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早期糖尿病肾病:聚焦于糖萼。

Early diabetic kidney disease: Focus on the glycocalyx.

作者信息

Yu Hui, Song Yi-Yun, Li Xian-Hua

机构信息

Department of Nephrology, Qilu Hospital of Shandong University, Jinan 250012, Shandong Province, China.

出版信息

World J Diabetes. 2023 May 15;14(5):460-480. doi: 10.4239/wjd.v14.i5.460.

Abstract

The incidence of diabetic kidney disease (DKD) is sharply increasing worldwide. Microalbuminuria is the primary clinical marker used to identify DKD, and its initiating step in diabetes is glomerular endothelial cell dysfunction, particularly glycocalyx impairment. The glycocalyx found on the surface of glomerular endothelial cells, is a dynamic hydrated layer structure composed of pro-teoglycans, glycoproteins, and some adsorbed soluble components. It reinforces the negative charge barrier, transduces the shear stress, and mediates the interaction of blood corpuscles and podocytes with endothelial cells. In the high-glucose environment of diabetes, excessive reactive oxygen species and proinflammatory cytokines can damage the endothelial glycocalyx (EG) both directly and indirectly, which induces the production of microalbuminuria. Further research is required to elucidate the role of the podocyte glycocalyx, which may, together with endothelial cells, form a line of defense against albumin filtration. Interestingly, recent research has confirmed that the negative charge barrier function of the glycocalyx found in the glomerular basement membrane and its repulsion effect on albumin is limited. Therefore, to improve the early diagnosis and treatment of DKD, the potential mechanisms of EG degradation must be analyzed and more responsive and controllable targets must be explored. The content of this review will provide insights for future research.

摘要

糖尿病肾病(DKD)在全球范围内的发病率正在急剧上升。微量白蛋白尿是用于识别DKD的主要临床标志物,其在糖尿病中的起始步骤是肾小球内皮细胞功能障碍,尤其是糖萼损伤。肾小球内皮细胞表面的糖萼是一种动态水合层结构,由蛋白聚糖、糖蛋白和一些吸附的可溶性成分组成。它加强了负电荷屏障,传导剪切应力,并介导血细胞和足细胞与内皮细胞的相互作用。在糖尿病的高糖环境中,过量的活性氧和促炎细胞因子可直接或间接损伤内皮糖萼(EG),从而诱导微量白蛋白尿的产生。需要进一步研究以阐明足细胞糖萼的作用,其可能与内皮细胞一起形成一道防止白蛋白滤过的防线。有趣的是,最近的研究证实,肾小球基底膜中发现的糖萼的负电荷屏障功能及其对白蛋白的排斥作用是有限的。因此,为了改善DKD的早期诊断和治疗,必须分析EG降解的潜在机制,并探索更具反应性和可控性的靶点。本综述的内容将为未来的研究提供见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4d4/10236994/5232463be5c9/WJD-14-460-g001.jpg

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