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A zebrafish model of conditional targeted podocyte ablation and regeneration

机译:斑马鱼型靶向型大细胞消融和再生的模型

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摘要

Podocytes are specialized cells that contribute critically to the normal structure and function of the glomerular filtration barrier. Their depletion plays an important role in the pathogenesis of glomerulosclerosis. Here, we report generation of a genetic model of conditional podocyte ablation and regeneration in zebrafish using a bacterial nitroreductase strategy to convert a prodrug, Metronidazole, into a cytotoxic metabolite. A transgenic zebrafish line was generated that expresses a green fluorescence protein (GFP) and the nitroreductase fusion protein under the control of the podocin promoter Tg(podocin:nitroreductase-GFP). Treatment of these transgenic zebrafish with Metronidazole results in podocyte apoptosis, a loss of nephrin and podocin expression, foot process effacement, and a leaky glomerular filtration barrier. Following Metronidazole washout, proliferating cells were detected in the glomeruli of recovering transgenic fish with a restoration of nitroreductase-GFP fluorescence, nephrin and podocin expression, a reestablishment of normal foot process architecture and glomerular barrier function. Thus, our studies show that zebrafish podocytes are capable of regenerating following depletion and establish the Tg(podocin:NTR-GFP) fish as a new model to study podocyte injury and repair.
机译:足细胞是专门的细胞,对肾小球滤过屏障的正常结构和功能起关键作用。它们的消耗在肾小球硬化的发病机理中起重要作用。在这里,我们报告使用细菌硝基还原酶策略将前药甲硝唑转化为细胞毒性代谢产物的斑马鱼条件足细胞消融和再生的遗传模型的生成。在podocin启动子Tg(podocin:nitroreductase-GFP)的控制下,产生了一个表达绿色荧光蛋白(GFP)和硝基还原酶融合蛋白的转基因斑马鱼品系。用甲硝唑处理这些转基因斑马鱼会导致足细胞凋亡,nephrin和podocin表达缺失,足突消失以及肾小球滤过障碍。甲硝唑冲洗后,在恢复转基因鱼的肾小球中检测到增殖细胞,其中硝基还原酶-GFP荧光,nephrin和podocin表达得以恢复,正常足突结构和肾小球屏障功能得以重建。因此,我们的研究表明,斑马鱼足细胞能够在耗尽后再生,并将Tg(podocin:NTR-GFP)鱼建立为研究足细胞损伤和修复的新模型。

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