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首页> 外文期刊>Journal of cellular physiology. >HMGB1 protein promotes glomerular mesangial matrix deposition via TLR2 in lupus nephritis
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HMGB1 protein promotes glomerular mesangial matrix deposition via TLR2 in lupus nephritis

机译:HMGB1蛋白促进肾小球系膜基质沉积通过TLR2在狼疮肾炎

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摘要

Lupus nephritis (LN) is the most common complication of systemic lupus erythematosus. Patients with LN mostly die of sclerosing glomerulonephritis and renal failure. The inhibition of glomerular mesangial matrix deposition is an efficient method to restrict the progress of renal injury. By recognizing and binding extracellular and intracellular ligands, Toll-like receptor 2 (TLR2) contributes to the pathogenesis of most immune diseases. However, the relationship between TLR2 and LN is still unknown. Our previous studies confirmed that high-mobility group box 1 (HMGB1), an important ligand of TLR2, promotes the progression of LN by inducing the proliferation of glomerular mesangial cells. However, whether or not HMGB1 participates in the pathogenesis of glomerular mesangial matrix deposition in LN remains unknown. In this study, we observed the upregulated expression of TLR2 in the glomeruli of LN patients and MRL/lpr mice. The inhibition of either TLR2 or HMGB1 inhibited the release of fibronectin and the activation of the MyD88/NF-kB pathway in mesangial cells cultured with LN plasma. In addition, both TLR2- and HMGB1-deficient mice showed reduced 24 hr urine protein levels and improved glomerular histological changes and sclerosis levels. These results indicate that TLR2 regulates glomerular mesangial matrix deposition in LN through the activation of the MyD88/NF-kB pathway by binding to HMGB1.
机译:狼疮肾炎(LN)是最常见的系统性红斑狼疮的并发症。LN患者主要死于硬化性肾小球肾炎和肾功能衰竭。抑制肾小球系膜基质沉积是一种有效的方法来限制肾损伤的进展。结合细胞外和细胞内的配体,toll样受体2 (TLR2)导致的大多数免疫疾病的发病机理。TLR2和LN仍然是之间的关系未知的。高机动组框1 (HMGB1),一个重要的TLR2配体,促进LN的进展诱导肾小球的扩散系膜细胞。参与肾小球的发病机制系膜基质沉积在LN仍然存在未知的。调节肾小球TLR2的表达式LN患者和推广/ lpr老鼠。TLR2或HMGB1的抑制的释放纤连蛋白的激活MyD88 / NF-kB途径与LN系膜细胞培养等离子体。HMGB1-deficient老鼠显示24小时尿液减少蛋白质含量和改善肾小球组织学变化和硬化的水平。结果表明,TLR2调节肾小球系膜基质沉积在LNMyD88 / NF-kB通路的激活绑定

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