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肾小球滤过屏障及细胞间相互作用的建模

Modeling the Glomerular Filtration Barrier and Intercellular Crosstalk.

作者信息

Ebefors Kerstin, Lassén Emelie, Anandakrishnan Nanditha, Azeloglu Evren U, Daehn Ilse S

机构信息

Department of Physiology, Institute of Neuroscience and Physiology, Sahlgrenska Academy, University of Gothenburg, Gothenburg, Sweden.

Division of Nephrology, Department of Medicine, Icahn School of Medicine at Mount Sinai, New York, NY, United States.

出版信息

Front Physiol. 2021 Jun 2;12:689083. doi: 10.3389/fphys.2021.689083. eCollection 2021.

Abstract

The glomerulus is a compact cluster of capillaries responsible for blood filtration and initiating urine production in the renal nephrons. A trilaminar structure in the capillary wall forms the glomerular filtration barrier (GFB), composed of glycocalyx-enriched and fenestrated endothelial cells adhering to the glomerular basement membrane and specialized visceral epithelial cells, podocytes, forming the outermost layer with a molecular slit diaphragm between their interdigitating foot processes. The unique dynamic and selective nature of blood filtration to produce urine requires the functionality of each of the GFB components, and hence, mimicking the glomerular filter has been challenging, though critical for various research applications and drug screening. Research efforts in the past few years have transformed our understanding of the structure and multifaceted roles of the cells and their intricate crosstalk in development and disease pathogenesis. In this review, we present a new wave of technologies that include glomerulus-on-a-chip, three-dimensional microfluidic models, and organoids all promising to improve our understanding of glomerular biology and to enable the development of GFB-targeted therapies. Here, we also outline the challenges and the opportunities of these emerging biomimetic systems that aim to recapitulate the complex glomerular filter, and the evolving perspectives on the sophisticated repertoire of cellular signaling that comprise the glomerular milieu.

摘要

肾小球是一个紧密的毛细血管簇,负责血液过滤并启动肾单位中的尿液生成。毛细血管壁中的三层结构形成了肾小球滤过屏障(GFB),它由富含糖萼且有窗孔的内皮细胞、附着于肾小球基底膜的特殊内脏上皮细胞(足细胞)组成,足细胞形成最外层,其相互交错的足突之间有分子裂孔隔膜。血液过滤产生尿液的独特动态和选择性特性需要GFB各组成部分发挥功能,因此,模仿肾小球滤过器一直具有挑战性,尽管这对各种研究应用和药物筛选至关重要。过去几年的研究工作改变了我们对细胞结构、多方面作用及其在发育和疾病发病机制中复杂相互作用的理解。在这篇综述中,我们介绍了一波新技术,包括芯片上的肾小球、三维微流控模型和类器官,所有这些都有望增进我们对肾小球生物学的理解,并推动针对GFB的疗法的开发。在此,我们还概述了这些旨在重现复杂肾小球滤过器的新兴仿生系统所面临的挑战和机遇,以及对构成肾小球环境的复杂细胞信号传导机制不断演变的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ec0/8206562/a5873f5b7f6c/fphys-12-689083-g001.jpg

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