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人肾小管细胞含有CD24/CD133祖细胞群:以镉为模型对毒物诱导损伤后肾小管再生的意义。

Human renal tubular cells contain CD24/CD133 progenitor cell populations: Implications for tubular regeneration after toxicant induced damage using cadmium as a model.

作者信息

Shrestha Swojani, Somji Seema, Sens Donald A, Slusser-Nore Andrea, Patel Divyen H, Savage Evan, Garrett Scott H

机构信息

Department of Pathology, University of North Dakota, School of Medicine and Health Sciences, 1301 N. Columbia Road, Stop 9037, Grand Forks, ND 58202, United States.

Department of Pathology, University of North Dakota, School of Medicine and Health Sciences, 1301 N. Columbia Road, Stop 9037, Grand Forks, ND 58202, United States.

出版信息

Toxicol Appl Pharmacol. 2017 Sep 15;331:116-129. doi: 10.1016/j.taap.2017.05.038. Epub 2017 Jun 3.

Abstract

The proximal tubules of the kidney are target sites of injury by various toxicants. Cadmium (Cd), an environmental nephrotoxicant can cause adverse effects and overt renal damage. To decipher the mechanisms involved in nephrotoxicity, an in vitro model system is required. Mortal cultures of human proximal tubule (HPT) cells have served, as models but are difficult to acquire and do not lend themselves to stable transfection. The immortalized human proximal tubule cell line HK-2, has served as a model but it lacks vectorial active transport and shows signs of lost epithelial features. Recently a new proximal tubule cell line was developed, the RPTEC/TERT1, and the goal of this study was to determine if this cell line could serve as a model to study nephrotoxicity. Global gene expression analysis of this cell line in comparison to the HK-2 and HPT cells showed that the RPTEC/TERT1 cells had gene expression patterns similar to HPT cells when compared to the HK-2 cells. The HPT and the RPTEC/TERT1 cell line had an increased population of stem/progenitor cells co-expressing CD24 and CD133 when compared to the HK-2 cells. The level of expression of cadherins, claudins and occludin molecules was also similar between the RPTEC/TERT1 and the HPT cells. Acute exposure to Cd resulted in necrosis of the RPTEC/TERT1 cells when compared to the HK-2 cells which died by apoptosis. Thus, the RPTEC/TERT1 cells are similar to HPT cells and can serve as a good model system to study mechanisms involved in toxicant induced renal damage.

摘要

肾脏的近端小管是各种毒物的损伤靶点。镉(Cd)作为一种环境肾毒物,可导致不良反应和明显的肾损伤。为了解析肾毒性所涉及的机制,需要一个体外模型系统。人近端小管(HPT)细胞的原代培养物曾作为模型,但难以获得且不适合稳定转染。永生化的人近端小管细胞系HK - 2曾作为模型,但它缺乏向量主动转运,且显示出上皮特征丧失的迹象。最近开发了一种新的近端小管细胞系RPTEC/TERT1,本研究的目的是确定该细胞系是否可作为研究肾毒性的模型。与HK - 2和HPT细胞相比,对该细胞系进行全基因表达分析表明,与HK - 2细胞相比,RPTEC/TERT1细胞的基因表达模式与HPT细胞相似。与HK - 2细胞相比,HPT和RPTEC/TERT1细胞系中共同表达CD24和CD133的干/祖细胞群体增加。RPTEC/TERT1细胞与HPT细胞之间钙黏蛋白、闭合蛋白和紧密连接蛋白分子水平也相似。与通过凋亡死亡的HK - 2细胞相比,急性暴露于镉会导致RPTEC/TERT1细胞坏死。因此,RPTEC/TERT1细胞与HPT细胞相似,可作为研究毒物诱导肾损伤机制的良好模型系统。

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