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源自成人及胎儿心脏标本的原代表皮细胞的分离与培养

The Isolation and Culture of Primary Epicardial Cells Derived from Human Adult and Fetal Heart Specimens.

作者信息

Dronkers Esther, Moerkamp Asja T, van Herwaarden Tessa, Goumans Marie-José, Smits Anke M

机构信息

Department of Molecular Cell Biology, Leiden University Medical Center.

Department of Molecular Cell Biology, Leiden University Medical Center;

出版信息

J Vis Exp. 2018 Apr 24(134):57370. doi: 10.3791/57370.

Abstract

The epicardium, an epithelial cell layer covering the myocardium, has an essential role during cardiac development, as well as in the repair response of the heart after ischemic injury. When activated, epicardial cells undergo a process known as epithelial to mesenchymal transition (EMT) to provide cells to the regenerating myocardium. Furthermore, the epicardium contributes via secretion of essential paracrine factors. To fully appreciate the regenerative potential of the epicardium, a human cell model is required. Here we outline a novel cell culture model to derive primary epicardial derived cells (EPDCs) from human adult and fetal cardiac tissue. To isolate EPDCs, the epicardium is dissected from the outside of the heart specimen and processed into a single cell suspension. Next, EPDCs are plated and cultured in EPDC medium containing the ALK 5-kinase inhibitor SB431542 to maintain their epithelial phenotype. EMT is induced by stimulation with TGFβ. This method enables, for the first time, the study of the process of human epicardial EMT in a controlled setting, and facilitates gaining more insight in the secretome of EPDCs that may aid heart regeneration. Furthermore, this uniform approach allows for direct comparison of human adult and fetal epicardial behavior.

摘要

心外膜是覆盖心肌的上皮细胞层,在心脏发育过程中以及心脏缺血性损伤后的修复反应中发挥着重要作用。激活后,心外膜细胞会经历一个称为上皮-间质转化(EMT)的过程,为再生的心肌提供细胞。此外,心外膜通过分泌重要的旁分泌因子发挥作用。为了充分了解心外膜的再生潜力,需要一个人类细胞模型。在此,我们概述了一种从成人和胎儿心脏组织中获取原代心外膜衍生细胞(EPDC)的新型细胞培养模型。为了分离EPDC,从心脏标本外部解剖下心外膜,并将其处理成单细胞悬液。接下来,将EPDC接种到含有ALK 5激酶抑制剂SB431542的EPDC培养基中进行培养,以维持其上皮表型。通过用TGFβ刺激诱导EMT。该方法首次能够在可控环境中研究人类心外膜EMT过程,并有助于更深入了解可能有助于心脏再生的EPDC分泌组。此外,这种统一的方法允许直接比较成人和胎儿心外膜的行为。

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