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白蛋白穿过肾小球滤过屏障的新途径。

Novel routes of albumin passage across the glomerular filtration barrier.

作者信息

Castrop H, Schießl I M

机构信息

Institute of Physiology, University of Regensburg, Regensburg, Germany.

出版信息

Acta Physiol (Oxf). 2017 Mar;219(3):544-553. doi: 10.1111/apha.12760. Epub 2016 Aug 8.

Abstract

Albuminuria is a hallmark of kidney diseases of various aetiologies and an unambiguous symptom of the compromised integrity of the glomerular filtration barrier. Furthermore, there is increasing evidence that albuminuria per se aggravates the development and progression of chronic kidney disease. This review covers new aspects of the movement of large plasma proteins across the glomerular filtration barrier in health and disease. Specifically, this review focuses on the role of endocytosis and transcytosis of albumin by podocytes, which constitutes a new pathway of plasma proteins across the filtration barrier. Thus, we summarize what is known about the mechanisms of albumin endocytosis by podocytes and address the fate of the endocytosed albumin, which is directed to lysosomal degradation or transcellular movement with subsequent vesicular release into the urinary space. We also address the functional consequences of overt albumin endocytosis by podocytes, such as the formation of pro-inflammatory cytokines, which might eventually result in a deterioration of podocyte function. Finally, we consider the diagnostic potential of podocyte-derived albumin-containing vesicles in the urine as an early marker of a compromised glomerular barrier function. In terms of new technical approaches, the review covers how our knowledge of the movement of albumin across the glomerular filtration barrier has expanded by the use of new intravital imaging techniques.

摘要

蛋白尿是各种病因所致肾脏疾病的一个标志,也是肾小球滤过屏障完整性受损的明确症状。此外,越来越多的证据表明,蛋白尿本身会加剧慢性肾脏病的发生和发展。本综述涵盖了健康和疾病状态下大血浆蛋白穿过肾小球滤过屏障的新情况。具体而言,本综述聚焦于足细胞对白蛋白的内吞作用和转胞吞作用的作用,这构成了血浆蛋白穿过滤过屏障的一条新途径。因此,我们总结了关于足细胞白蛋白内吞机制的已知信息,并探讨了内吞白蛋白的去向,其要么被导向溶酶体降解,要么进行跨细胞转运,随后通过囊泡释放到尿腔中。我们还探讨了足细胞明显的白蛋白内吞作用的功能后果,比如促炎细胞因子的形成,这最终可能导致足细胞功能恶化。最后,我们考虑了尿中足细胞来源的含白蛋白囊泡作为肾小球屏障功能受损早期标志物的诊断潜力。在新技术方法方面,本综述涵盖了通过使用新的活体成像技术,我们对白蛋白穿过肾小球滤过屏障的认识是如何得到扩展的。

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