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钙激活钾通道和内向整流钾通道对人外周血内皮祖细胞分化的影响

Effects of Ca2+-activated potassium and inward rectifier potassium channel on the differentiation of endothelial progenitor cells from human peripheral blood.

作者信息

Ye Gongjie, Guan Haiwang, Karush Justin, Wang Feng, Xu Xiaoyong, Mao Haiyan, Huang Xiaoyan, Yang Xi, Peng Ping, Ba Yanna, Zhou Jianqing, Lian Jiangfang

机构信息

LiHuiLi Hospital, Medical School of NingBo University, Ningbo, 3154041, People's Republic of China.

出版信息

Mol Biol Rep. 2014 May;41(5):3413-23. doi: 10.1007/s11033-014-3203-9. Epub 2014 Feb 22.

Abstract

Endothelial progenitor cells (EPCs) are bone marrow-derived cells that have the propensity to differentiate into mature endothelial cells (ECs). The transplantation of EPCs has been shown to enhance in vivo postnatal neo-vasculogenesis, as well as repair infarcted myocardium. Via the whole-cell patch clamp technique, numerous types of ion channels have been detected in EPCs, including the inward rectifier potassium channel (IKir), Ca2+-activated potassium channel (IKCa), and volume-sensitive chloride channel, but their influence on the differentiation of EPCs has yet to be characterized. The present study was designed to investigate: (1) which ion channels have the most significant impact on the differentiation of EPCs; (2) what role ion channels play in the functional development of EPCs; (3) the mRNA and protein expression levels of related ion channel subunits in EPCs. In our study, EPCs were obtained from the peripheral blood of healthy adults and cultured with endothelial growth factors. When EPCs differentiate into mature ECs, they lose expression of the stem cell/progenitor marker CD133, as analyzed by flow cytometry (0.44±0.20 %). However, treatment with the potassium channel inhibitor, tetraethylammonium (TEA) results in an increase in CD133+ cells (25.50±7.55 %). In a functional experiment, we observed a reduction in the capacity of TEA treated ECs (differentiated from EPCs) to form capillary tubes when seeded in Matrigel. At the mRNA and protein levels, we revealed several K+ subtypes, including KCNN4 for IKCa, KCNNMA1 for BKCa and Kir3.4 for IKir. These results demonstrate for the first time that potassium channels play a significant role in the differentiation of EPCs. Moreover, inhibition of potassium channels may depress the differentiation of EPCs and the significant potassium channel subunits in EPCs appear to be IKCa, BKCa and Kir3.4.

摘要

内皮祖细胞(EPCs)是源自骨髓的细胞,具有分化为成熟内皮细胞(ECs)的倾向。EPCs移植已被证明可增强出生后体内的新生血管生成,以及修复梗死心肌。通过全细胞膜片钳技术,在EPCs中检测到多种类型的离子通道,包括内向整流钾通道(IKir)、钙激活钾通道(IKCa)和容积敏感性氯通道,但它们对EPCs分化的影响尚未明确。本研究旨在探讨:(1)哪些离子通道对EPCs的分化影响最大;(2)离子通道在EPCs的功能发育中起什么作用;(3)EPCs中相关离子通道亚基的mRNA和蛋白表达水平。在我们的研究中,从健康成年人的外周血中获取EPCs,并用内皮生长因子进行培养。当EPCs分化为成熟ECs时,通过流式细胞术分析,它们会失去干细胞/祖细胞标志物CD133的表达(0.44±0.20%)。然而,用钾通道抑制剂四乙铵(TEA)处理会导致CD133+细胞增加(25.50±7.55%)。在功能实验中,我们观察到接种在基质胶中的经TEA处理的ECs(由EPCs分化而来)形成毛细血管管的能力下降。在mRNA和蛋白水平上,我们发现了几种钾离子亚型,包括IKCa的KCNN4、BKCa的KCNNMA1和IKir的Kir3.4。这些结果首次证明钾通道在EPCs的分化中起重要作用。此外,抑制钾通道可能会抑制EPCs的分化,EPCs中重要的钾通道亚基似乎是IKCa、BKCa和Kir3.4。

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