Microscopic Polyangiitis
What's New
Last Posted: Nov 07, 2024
- Polymorphisms of the SERPINA1 gene are associated with higher mortality in a Brazilian cohort of ANCA-associated vasculitis patients.
Henrique Ayres Mayrink Giardini, et al. Clinics (Sao Paulo, Brazil) 2024 0 100524 - Association between CBL gene polymorphism and susceptibility of microscopic polyangiitis in a Chinese population: A case-control analysis.
Liu Liu, et al. Cytokine 2024 0 156596 - Association of ATG4A single nucleotide polymorphism rs807185 on risk of microscopic polyangiitis in Chinese population.
Yan Li, et al. International immunopharmacology 2023 0 110659 - Characteristics and outcome of ANCA-associated vasculitides induced by anti-thyroid drugs: a multicenter retrospective case-control study.
Julien Culerrier, et al. Rheumatology (Oxford, England) 2023 0 - Seasonal influence on development of anti-neutrophil cytoplasmic antibody-associated vasculitis: a retrospective cohort study conducted at multiple institutions in Japan (J-CANVAS).
Yusuke Yoshida, et al. The Journal of rheumatology 2023 0 - Association between the AKT1 single nucleotide polymorphism (rs2498786, rs2494752 and rs5811155) and microscopic polyangiitis risk in a Chinese population.
Li Lizhen, et al. Molecular genetics and genomics : MGG 2023 0 - Association of HLA-class II alleles with risk of relapse in myeloperoxidase-antineutrophil cytoplasmic antibody positive vasculitis in the Japanese population.
Kawasaki Aya, et al. Frontiers in immunology 2023 0 1119064 - Rheumatoid factor false positivity in patients with ANCA-associated vasculitis not having medical conditions producing rheumatoid factor.
Moon Jae-Seung, et al. Clinical rheumatology 2017 0 (10) 2771-2779 - Is granulomatosis with polyangiitis in Asia different from the West?
Naidu Godasi S R S N K, et al. International journal of rheumatic diseases 2018 0 90-94 - Cancer development in Korean patients with ANCA-associated vasculitis: a single centre study.
Yoo Juyoung, et al. Clinical and experimental rheumatology 2018 0 (2) 73-77 - Contribution of HLA-DRB1 * 09: 01 allele to development of minocycline induced antineutrophil cytoplasmic antibody (ANCA)-associated cutaneous vasculitis: report of two cases.
Kawahara Hiroyuki, et al. Modern rheumatology case reports 2020 0 (2) 267-271 - Advances in the genomics of ANCA-associated vasculitis-a view from East Asia.
Kawasaki Aya, et al. Genes and immunity 2021 0 (1) 1-11 - Association of ATG7 gene polymorphisms with microscopic polyangiitis in Chinese individuals.
Chu Liepeng, et al. American journal of translational research 2022 0 (10) 7239-7251 - MTOR gene polymorphism may be associated with microscopic polyangiitis susceptibility in a Guangxi population of China.
Lan Jingjing, et al. Gene 2022 0 147101 - Identification and functional characterization of a novel susceptibility locus for small vessel vasculitis with MPO-ANCA.
Dahlqvist Johanna, et al. Rheumatology (Oxford, England) 2021 0 (8) 3461-3470 - Gene polymorphisms in ULK1 and PIK3CA are associated with the risk of microscopic polyangiitis in the Guangxi Zhuang Autonomous Region in China.
Zhu Yan, et al. PeerJ 2021 0 e12377 - Antineutrophil Cytoplasmic Antibody-Associated Vasculitis Update: Genetic Pathogenesis.
Li Weiran, et al. Frontiers in immunology 2021 0 624848 - Association of TERT and DSP variants with microscopic polyangiitis and myeloperoxidase-ANCA positive vasculitis in a Japanese population: a genetic association study.
Kawasaki Aya, et al. Arthritis research & therapy 2020 10 (1) 246 - Distinct HLA and non-HLA associations in different subtypes of ANCA-associated vasculitides in North India.
Singh Jagdeep, et al. International journal of rheumatic diseases 2020 4 - CLINGEN Actionability Report for Alpha-1 Antitrypsin Deficiency - SERPINA1
ClinGen Actionability Working Group - Association of ETS1 polymorphism with granulomatosis with polyangiitis and proteinase 3-anti-neutrophil cytoplasmic antibody positive vasculitis in a Japanese population.
Kawasaki Aya, et al. Journal of human genetics 2017 10 - Identification of Functional and Expression Polymorphisms Associated With Risk for Antineutrophil Cytoplasmic Autoantibody-Associated Vasculitis.
Merkel Peter A, et al. Arthritis & rheumatology (Hoboken, N.J.) 2017 5 (5) 1054-1066 - Protective Role of HLA-DRB1*13:02 against Microscopic Polyangiitis and MPO-ANCA-Positive Vasculitides in a Japanese Population: A Case-Control Study.
Kawasaki Aya, et al. PloS one 2016 0 (5) e0154393 - PTPN22 R620W polymorphism and ANCA disease risk in white populations: a metaanalysis.
Cao Yali, et al. The Journal of rheumatology 2015 2 (2) 292-9 - Single nucleotide polymorphisms in the toll-like receptor 2 (TLR2) gene are associated with microscopic polyangiitis in the northern Han Chinese population.
Wu Ziyan, et al. Modern rheumatology / the Japan Rheumatism Association 2015 3 (2) 224-9 - Genetics of ANCA-associated vasculitis in Japan: a role for HLA-DRB1*09:01 haplotype.
Tsuchiya Naoyuki, et al. Clinical and experimental nephrology 2013 10 (5) 628-30 - Association of IRF5 polymorphism with MPO-ANCA-positive vasculitis in a Japanese population.
Kawasaki A, et al. Genes and immunity 2013 12 (8) 527-9 - Genetics of toll like receptor 9 in ANCA associated vasculitides.
Husmann C A, et al. Annals of the rheumatic diseases 2014 5 (5) 890-6 - Genetically distinct subsets within ANCA-associated vasculitis.
Lyons Paul A, et al. The New England journal of medicine 2012 7 (3) 214-23 - PTPN22 R620W polymorphism in the ANCA-associated vasculitides.
Martorana Davide, et al. Rheumatology (Oxford, England) 2012 5 (5) 805-12
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Disclaimer: Articles listed in the Public Health Knowledge Base are selected by Public Health Genomics Branch to provide current awareness of the literature and news. Inclusion in the update does not necessarily represent the views of the Centers for Disease Control and Prevention nor does it imply endorsement of the article's methods or findings. CDC and DHHS assume no responsibility for the factual accuracy of the items presented. The selection, omission, or content of items does not imply any endorsement or other position taken by CDC or DHHS. Opinion, findings and conclusions expressed by the original authors of items included in the update, or persons quoted therein, are strictly their own and are in no way meant to represent the opinion or views of CDC or DHHS. References to publications, news sources, and non-CDC Websites are provided solely for informational purposes and do not imply endorsement by CDC or DHHS.
- Page last reviewed:Feb 1, 2024
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