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人静脉和动脉内皮细胞中Ca(2+)信号的缺氧调节

Hypoxic modulation of ca(2+) signaling in human venous and arterial endothelial cells.

作者信息

Aley P K, Bauer C C, Dallas M L, Boyle J P, Porter K E, Peers C

机构信息

Leeds Institute of Genetics, Health and Therapeutics, University of Leeds, UK.

出版信息

J Membr Biol. 2009 Feb;227(3):151-8. doi: 10.1007/s00232-008-9147-z. Epub 2009 Jan 9.

Abstract

Our understanding of vascular endothelial cell physiology is based on studies of endothelial cells cultured from various vascular beds of different species for varying periods of time. Systematic analysis of the properties of endothelial cells from different parts of the vasculature is lacking. Here, we compare Ca(2+) homeostasis in primary cultures of endothelial cells from human internal mammary artery and saphenous vein and how this is modified by hypoxia, an inevitable consequence of bypass grafting (2.5% O(2), 24 h). Basal Ca(2+) and store depletion-mediated Ca(2+) entry were significantly different between the two cell types, yet agonist (ATP)-mediated mobilization from endoplasmic reticulum stores was similar. Hypoxia potentiated agonist-evoked responses in arterial, but not venous, cells but augmented store depletion-mediated Ca(2+) entry only in venous cells. Clearly, Ca(2+) signaling and its remodeling by hypoxia are strikingly different in arterial vs. venous endothelial cells. Our data have important implications for the interpretation of data obtained from endothelial cells of varying sources.

摘要

我们对血管内皮细胞生理学的理解基于对从不同物种的各种血管床培养不同时间的内皮细胞的研究。目前缺乏对来自脉管系统不同部位的内皮细胞特性的系统分析。在此,我们比较了人乳内动脉和大隐静脉内皮细胞原代培养物中的Ca(2+) 稳态,以及旁路移植术不可避免的后果(2.5% O(2),24小时)缺氧如何改变这种稳态。两种细胞类型之间的基础 Ca(2+) 和储存耗竭介导的Ca(2+) 内流存在显著差异,但激动剂(ATP)介导的内质网储存库中的Ca(2+) 释放相似。缺氧增强了动脉细胞而非静脉细胞中激动剂诱发的反应,但仅在静脉细胞中增强了储存耗竭介导的Ca(2+) 内流。显然,动脉与静脉内皮细胞中Ca(2+) 信号传导及其在缺氧时的重塑存在显著差异。我们的数据对于解释从不同来源的内皮细胞获得的数据具有重要意义。

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