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表达功能性钙通道的人脐动脉平滑肌细胞的分离与培养

Isolation and culture of human umbilical artery smooth muscle cells expressing functional calcium channels.

作者信息

Cairrão E, Santos-Silva A J, Alvarez E, Correia I, Verde I

机构信息

CICS - Centro de Investigação em Ciências da Saúde, Universidade da Beira Interior, Av. Infante D. Henrique, 6200-506, Covilhã, Portugal.

出版信息

In Vitro Cell Dev Biol Anim. 2009 Mar-Apr;45(3-4):175-84. doi: 10.1007/s11626-008-9161-6. Epub 2009 Jan 1.

Abstract

The human umbilical cord is a biological sample that can be easily obtained just after birth. A methodology was developed to perform cultures of human umbilical artery smooth muscle cells (HUASMC) expressing contractile proteins and functional ionic channels. To avoid fibroblast and endothelial cell contamination, we mechanically separated the tunica media, which only contains HUASMC and matrix proteins. To isolate the cells, collagenase V and elastase were used as hydrolyzing enzymes. The isolated cells were plated in collagen-coated dishes to obtain cultures of HUASMC. The cells obtained after different passages (1 to 6) exhibit the characteristic vascular smooth cell morphology and express smooth muscle alpha-2 actin, myosin heavy chain SM1, and alpha subunits of L- and T-type calcium channels (Cav 1.2, Cav 1.2, and Cav 3.2). Electrophysiology recordings for L- and T-type calcium channels were made, indicating that these channels are functional in the cultured cells. In conclusion, the procedure developed allows obtaining cultures of HUASMC expressing contractile proteins and also functional ionic channels. These cells could be used to study cellular and molecular aspects about the regulation of the vascular function.

摘要

人脐带是一种在出生后即可轻松获取的生物样本。我们开发了一种方法来培养表达收缩蛋白和功能性离子通道的人脐动脉平滑肌细胞(HUASMC)。为避免成纤维细胞和内皮细胞污染,我们机械分离了仅包含HUASMC和基质蛋白的中膜。为分离细胞,使用胶原酶V和弹性蛋白酶作为水解酶。将分离出的细胞接种于胶原包被的培养皿中以获得HUASMC培养物。不同传代(1至6代)后获得的细胞呈现出特征性的血管平滑肌形态,并表达平滑肌α-2肌动蛋白、肌球蛋白重链SM1以及L型和T型钙通道(Cav 1.2、Cav 1.2和Cav 3.2)的α亚基。对L型和T型钙通道进行了电生理记录,表明这些通道在培养细胞中具有功能。总之,所开发的程序能够获得表达收缩蛋白以及功能性离子通道的HUASMC培养物。这些细胞可用于研究血管功能调节的细胞和分子方面。

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