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一种从成年大鼠肾脏中分离完整肾小球的高效筛选方法。

An Efficient Sieving Method to Isolate Intact Glomeruli from Adult Rat Kidney.

作者信息

Rush Brittney M, Small Sarah A, Stolz Donna B, Tan Roderick J

机构信息

Division of Renal-Electrolyte, Department of Medicine, University of Pittsburgh.

Department of Cell Biology, University of Pittsburgh.

出版信息

J Vis Exp. 2018 Nov 1(141). doi: 10.3791/58162.

Abstract

Preservation of glomerular structure and function is pivotal in the prevention of glomerulonephritis, a category of kidney disease characterized by proteinuria which can eventually lead to chronic and end-stage renal disease. The glomerulus is a complex apparatus responsible for the filtration of plasma from the body. In disease, structural integrity is lost and allows for the abnormal leakage of plasma contents into the urine. A method to isolate and examine glomeruli in culture is critical for the study of these diseases. In this protocol, an efficient method of retrieving intact glomeruli from adult rat kidneys while conserving structural and morphological characteristics is described. This process is capable of generating high yields of glomeruli per kidney with minimal contamination from other nephron segments. With these glomeruli, injury conditions can be mimicked by incubating them with a variety of chemical toxins, including protamine sulfate, which causes foot process effacement and proteinuria in animal models. Degree of injury can be assessed using transmission electron microscopy, immunofluorescence staining, and western blotting. Nephrin and Wilms Tumor 1 (WT1) levels can also be assessed from these cultures. Due to the ease and flexibility of this protocol, the isolated glomeruli can be utilized as described or in a way that best suits the needs of the researcher to help better study glomerular health and structure in diseased states.

摘要

肾小球结构和功能的保存对于预防肾小球肾炎至关重要,肾小球肾炎是一类以蛋白尿为特征的肾脏疾病,最终可导致慢性和终末期肾病。肾小球是一个负责从体内过滤血浆的复杂器官。在疾病状态下,其结构完整性丧失,导致血浆成分异常漏入尿液。一种在培养中分离和检查肾小球的方法对于这些疾病的研究至关重要。在本方案中,描述了一种从成年大鼠肾脏中获取完整肾小球同时保留其结构和形态特征的有效方法。该过程能够从每个肾脏中产生高产率的肾小球,且来自其他肾单位节段的污染最小。利用这些肾小球,可以通过将它们与多种化学毒素一起孵育来模拟损伤条件,包括硫酸鱼精蛋白,其在动物模型中会导致足突消失和蛋白尿。损伤程度可以通过透射电子显微镜、免疫荧光染色和蛋白质印迹法进行评估。也可以从这些培养物中评估Nephrin和Wilms肿瘤1(WT1)的水平。由于本方案的简便性和灵活性,分离出的肾小球可以按照所述方式使用,也可以以最适合研究人员需求的方式使用,以帮助更好地研究疾病状态下的肾小球健康和结构。

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