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Glomerular endothelial cell injury and cross talk in diabetic kidney disease

机译:肾脏内皮细胞损伤和糖尿病肾病的交叉谈

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摘要

Diabetic kidney disease (DKD) remains a leading cause of new-onset end-stage renal disease (ESRD), and yet, at present, the treatment is still very limited. A better understanding of the pathogenesis of DKD is therefore necessary to develop more effective therapies. Increasing evidence suggests that glomerular endothelial cell (GEC) injury plays a major role in the development and progression of DKD. Alteration of the glomerular endothelial cell surface layer, including its major component, glycocalyx, is a leading cause of microalbuminuria observed in early DKD. Many studies suggest a presence of cross talk between glomerular cells, such as between GEC and mesangial cells or GEC and podocytes. PDGFB/PDGFRbeta is a major mediator for GEC and mesangial cell cross talk, while vascular endothelial growth factor (VEGF), angiopoietins, and endothelin-1 are the major mediators for GEC and podocyte communication. In DKD, GEC injury may lead to podocyte damage, while podocyte loss further exacerbates GEC injury, forming a vicious cycle. Therefore, GEC injury may predispose to albuminuria in diabetes either directly or indirectly by communication with neighboring podocytes and mesangial cells via secreted mediators. Identification of novel mediators of glomerular cell cross talk, such as microRNAs, will lead to a better understanding of the pathogenesis of DKD. Targeting these mediators may be a novel approach to develop more effective therapy for DKD.
机译:糖尿病肾疾病(DKD)仍然是新发病末期肾病(ESRD)的主要原因,但目前,治疗仍然非常有限。因此,需要更好地理解DKD的发病机制,以发展更有效的疗法。越来越多的证据表明,肾小球内皮细胞(GEC)损伤在DKD的发展和进展中发挥着重要作用。肾小球内皮细胞表面层的改变,包括其主要成分Glycalyx,是早期DKD中观察到的微蛋氨酸的主要原因。许多研究表明肾小球细胞之间的交叉谈话的存在,例如GEC和Mesangial细胞或GEC和Podocytes之间。 PDGFB / PDGFRBETA是GEC和Mesangial细胞交叉谈话的主要调解员,而血管内皮生长因子(VEGF),血管生成素和内皮素-1是GEC和Podyyte通信的主要介质。在DKD中,GEC损伤可能导致泛细胞损伤,而Podocyte损失进一步加剧GEC损伤,形成恶性循环。因此,GEC损伤可以通过分泌的介质通过与相邻的诱惑和乳细胞和纱线细胞通信直接或间接地直接或间接地倾向于糖尿病患者。鉴定微细胞交叉谈话的新型介质,如MicroRNA,将更好地了解DKD的发病机制。针对这些调解员可能是一种新的方法,可以为DKD制定更有效的治疗方法。

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