intracranial hypertension, cerebrovascular disease, cognitive dysfunction, psychiatric disorders and SLE antibodies were in the fourth, and acute confusional state was in the fifth cluster. In multivariate analysis, APA positivity; OR: 2.820, (%95CI: 1.002-7.939), P: 0,050, plasmapheresis; OR: 13.804 (%95CI: 2.785-68.432), P: 0,001, SLEDAI scores; OR: 1.115 (%95CI: (1.049-1.186), P: 0,001 were associated with increased risk for neurologic sequelae. CONCLUSION We detected the prevalence of juvenile NPSLE manifestations in Turkey. We have identified five clusters that may shed light pathogenesis, treatment and prognosis of NP involvements. We also determined risk factors of neurological sequelae. Our study showed that new definitions NP involvements and sequelae for childhood period are needed.
Collapse
Affiliation(s)
| | | | - Ezgi D Batu
- Pediatric Rheumatology, Faculty of Medicine, Hacettepe University, Ankara, Turkey
| | - Sezgin Şahin
- Pediatric Rheumatology, Cerrahpasa Faculty of Medicine, İstanbul University, Istanbul, Turkey
| | - Metin K Gürgöze
- Pediatric Nephrology and Rheumatology, Faculty of Medicine, Fırat University, Elazıg, Turkey
| | | | | | - Bahriye Atmış
- Pediatric Nephrology, Faculty of Medicine, Çukurova University, Adana, Turkey
| | - Kenan Barut
- Pediatric Rheumatology, Cerrahpasa Faculty of Medicine, İstanbul University, Istanbul, Turkey
| | - Amra Adrovic
- Pediatric Rheumatology, Cerrahpasa Faculty of Medicine, İstanbul University, Istanbul, Turkey
| | - Buket Esen Ağar
- Pediatric Nephrology and Rheumatology, Faculty of Medicine, Fırat University, Elazıg, Turkey
| | - Nihal Şahin
- Pediatric Rheumatology, Derince Educational and Research Hospital, Kocaeli, Turkey
| | - Ferhat Demir
- Pediatric Rheumatology, Acıbadem Hospital, Istanbul, Turkey
| | - Esra Bağlan
- Pediatric Rheumatology, Doctor Sami-Ulus Maternity and Child Health and Diseases Research and Training Hospital, Ankara, Turkey
| | - Mehtap Akbalık Kara
- Pediatric Nephrology, Faculty of Medicine, Gaziantep University, Gaziantep, Turkey
| | - Şenay Zırhlı Selçuk
- Pediatric Nephrology, Faculty of Medicine, İnönü University, Malatya, Turkey
| | - Semanur Özdel
- Pediatric Rheumatology, Doctor Sami-Ulus Maternity and Child Health and Diseases Research and Training Hospital, Ankara, Turkey
| | - Elif Çomak
- Pediatric Nephrology and Rheumatology, Faculty of Medicine, Akdeniz University, Antalya, Turkey
| | - Betül Akkoyunlu
- Pediatric Nephrology and Rheumatology, Faculty of Medicine, Uludag University, Bursa, Turkey
| | - Gülçin Otar Yener
- Pediatric Rheumatology, Şanlıurfa Research and Training Hospital, Şanlıurfa, Turkey
| | | | - Kübra Öztürk
- Pediatric Rheumatology, Istanbul Medeniyet University, Göztepe Professor Doctor Süleyman-Yalçın City Hospital, İstanbul, Turkey
| | - Mehmet Yıldız
- Pediatric Rheumatology, Cerrahpasa Faculty of Medicine, İstanbul University, Istanbul, Turkey
| | - Fatih Haşlak
- Pediatric Rheumatology, Cerrahpasa Faculty of Medicine, İstanbul University, Istanbul, Turkey
| | - Seher Şener
- Pediatric Rheumatology, Faculty of Medicine, Hacettepe University, Ankara, Turkey
| | - Hakan Kısaoğlu
- Pediatric Rheumatology, Faculty of Medicine, Karadeniz Technical University, Trabzon, Turkey
| | - Özge Baba
- Pediatric Rheumatology, Faculty of Medicine, Karadeniz Technical University, Trabzon, Turkey
| | - Zehra Kızıldağ
- Pediatric Rheumatology, Faculty of Medicine, Dokuz Eylül University, Izmir, Turkey
| | - Rana İşgüder
- Pediatric Rheumatology, Faculty of Medicine, Dokuz Eylül University, Izmir, Turkey
| | - Şengül Çağlayan
- Pediatric Rheumatology, Ümraniye Research and Training Hospital, İstanbul, Turkey
| | | | - Gülçin Aytaç
- Pediatric Rheumatology, Faculty of Medicine, Ege University, İzmir, Turkey
| | - Burcu Bozkaya Yücel
- Pediatric Rheumatology, Faculty of Medicine, Ondokuz Mayis University, Samsun, Turkey
| | - Ayşe Tanatar
- Pediatric Rheumatology, Faculty of Medicine, Istanbul University, İstanbul, Turkey
| | - Hafize E Sönmez
- Pediatric Rheumatology, Faculty of Medicine, Kocaeli University, Kocaeli, Turkey
| | - Mustafa Çakan
- Pediatric Rheumatology, University of Health Sciences, Zeynep Kamil Women and Children's Diseases Training and Research Hospital, İstanbul, Turkey
| | - Aslıhan Kara
- Pediatric Nephrology and Rheumatology, Faculty of Medicine, Fırat University, Elazıg, Turkey
| | - Ahmet T Elmas
- Pediatric Nephrology, Faculty of Medicine, İnönü University, Malatya, Turkey
| | | | - Nuray Aktay Ayaz
- Pediatric Rheumatology, Faculty of Medicine, Istanbul University, İstanbul, Turkey
| | - Belde Kasap
- Pediatric Nephrology, Katip-Çelebi University, İzmir, Turkey
| | - Banu Çelikel Acar
- Pediatric Nephrology and Rheumatology, Ankara City Hospital, Ankara, Turkey
| | - Ozan Ozkaya
- Pediatric Nephrology and Rheumatology, Faculty of Medicine, İstinye University, İstanbul, Turkey
| | - Selçuk Yüksel
- Pediatric Nephrology and Rheumatology, Faculty of Medicine, Pamukkale University, Denizli, Turkey
| | - Sevcan Bakkaloğlu
- Pediatric Rheumatology, Faculty of Medicine, Gazi University, Ankara, Turkey
| | - Özlem Aydoğ
- Pediatric Rheumatology, Faculty of Medicine, Ondokuz Mayis University, Samsun, Turkey
| | - Güzide Aksu
- Pediatric Rheumatology, Faculty of Medicine, Ege University, İzmir, Turkey
| | - Sema Akman
- Pediatric Nephrology and Rheumatology, Faculty of Medicine, Akdeniz University, Antalya, Turkey
| | - Osman Dönmez
- Pediatric Nephrology and Rheumatology, Faculty of Medicine, Uludag University, Bursa, Turkey
| | - Mehmet Bülbül
- Pediatric Rheumatology, Doctor Sami-Ulus Maternity and Child Health and Diseases Research and Training Hospital, Ankara, Turkey
| | - Mithat Büyükçelik
- Pediatric Nephrology, Faculty of Medicine, Gaziantep University, Gaziantep, Turkey
| | - Yılmaz Tabel
- Pediatric Nephrology, Faculty of Medicine, İnönü University, Malatya, Turkey
| | - Betül Sözeri
- Pediatric Rheumatology, Ümraniye Research and Training Hospital, İstanbul, Turkey
| | - Mukaddes Kalyoncu
- Pediatric Rheumatology, Faculty of Medicine, Karadeniz Technical University, Trabzon, Turkey
| | - Yelda Bilginer
- Pediatric Rheumatology, Faculty of Medicine, Hacettepe University, Ankara, Turkey
| | - Muammer H Poyrazoğlu
- Pediatric Rheumatology, Faculty of Medicine, Erciyes University, Kayseri, Turkey
| | - Erbil Ünsal
- Pediatric Rheumatology, Faculty of Medicine, Dokuz Eylül University, Izmir, Turkey
| | - Özgür Kasapçopur
- Pediatric Rheumatology, Cerrahpasa Faculty of Medicine, İstanbul University, Istanbul, Turkey
| | - Seza Özen
- Pediatric Rheumatology, Faculty of Medicine, Hacettepe University, Ankara, Turkey
| | - Ruhan Düşünsel
- Pediatric Nephrology and Rheumatology, Faculty of Medicine, Yeditepe University, Istanbul, Turkey
| |
Collapse
|
5
|
Dobrowolski C, McGinley J, Fazzari M, Su J, Bingham KS, Anderson N, Ruttan L, Beaton DE, Wither JE, Tartaglia MC, Kakvan M, Bonilla D, Choi MY, Fritzler MJ, Diaz Martinez JP, Katz P, Green R, Putterman C, Touma Z. Association of mycophenolate and azathioprine use with cognitive function in systemic lupus. Rheumatology (Oxford) 2023; 62:1860-1869. [PMID: 36135792 PMCID: PMC10152298 DOI: 10.1093/rheumatology/keac540] [Citation(s) in RCA: 2] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/25/2022] [Revised: 08/26/2022] [Accepted: 09/14/2022] [Indexed: 11/14/2022] Open
Abstract
OBJECTIVES Cognitive dysfunction (CD) is a common manifestation of SLE that can have detrimental consequences for those affected. To date, no treatments have been approved for SLE-CD. This study aims to assess the association of azathioprine (AZA) and mycophenolate (MMF) use with SLE-CD, given that these medications have demonstrated neuroprotective qualities in prior studies. METHODS Consecutive adult SLE patients presenting to a single healthcare center were considered for participation. The ACR neuropsychological battery for SLE was administered to consenting patients at 0, 6 and 12 months. Scores were compared with age- and sex-matched controls. Primary outcome was CD, defined as a z-score ≤-1.5 in two or more cognitive domains. Mixed-effects logistic regression models were constructed to estimate the odds of CD with respect to AZA and MMF use. RESULTS A total of 300 participants representing 676 patient visits completed the study; 114 (38%) met criteria for CD at baseline. The cumulative AZA dose (g/kg) was associated with reduced odds of CD [odds ratio (OR) 0.76 (95% CI 0.58, 0.98), P = 0.04]. Years of AZA treatment was also associated with reduced odds of CD [OR 0.72 (95% CI 0.54, 0.97), P = 0.03]. MMF use was not associated with CD. CONCLUSION AZA use was associated with significantly lower odds of SLE-CD, while MMF use was not. Additional studies are warranted to further investigate the relationship of AZA and SLE-CD.
Collapse
Affiliation(s)
- Chrisanna Dobrowolski
- Division of Rheumatology, Icahn School of Medicine at Mount Sinai, New York, NY, USA
| | - John McGinley
- Department of Neurology, Albert Einstein College of Medicine, Bronx, NY, USA
| | - Melissa Fazzari
- Department of Epidemiology and Population Health and Department of Obstetrics and Gynecology and Women's Health, Albert Einstein College of Medicine, Bronx, NY, USA
| | - Jiandong Su
- University of Toronto Lupus Clinic, Centre for Prognosis Studies in Rheumatic Diseases, Toronto Western Hospital, Toronto, ON, Canada
| | - Kathleen S Bingham
- Centre for Mental Health, University Health Network; Department of Psychiatry, University of Toronto, Toronto, ON, Canada
| | - Nicole Anderson
- University of Toronto Lupus Clinic, Centre for Prognosis Studies in Rheumatic Diseases, Toronto Western Hospital, Toronto, ON, Canada
| | - Lesley Ruttan
- University Health Network-Toronto Rehabilitation Institute, Toronto, ON, Canada
| | - Dorcas E Beaton
- Institute for Work and Health, University of Toronto, Toronto, ON, Canada
| | - Joan E Wither
- University of Toronto Lupus Clinic, Centre for Prognosis Studies in Rheumatic Diseases, Toronto Western Hospital, Toronto, ON, Canada
| | | | - Mahta Kakvan
- University of Toronto Lupus Clinic, Centre for Prognosis Studies in Rheumatic Diseases, Toronto Western Hospital, Toronto, ON, Canada
| | - Dennisse Bonilla
- University of Toronto Lupus Clinic, Centre for Prognosis Studies in Rheumatic Diseases, Toronto Western Hospital, Toronto, ON, Canada
| | - May Y Choi
- Cumming School of Medicine, University of Calgary, Calgary, AB, Canada
| | - Marvin J Fritzler
- Cumming School of Medicine, University of Calgary, Calgary, AB, Canada
| | - Juan Pablo Diaz Martinez
- University of Toronto Lupus Clinic, Centre for Prognosis Studies in Rheumatic Diseases, Toronto Western Hospital, Toronto, ON, Canada
| | - Patricia Katz
- University of California, San Francisco, Novato, CA, USA
| | - Robin Green
- University Health Network-Toronto Rehabilitation Institute, Toronto, ON, Canada
| | - Chaim Putterman
- Department of Microbiology and Immunology, Albert Einstein School of Medicine, Bronx, NY, USA
- Division of Rheumatology, Albert Einstein College of Medicine, Bronx, NY, USA
- Azrieli School of Medicine, Safed, Israel
- Galillee Medical Center, Nahariya, Israel
| | - Zahi Touma
- University of Toronto Lupus Clinic, Centre for Prognosis Studies in Rheumatic Diseases, Toronto Western Hospital, Toronto, ON, Canada
| |
Collapse
|
6
|
Central nervous system involvement in systemic lupus erythematosus: Data from the Spanish Society of Rheumatology Lupus Register (RELESSER). Semin Arthritis Rheum 2023; 58:152121. [PMID: 36375359 DOI: 10.1016/j.semarthrit.2022.152121] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/14/2022] [Revised: 09/15/2022] [Accepted: 10/19/2022] [Indexed: 11/13/2022]
Abstract
OBJECTIVES To analyze the prevalence, incidence, survival and contribution on mortality of major central nervous system (CNS) involvement in systemic lupus erythematosus (SLE). METHODS Patients fulfilling the SLE 1997 ACR classification criteria from the multicentre, retrospective RELESSER-TRANS (Spanish Society of Rheumatology Lupus Register) were included. Prevalence, incidence and survival rates of major CNS neuropsychiatric (NP)-SLE as a group and the individual NP manifestations cerebrovascular disease (CVD), seizure, psychosis, organic brain syndrome and transverse myelitis were calculated. Furthermore, the contribution of these manifestations on mortality was analysed in Cox regression models adjusted for confounders. RESULTS A total of 3591 SLE patients were included. Of them, 412 (11.5%) developed a total of 522 major CNS NP-SLE manifestations. 61 patients (12%) with major CNS NP-SLE died. The annual mortality rate for patients with and without ever major CNS NP-SLE was 10.8% vs 3.8%, respectively. Individually, CVD (14%) and organic brain syndrome (15.5%) showed the highest mortality rates. The 10% mortality rate for patients with and without ever major CNS NP-SLE was reached after 12.3 vs 22.8 years, respectively. CVD (9.8 years) and organic brain syndrome (7.1 years) reached the 10% mortality rate earlier than other major CNS NP-SLE manifestations. Major CNS NP-SLE (HR 1.85, 1.29-2.67) and more specifically CVD (HR 2.17, 1.41-3.33) and organic brain syndrome (HR 2.11, 1.19-3.74) accounted as independent prognostic factors for poor survival. CONCLUSION The presentation of major CNS NP-SLE during the disease course contributes to a higher mortality, which may differ depending on the individual NP manifestation. CVD and organic brain syndrome are associated with the highest mortality rates.
Collapse
|
7
|
Liu Y, Tu Z, Zhang X, Du K, Xie Z, Lin Z. Pathogenesis and treatment of neuropsychiatric systemic lupus erythematosus: A review. Front Cell Dev Biol 2022; 10:998328. [PMID: 36133921 PMCID: PMC9484581 DOI: 10.3389/fcell.2022.998328] [Citation(s) in RCA: 11] [Impact Index Per Article: 3.7] [Reference Citation Analysis] [Abstract] [Track Full Text] [Download PDF] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/19/2022] [Accepted: 08/12/2022] [Indexed: 11/18/2022] Open
Abstract
Systemic lupus erythematosus (SLE) is an autoimmune inflammatory disease with a complex pathogenesis. Neuropsychiatric systemic lupus erythematosus (NPSLE) is a serious complication of SLE that involves the nervous system and produces neurological or psychiatric symptoms. After decades of research, it is now believed that the diverse clinical manifestations of NPSLE are associated with intricate mechanisms, and that genetic factors, blood-brain barrier dysfunction, vascular lesions, multiple autoimmune antibodies, cytokines, and neuronal cell death may all contribute to the development of NPSLE. The complexity and diversity of NPSLE manifestations and the clinical overlap with other related neurological or psychiatric disorders make its accurate diagnosis difficult and time-consuming. Therefore, in this review, we describe the known pathogenesis and potential causative factors of NPSLE and briefly outline its treatment that may help in the diagnosis and treatment of NPSLE.
Collapse
Affiliation(s)
- Yuhong Liu
- Department of Rheumatology, Third Affifiliated Hospital of Sun Yat-sen University, Guangzhou, China
| | - Zhihua Tu
- Department of Rheumatology, Panyu Hospital of Chinese Medicine, Guangzhou, China
| | - Xi Zhang
- Department of Rheumatology, Third Affifiliated Hospital of Sun Yat-sen University, Guangzhou, China
| | - Keqian Du
- Department of Rheumatology, Third Affifiliated Hospital of Sun Yat-sen University, Guangzhou, China
| | - Zhengquan Xie
- Department of Rheumatology, Panyu Hospital of Chinese Medicine, Guangzhou, China
- *Correspondence: Zhiming Lin, ; Zhengquan Xie,
| | - Zhiming Lin
- Department of Rheumatology, Third Affifiliated Hospital of Sun Yat-sen University, Guangzhou, China
- *Correspondence: Zhiming Lin, ; Zhengquan Xie,
| |
Collapse
|
8
|
Jianing W, Jingyi X, Pingting Y. Neuropsychiatric lupus erythematosus: Focusing on autoantibodies. J Autoimmun 2022; 132:102892. [PMID: 36030137 DOI: 10.1016/j.jaut.2022.102892] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/04/2022] [Accepted: 08/05/2022] [Indexed: 10/15/2022]
Abstract
Patients with systemic lupus erythematosus (SLE) frequently suffer from nervous system complications, termed neuropsychiatric lupus erythematosus (NPLE). NPLE accounts for the poor prognosis of SLE. Correct attribution of NP events to SLE is the primary principle in managing NPLE. The vascular injuries and neuroinflammation are the fundamental neuropathologic changes in NPLE. Specific autoantibody-mediated central nerve system (CNS) damages distinguish NPLE from other CNS disorders. Though the central antibodies in NPLE are generally thought to be raised from the periphery immune system, they may be produced in the meninges and choroid plexus. On this basis, abnormal activation of microglia and disease-associated microglia (DAM) should be the common mechanisms of NPLE and other CNS disturbances. Improved understanding of both characteristic and sharing features of NPLE might yield further options for managing this disease.
Collapse
Affiliation(s)
- Wang Jianing
- Department of Rheumatology and Immunology, The First Hospital of China Medical University, Shenyang, 110001, People's Republic of China
| | - Xu Jingyi
- Department of Rheumatology and Immunology, The First Hospital of China Medical University, Shenyang, 110001, People's Republic of China
| | - Yang Pingting
- Department of Rheumatology and Immunology, The First Hospital of China Medical University, Shenyang, 110001, People's Republic of China.
| |
Collapse
|
9
|
Lu L, Wang H, Liu X, Tan L, Qiao X, Ni J, Sun Y, Liang J, Hou Y, Dou H. Pyruvate kinase isoform M2 impairs cognition in systemic lupus erythematosus by promoting microglial synaptic pruning via the β-catenin signaling pathway. J Neuroinflammation 2021; 18:229. [PMID: 34645459 PMCID: PMC8513209 DOI: 10.1186/s12974-021-02279-9] [Citation(s) in RCA: 15] [Impact Index Per Article: 3.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/04/2020] [Accepted: 08/31/2021] [Indexed: 01/08/2023] Open
Abstract
BACKGROUND Neuropsychiatric systemic lupus erythematosus (NPSLE) is a severe complication, which involves pathological damage to the brain and cognitive function. However, its exact mechanism of action still remains unclear. In this study, we explored the role of microglia in the cognitive dysfunction of NPSLE mice. We also analyzed and compared the metabolites in the hippocampal tissues of the lupus model and control mice. METHODS MRL/MpJ-Faslpr (MRL/lpr) female mice were used as the NPSLE mouse model. Metabolomics was used to assess hippocampal glycolysis levels. Glucose, lactic acid, IL-6, and IL-1β of the hippocampus were detected by ELISA. Based on the glycolysis pathway, we found that pyruvate kinase isoform M2 (PKM2) in the hippocampus was significantly increased. Thus, the expression of PKM2 was detected by qRT-PCR and Western blotting, and the localization of PKM2 in microglia (IBA-1+) or neurons (NeuN+) was assessed by immunofluorescence staining. Flow cytometry was used to detect the number and phenotype of microglia; the changes in microglial phagocytosis and the β-catenin signaling pathway were detected in BV2 cells overexpressing PKM2. For in vivo experiments, MRL/lpr mice were treated with AAV9-shPKM2. After 2 months, Morris water maze and conditional fear tests were applied to investigate the cognitive ability of mice; H&E and immunofluorescence staining were used to evaluate brain damage; flow cytometry was used to detect the phenotype and function of microglia; neuronal synapse damage was monitored by qRT-PCR, Western blotting, and immunofluorescence staining. RESULTS Glycolysis was elevated in the hippocampus of MRL/lpr lupus mice, accompanied by increased glucose consumption and lactate production. Furthermore, the activation of PKM2 in hippocampal microglia was observed in lupus mice. Cell experiments showed that PKM2 facilitated microglial activation and over-activated microglial phagocytosis via the β-catenin signaling pathway. In vivo, AAV9-shPKM2-treated mice showed decreased microglial activation and reduced neuronal synapses loss by blocking the β-catenin signaling pathway. Furthermore, the cognitive impairment and brain damage of MRL/lpr mice were significantly relieved after microglial PKM2 inhibition. CONCLUSION These data indicate that microglial PKM2 have potential to become a novel therapeutic target for treating lupus encephalopathy.
Collapse
Affiliation(s)
- Li Lu
- The State Key Laboratory of Pharmaceutical Biotechnology, Division of Immunology, Medical School, Nanjing University, Nanjing, 210093, People's Republic of China.,Jiangsu Key Laboratory of Molecular Medicine, Nanjing, 210093, People's Republic of China
| | - Hailin Wang
- The State Key Laboratory of Pharmaceutical Biotechnology, Division of Immunology, Medical School, Nanjing University, Nanjing, 210093, People's Republic of China.,Jiangsu Key Laboratory of Molecular Medicine, Nanjing, 210093, People's Republic of China
| | - Xuan Liu
- The State Key Laboratory of Pharmaceutical Biotechnology, Division of Immunology, Medical School, Nanjing University, Nanjing, 210093, People's Republic of China.,Jiangsu Key Laboratory of Molecular Medicine, Nanjing, 210093, People's Republic of China
| | - Liping Tan
- The State Key Laboratory of Pharmaceutical Biotechnology, Division of Immunology, Medical School, Nanjing University, Nanjing, 210093, People's Republic of China.,Jiangsu Key Laboratory of Molecular Medicine, Nanjing, 210093, People's Republic of China
| | - Xiaoyue Qiao
- The State Key Laboratory of Pharmaceutical Biotechnology, Division of Immunology, Medical School, Nanjing University, Nanjing, 210093, People's Republic of China.,Jiangsu Key Laboratory of Molecular Medicine, Nanjing, 210093, People's Republic of China
| | - Jiali Ni
- The State Key Laboratory of Pharmaceutical Biotechnology, Division of Immunology, Medical School, Nanjing University, Nanjing, 210093, People's Republic of China.,Jiangsu Key Laboratory of Molecular Medicine, Nanjing, 210093, People's Republic of China
| | - Yang Sun
- The State Key Laboratory of Pharmaceutical Biotechnology and Collaborative Innovation Center of Chemistry for Life Sciences, School of Life Sciences, Nanjing University, Nanjing, 210023, China.
| | - Jun Liang
- Department of Rheumatology and Immunology, Nanjing Drum Tower Hospital, The Affiliated Hospital of Nanjing University Medical School, Nanjing, 210008, People's Republic of China.
| | - Yayi Hou
- The State Key Laboratory of Pharmaceutical Biotechnology, Division of Immunology, Medical School, Nanjing University, Nanjing, 210093, People's Republic of China. .,Jiangsu Key Laboratory of Molecular Medicine, Nanjing, 210093, People's Republic of China. .,Department of Rheumatology and Immunology, Nanjing Drum Tower Hospital, The Affiliated Hospital of Nanjing University Medical School, Nanjing, 210008, People's Republic of China.
| | - Huan Dou
- The State Key Laboratory of Pharmaceutical Biotechnology, Division of Immunology, Medical School, Nanjing University, Nanjing, 210093, People's Republic of China. .,Jiangsu Key Laboratory of Molecular Medicine, Nanjing, 210093, People's Republic of China. .,Department of Rheumatology and Immunology, Nanjing Drum Tower Hospital, The Affiliated Hospital of Nanjing University Medical School, Nanjing, 210008, People's Republic of China.
| |
Collapse
|
10
|
Abstract
Neuropsychiatric lupus (NPSLE) comprises a disparate collection of syndromes affecting the central and peripheral nervous systems. Progress in the attribution of neuropsychiatric syndromes to SLE-related mechanisms and development of targeted treatment strategies has been impeded by a lack of objective imaging biomarkers that reflect specific neuropsychiatric syndromes and/or pathologic mechanisms. The present review addresses recent publications of neuroimaging techniques in NPSLE.
Collapse
|
11
|
Clinical Features and Outcomes of Neuropsychiatric Systemic Lupus Erythematosus in China. J Immunol Res 2021; 2021:1349042. [PMID: 33532504 PMCID: PMC7834780 DOI: 10.1155/2021/1349042] [Citation(s) in RCA: 9] [Impact Index Per Article: 2.3] [Reference Citation Analysis] [Abstract] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 06/09/2020] [Revised: 12/19/2020] [Accepted: 01/07/2021] [Indexed: 12/18/2022] Open
Abstract
Objective To identify the clinical characteristics, magnetic resonance imaging (MRI) results, and prognostic factors of neuropsychiatric (NP) systemic lupus erythematosus (SLE; NPSLE) in a relatively large patient series in China. Methods Data of patients with NPSLE at Peking Union Medical College Hospital (PUMCH) were collected retrospectively from June 2012 to June 2016. NPSLE patients were compared with 220 non-NPSLE patients. Survival rates were evaluated using the Kaplan-Meier curves, log-rank test, and Cox proportional hazards modeling. Cranial MRI results were also studied. Results Of the 194 included patients, sixteen subtypes of NPSLE were identified, and the most common manifestations were seizure (36.6%), acute confusional state (25.3%), and cerebral vascular disease (15.5%). Compared with the non-NPSLE group, NPSLE patients were significantly more likely to have typical lupus symptoms, higher Systemic Lupus Erythematosus Disease Activity Index 2000 (SLEDAI-2K) scores (P = 0.002), and positive rate of anti-ribosomal P protein antibodies (P = 0.008). Patients with seizure were more likely to have higher SLEDAI-2K scores and positive anti-β2GP1 than non-NPSLE patients. Sixteen patients died during follow-up. The most common cause of death was infection (37.5%). NPSLE significantly decreased survival rates of SLE patients. Patients with elevated serum creatinine (P = 0.001), hypocomplementemia (P = 0.031), and SLEDAI - 2K scores ≥ 15 (P = 0.014) had shorter survival periods. Eighty-two patients underwent detailed cranial MRI analysis; of these, 50 (61.0%) had abnormal results. Small vessel disease was the most common abnormal finding, followed by inflammatory-like lesions and large vessel disease. Conclusions High disease activity and positive rate of anti-ribosomal P protein antibodies may be risk factors for NPSLE. NPSLE decreases survival rates of SLE patients. Renal insufficiency and high disease activity are predictive of poor prognoses for NPSLE patients.
Collapse
|
12
|
Gegenava T, Gegenava M, Steup-Beekman GM, Huizinga TWJ, Bax JJ, Delgado V, Marsan NA. Left Ventricular Systolic Function in Patients with Systemic Lupus Erythematosus and Its Association with Cardiovascular Events. J Am Soc Echocardiogr 2020; 33:1116-1122. [PMID: 32622589 DOI: 10.1016/j.echo.2020.04.018] [Citation(s) in RCA: 15] [Impact Index Per Article: 3.0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Submit a Manuscript] [Subscribe] [Scholar Register] [Received: 04/01/2020] [Accepted: 04/13/2020] [Indexed: 12/15/2022]
Abstract
BACKGROUND Systemic lupus erythematosus (SLE) is a chronic autoimmune disorder with potential cardiovascular involvement. The aim of this study was to assess left ventricular (LV) systolic function in a large cohort of patients with SLE using standard echocardiographic measurements and global longitudinal strain (GLS) by two-dimensional speckle-tracking analysis. Furthermore, the association between echocardiographic parameters and the occurrence of cardiovascular events was assessed. METHODS A total of 102 patients with SLE (88% women; mean age, 43 ± 14 years) undergoing a dedicated multidisciplinary assessment were analyzed, including echocardiography, at the time of their first visit. A control group consisted of 50 age- and sex-matched healthy subjects. RESULTS Compared with control subjects, patients with SLE showed impaired LV systolic function on the basis of LV ejection fraction (51 ± 6% vs 62 ± 6%, P < .001) and by LV GLS (-15 ± 3% vs -19 ± 2%, P < .001). During a median follow-up period of 2 years (interquartile range, 1-6 years), 38 patients (37%) developed cardiovascular events. Kaplan-Meier survival curves showed that patients with SLE with more impaired LV GLS (on the basis of the median value of -15%) experienced higher cumulative rates of cardiovascular events compared with those with less impaired LV GLS (χ2 = 8.292, log-rank P = .004). On multivariate Cox regression analysis, LV GLS demonstrated an independent association with cardiovascular events (hazard ratio, 2.171; 95% CI, 1.015-4.642; P = .046), whereas LV ejection fraction was not significantly associated with the outcome. CONCLUSIONS In patients with SLE, LV systolic function as measured by LV GLS is significantly impaired and associated with cardiovascular events, potentially representing a new tool to improve risk stratification in these patients.
Collapse
Affiliation(s)
- Tea Gegenava
- Department of Cardiology, Leiden University Medical Center, Leiden, The Netherlands
| | - Maka Gegenava
- Department of Rheumatology, Leiden University Medical Center, Leiden, The Netherlands
| | - Gerda M Steup-Beekman
- Department of Rheumatology, Leiden University Medical Center, Leiden, The Netherlands
| | - Thomas W J Huizinga
- Department of Rheumatology, Leiden University Medical Center, Leiden, The Netherlands
| | - Jeroen J Bax
- Department of Cardiology, Leiden University Medical Center, Leiden, The Netherlands
| | - Victoria Delgado
- Department of Cardiology, Leiden University Medical Center, Leiden, The Netherlands
| | - Nina Ajmone Marsan
- Department of Cardiology, Leiden University Medical Center, Leiden, The Netherlands.
| |
Collapse
|
13
|
Li Y, Ge Z, Zhang Z, Shen Z, Wang Y, Zhou T, Wu R. Broad Learning Enhanced 1H-MRS for Early Diagnosis of Neuropsychiatric Systemic Lupus Erythematosus. COMPUTATIONAL AND MATHEMATICAL METHODS IN MEDICINE 2020; 2020:8874521. [PMID: 33299467 PMCID: PMC7704182 DOI: 10.1155/2020/8874521] [Citation(s) in RCA: 6] [Impact Index Per Article: 1.2] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Subscribe] [Scholar Register] [Received: 09/02/2020] [Revised: 10/26/2020] [Accepted: 10/30/2020] [Indexed: 02/05/2023]
Abstract
In this paper, we explore the potential of using the multivoxel proton magnetic resonance spectroscopy (1H-MRS) to diagnose neuropsychiatric systemic lupus erythematosus (NPSLE) with the assistance of a support vector machine broad learning system (BL-SVM). We retrospectively analysed 23 confirmed patients and 16 healthy controls, who underwent a 3.0 T magnetic resonance imaging (MRI) sequence with multivoxel 1H-MRS in our hospitals. One hundred and seventeen metabolic features were extracted from the multivoxel 1H-MRS image. Thirty-three metabolic features selected by the Mann-Whitney U test were considered to have a statistically significant difference (p < 0.05). However, the best accuracy achieved by conventional statistical methods using these 33 metabolic features was only 77%. We turned to develop a support vector machine broad learning system (BL-SVM) to quantitatively analyse the metabolic features from 1H-MRS. Although not all the individual features manifested statistics significantly, the BL-SVM could still learn to distinguish the NPSLE from the healthy controls. The area under the receiver operating characteristic curve (AUC), the sensitivity, and the specificity of our BL-SVM in predicting NPSLE were 95%, 95.8%, and 93%, respectively, by 3-fold cross-validation. We consequently conclude that the proposed system effectively and efficiently working on limited and noisy samples may brighten a noinvasive in vivo instrument for early diagnosis of NPSLE.
Collapse
Affiliation(s)
- Yan Li
- Department of Medical Imaging, The 2nd Affiliated Hospital, Shantou University Medical College, Shantou 515041, China
| | - Zuhao Ge
- Department of Computer Science, Shantou University, Shantou 515041, China
| | - Zhiyan Zhang
- Department of Medical Imaging, Huizhou Central Hospital, Huizhou 516000, China
| | - Zhiwei Shen
- Department of Medical Imaging, The 2nd Affiliated Hospital, Shantou University Medical College, Shantou 515041, China
| | - Yukai Wang
- Department of Rheumatology and Immunology, Shantou Central Hospital, Shantou 515041, China
| | - Teng Zhou
- Department of Computer Science, Shantou University, Shantou 515041, China
- Key Laboratory of Intelligent Manufacturing Technology (Shantou University), Ministry of Education, Shantou 515063, China
| | - Renhua Wu
- Department of Medical Imaging, The 2nd Affiliated Hospital, Shantou University Medical College, Shantou 515041, China
| |
Collapse
|
14
|
Abstract
PURPOSE OF REVIEW Pediatric central nervous system demyelinating diseases include multiple sclerosis (MS), neuromyelitis optica spectrum disorder (NMOSD), and acute disseminated encephalomyelitis (ADEM). As diagnostic criteria become more inclusive, the risk of misdiagnosis of atypical demyelinating diseases of rheumatologic, infectious, and autoimmune etiology increases. RECENT FINDINGS We review mimics of multiple sclerosis, neuromyelitis optica spectrum disorder, and acute disseminated encephalomyelitis, including rheumatologic diseases: systemic lupus erythematosus and neuro-Behçet disease; infectious diseases: human immunodeficiency virus, progressive multifocal leukoencephalopathy, and subacute sclerosis panencephalitis; and autoimmune diseases including X-linked Charcot-Marie-Tooth disease, chronic lymphocytic inflammation with pontine perivascular enhancement responsive to steroids (CLIPPERS) and autoimmune glial fibrillary acidic protein (GFAP) encephalopathy. Atypical demyelinating disease may mimic classic neuroinflammatory diseases of the central nervous system. Imaging may meet criteria for a diagnosis of multiple sclerosis, or patients may present with optic neuritis and transverse myelitis consistent with neuromyelitis optica spectrum or myelin oligodendrocyte glycoprotein (MOG) antibody disorders. Through careful history-taking and review of atypical MRI findings, we may avoid misdiagnosis and mistreatment.
Collapse
|