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一种新型的足细胞耗竭小鼠模型。

A novel mouse model of podocyte depletion.

机构信息

Division of Nephrology, Department of Medicine, Duke University and Durham VA Medical Centers, Durham, NC 27710, USA. spurn002 @ mc.duke.edu

出版信息

Nephron Exp Nephrol. 2012;121(1-2):e10-22. doi: 10.1159/000342369. Epub 2012 Oct 19.

Abstract

AIM

The goal of this study was to examine the capacity for glomerular repair after a podocyte-depleting injury.

METHODS

We created transgenic (TG) mice expressing the yeast enzyme cytosine deaminase specifically in glomerular podocytes. In these TG animals, the prodrug 5-flucytosine (5-FC) is converted to 5-fluorouracil and promotes cell death.

RESULTS

Treatment with increasing dosages of 5-FC caused graded increases in proteinuria 1-2 weeks after treatment, which returned to control levels by the 10-week time point. Light microscopic examination revealed minimal pathology at the 2-week time point, but electron microscopy revealed found foot process effacement as well as focal areas of glomerular basement membrane duplication, and immunohistochemical studies detected podocyte apoptosis and a decrease in the number of Wilms' tumor protein 1 (WT1)-positive cells. By the 10-week time point, however, the number of WT1-positive cells was similar to controls and a few mice had developed focal areas of glomerulosclerosis. Consistent with the effects of 5-FC on podocyte number, expression of the podocyte mRNAs for nephrin, podocin, synaptopodin and podocalyxin were altered in a similar temporal fashion.

CONCLUSION

The glomerulus has a significant capacity for repair after a podocyte-depleting injury.

摘要

目的

本研究旨在探讨足细胞耗竭损伤后肾小球的修复能力。

方法

我们构建了在肾小球足细胞中特异性表达酵母酶胞嘧啶脱氨酶的转基因 (TG) 小鼠。在这些 TG 动物中,前体药物 5-氟胞嘧啶 (5-FC) 被转化为 5-氟尿嘧啶并促进细胞死亡。

结果

用递增剂量的 5-FC 处理可在治疗后 1-2 周引起蛋白尿逐渐增加,到 10 周时恢复到对照水平。光镜检查在 2 周时显示出最小的病理学,但电镜显示出足突融合以及局灶性肾小球基底膜重复,免疫组化研究检测到足细胞凋亡和 Wilms 瘤蛋白 1 (WT1) 阳性细胞数量减少。然而,到 10 周时,WT1 阳性细胞的数量与对照组相似,少数小鼠出现局灶性肾小球硬化。与 5-FC 对足细胞数量的影响一致,足细胞 mRNA 中用于 Nephrin、Podocin、Synaptopodin 和 Podocalyxin 的表达也以相似的时间方式发生改变。

结论

在足细胞耗竭损伤后,肾小球具有显著的修复能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1be2/3574644/1dece9f7cb24/nihms436053f1a.jpg

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