Monosodium urate monohydrate crystal–induced inflammation in vivo: Quantitative histomorphometric analysis of cellular events

组胺 炎症 化学 肥大细胞 渗出液 白细胞 单核细胞 脾脏 脱颗粒 内分泌学 免疫学 内科学 病理 医学 生物化学 受体
作者
Corinne Schiltz,Frédéric Lioté,Florence Prudhommeaux,Alain Meunier,Romuald Champy,Jacques Callebert,Thomas Bardin
出处
期刊:Arthritis & Rheumatism [Wiley]
卷期号:46 (6): 1643-1650 被引量:106
标识
DOI:10.1002/art.10326
摘要

Abstract Objective To quantify the inflammatory cell response in rat air pouch pseudosynovial membrane during monosodium urate monohydrate (MSU) crystal–induced inflammation. Methods In the rat air‐pouch model, we used a computer‐assisted histomorphometric method to quantify cell distributions, based on cell linear densities, in histologic sections of membranes from pouches injected with MSU or saline. The volume, white blood cell (WBC) count, and histamine content of the pouch exudates were determined at several time points. Results Injection of 10 mg of MSU crystals into the pouch produced an acute exudate. After peaking at 24 hours, the exudate volume and WBC count decreased spontaneously over the next 3 days, simulating the self‐limited course of acute gout. Membrane thickness followed a parallel course. Membrane polymorphonuclear cell (PMN) linear densities were closely correlated with exudate WBC counts, suggesting PMN recruitment from the subintimal synovial membrane. Both monocyte/macrophage and mast cell linear densities increased in the subintimal layer 2 hours after crystal injection ( P = 0.038 and P = 0.03, respectively, versus controls), whereas PMN linear densities showed 2 peaks, one at 4 hours and the other 24 hours. The exudate histamine content peaked 6 hours after crystal injection, when mast cell linear densities were minimal in the membranes, suggesting mast cell degranulation. Conclusion An increase in monocyte/macrophage and mast cell densities in the membrane preceded the PMN influx in the pouch membrane and exudate, suggesting that mast cells may be involved in the early phase of MSU crystal–induced inflammation, at least in this rat model.
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