细胞标志蛋白
内斯汀
祖细胞
病理
激光捕获显微切割
增殖标记
肾小球肾炎
生物
足细胞
干细胞
医学
细胞生物学
肾
内分泌学
免疫组织化学
神经干细胞
蛋白尿
基因表达
基因
生物化学
作者
Bart Smeets,Maria Lucia Angelotti,Paola Rizzo,Henry Dijkman,Elena Lazzeri,Fieke Mooren,Lara Ballerini,Eliana Parente,Costanza Sagrinati,Benedetta Mazzinghi,Elisa Ronconi,Francesca Becherucci,Ariela Benigni,Eric Steenbergen,Laura Lasagni,Giuseppe Remuzzi,Jack F.M. Wetzels,Paola Romagnani
标识
DOI:10.1681/asn.2009020132
摘要
Glomerular injury can involve excessive proliferation of glomerular epithelial cells, resulting in crescent formation and obliteration of Bowman's space. The origin of these hyperplastic epithelial cells in different glomerular disorders is controversial. Renal progenitors localized to the inner surface of Bowman's capsule can regenerate podocytes, but whether dysregulated proliferation of these progenitors contributes to crescent formation is unknown. In this study, we used confocal microscopy, laser capture microdissection, and real-time quantitative reverse transcriptase-PCR to demonstrate that hypercellular lesions of different podocytopathies and crescentic glomerulonephritis consist of three distinct populations: CD133(+)CD24(+)podocalyxin (PDX)(-)nestin(-) renal progenitors, CD133(+)CD24(+)PDX(+)nestin(+) transitional cells, and CD133(-)CD24(-)PDX(+)nestin(+) differentiated podocytes. In addition, TGF-beta induced CD133(+)CD24(+) progenitors to produce extracellular matrix, and these were the only cells to express the proliferation marker Ki67. Taken together, these results suggest that glomerular hyperplastic lesions derive from the proliferation of renal progenitors at different stages of their differentiation toward mature podocytes, providing an explanation for the pathogenesis of hyperplastic lesions in podocytopathies and crescentic glomerulonephritis.
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