Pathophysiology of ANCA-associated Vasculitis

显微镜下多血管炎 蛋白酶3 血管炎 免疫学 髓过氧化物酶 肉芽肿伴多发性血管炎 自身抗体 医学 促炎细胞因子 中性粒细胞胞外陷阱 抗中性粒细胞胞浆抗体 炎症 病理 抗体 疾病
作者
Turki Omar Al-Hussain,Maged Hassan Hussein,Walter Conca,Hadeel Al Mana,Mohammed Akhtar
出处
期刊:Advances in Anatomic Pathology [Lippincott Williams & Wilkins]
卷期号:24 (4): 226-234 被引量:87
标识
DOI:10.1097/pap.0000000000000154
摘要

Antineutrophil cytoplasmic antibody (ANCA)-associated vasculitis is characterized as inflammation of small-sized to medium-sized blood vessels and encompasses several clinicopathologic entities including granulomatosis with polyangiitis, microscopic polyangiitis, eosinophilic granulomatosis with polyangiitis, and renal-limited ANCA-associated vasculitis. Over the past several decades, significant progress has been made in understanding the pathophysiology of ANCA-associated vasculitis. Although neutrophils contain a multitude of granular proteins, clinically significant autoantibodies are only recognized against myeloperoxidase and proteinase 3, both of which are present in the azurophilic granules. The propensity to develop these antibodies depends on a variety of predisposing factors such as microbial infection, genetic factors, environmental agents, and therapeutic drugs among others. These factors are usually associated with production of proinflammatory cytokines with capacity to prime the neutrophils. As a result a high proportion of neutrophils in circulation may be primed resulting in exposure of cytoplasmic proteins including myeloperoxidase and proteinase 3 on the surface of the neutrophils. Primed neutrophils are activated by interaction with ANCA in circulation. Activated neutrophils attach to and transmigrate through endothelium and accumulate within the vessel wall. These neutrophils degranulate and produce reactive oxygen radicals and ultimately die, causing tissue injury. Endothelial injury results in leakage of serum proteins and coagulation factors causing fibrinoid necrosis. B cells produce ANCAs, as well as neutrophil abnormalities and imbalances in different T-cell subtypes with excess of Th17, which perpetuate the inflammatory process.

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