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Pivotal role of pericytes in kidney fibrosis

机译:周细胞在肾纤维化中的关键作用

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摘要

1. Kidney pericytes were recently identified as collagen Ialpha1-producing cells in healthy kidney, but the developmental, physiological and pathological roles of kidney pericytes remain poorly understood. Pericytes are stromal-derived cells that envelop and have intimate connections with adjacent capillary endothelial cells (EC). Recent studies in the eye and brain have revealed that pericytes are crucial for angiogenesis, vascular stability and vessel integrity. 2. In response to kidney injury, pericytes promptly migrate away from the capillary wall into the interstitial space. Here, pericytes are activated and differentiate into scar-forming myofi-broblasts. In the absence of pericytes, peritubular capillaries are destabilized, leading to vascular regression. Consequently, capillary loss and fibrosis following kidney injury are intimately linked and hinge centrally around pericyte detachment from EC. 3. Kinetic mathematical modelling has demonstrated that pericytes are the major source of myofibroblasts in the fibrotic kidney. Comprehensive genetic fate mapping studies of nephron epithelia or kidney stroma has demonstrated that epithelial cells do not migrate outside of the epithelial compartment to become myofibroblasts; rather, interstitial pericytes are progenitors of scar-forming myofibroblasts. Bidirectional signalling between pericytes and EC is necessary for pericyte detachment from peritubular capillaries. 4. In the present review, we summarize the pathologically vital roles of kidney pericytes in fibrosis, including our new findings. The study of kidney pericytes and endothelial-pericyte cross-talk will identify novel therapeutic targets for currently incurable chronic kidney diseases.
机译:1.肾脏周细胞最近被确认为健康肾脏中产生胶原Ialpha1的细胞,但对肾脏周细胞的发育,生理和病理作用仍然知之甚少。周细胞是包膜的基质来源细胞,并与相邻的毛细血管内皮细胞(EC)紧密相连。最近在眼和脑中的研究表明,周细胞对于血管生成,血管稳定性和血管完整性至关重要。 2.响应肾脏损伤,周细胞迅速从毛细血管壁迁移到间隙。在这里,周细胞被激活并分化为形成疤痕的肌纤维母细胞。在没有周细胞的情况下,肾小管周围的毛细血管不稳定,导致血管退化。因此,肾损伤后的毛细血管丢失和纤维化紧密相连,并围绕着从EC到的周细胞脱离而居中枢纽。 3.动力学数学模型表明,周细胞是纤维化肾脏中成纤维细胞的主要来源。肾上皮或肾基质的综合遗传命运图谱研究表明,上皮细胞不会迁移到上皮区室之外而成为成肌纤维细胞。相反,间质周细胞是形成疤痕的成纤维细胞的祖细胞。周细胞和EC之间的双向信号传递对于周细胞从肾小管毛细血管中脱离是必需的。 4.在本综述中,我们总结了肾周细胞在纤维化中的病理重要作用,包括我们的新发现。肾周细胞和内皮-周细胞串扰的研究将为当前无法治愈的慢性肾脏疾病确定新的治疗目标。

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