肾小球和系膜细胞的收缩性:挥之不去的疑问和未来的策略。

Muhammad N Ghayur, Joan C Krepinsky, Luke J Janssen
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引用次数: 0

摘要

肾脏可分为肾小球、小管、间质和血管四部分。肾小球由毛细血管网络组成,毛细血管被称为足细胞的上皮细胞覆盖。整个肾小球簇在结构上由系膜细胞支撑,系膜细胞本质上具有收缩性,类似于血管平滑肌细胞。系膜细胞具有分泌功能,产生生长因子和基质蛋白,它们在肾小球的正常发育和病理状态中都起作用。它们也被证明扮演巨噬细胞的角色。系膜细胞收缩对肾小球生理的重要性仍有争议。假设系膜细胞收缩可通过降低毛细血管表面积和毛细血管通透性降低肾脏超滤系数,从而减弱肾小球滤过率。系膜细胞收缩的生理学研究主要是利用培养细胞。然而,鉴于已知细胞在培养条件下获得的表型变化,受体和离子通道的生理状态可能值得怀疑。对肾小球的收缩性研究较少。在本报告中,我们回顾了有关系膜细胞和肾小球收缩性的现有资料。此外,我们建议更新的技术可以用于整个肾小球,从而改进使用以前的技术和培养细胞收集的数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CONTRACTILITY OF THE RENAL GLOMERULUS AND MESANGIAL CELLS: LINGERING DOUBTS AND STRATEGIES FOR THE FUTURE.

Kidneys can be divided into four components: glomeruli, tubules, interstitium and blood vessels. The renal glomerulus consists of a network of capillaries covered with epithelial cells called podocytes. The entire glomerular tuft is structurally supported by mesangial cells which are contractile in nature and resemble vascular smooth muscle cells. Mesangial cells are secretory, producing growth factors and matrix proteins which have a role in both normal glomerular development and in pathologic states. They have also been shown to take the role of macrophages. The importance of mesangial cell contraction to glomerular physiology remains debated. It is postulated that mesangial cell contraction can attenuate the glomerular filtration rate by decreasing the renal ultrafiltration coefficient through a decrease in capillary surface area and capillary permeability. The physiology of mesangial cell contraction has been studied primarily utilizing cultured cells. The physiological status of receptors and ion channels may be doubtful, however, given the phenotypic changes cells are known to acquire in culture conditions. The contractility of renal glomeruli has been less well studied. In this report, we review the available data regarding the contractility of mesangial cell and of renal glomeruli. Moreover, we suggest newer techniques that can be used with whole glomeruli, thereby improving upon the data collected using previous techniques and cultured cells.

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