Luo Hong-Yan, Liang Hua-Min, Hu Xin-Wu, Tang Ming
Department of Physiology, Tongji Medical College of Huazhong University of Science and Technology, Wuhan 430030, China.
Sheng Li Xue Bao. 2012 Feb 25;64(1):82-6.
This study is to explore a new method of investigating molecular basis for electrophysiological properties of early fetal cardiomyocytes. Single embryonic cardiomyocytes of mouse early developmental heart (E10.5) were obtained by a collagenase B digestion approach. After recording spontaneous action potential using whole cell patch clamp technique, the single cell was picked by a glass micropipette, followed by a standard RT-PCR to explore the expression levels of several ion channel genes. Three phenotypes of cardiomyocytes were demonstrated with distinct properties: ventricular-like, atrial-like, and pacemaker-like action potentials. Ventricular-like and atrial-like cells were characterized with much negative maximum diastolic potential (MDP) and a higher V(max) (maximum velocity of depolarization) compared to pacemaker-like cells. MDP of ventricular-like cells was the most negative. In parallel, stronger expression of SCN5a, SCN1b and Kir2.1 were observed in ventricular-like and atrial-like cells compared to that of pacemaker-like cells, where Kir2.1 in ventricular-like cells was the most abundant. Cardiomyocytes with distinct electrophysiological properties had distinct gene expression pattern. Single cell RT-PCR combined with patch clamp technique could serve as a precise detector to analyze the molecular basis of the special electrophysiological characteristics of cardiomyocytes.
本研究旨在探索一种研究早期胎儿心肌细胞电生理特性分子基础的新方法。通过胶原酶B消化法获取小鼠早期发育心脏(E10.5)的单个胚胎心肌细胞。使用全细胞膜片钳技术记录自发动作电位后,用玻璃微吸管挑选单个细胞,然后进行标准RT-PCR以探究几种离子通道基因的表达水平。心肌细胞表现出三种具有不同特性的表型:心室样、心房样和起搏样动作电位。与起搏样细胞相比,心室样和心房样细胞的特征是最大舒张电位(MDP)更负,去极化最大速度(V(max))更高。心室样细胞的MDP最负。同时,与起搏样细胞相比,在心室样和心房样细胞中观察到SCN5a、SCN1b和Kir2.1的表达更强,其中心室样细胞中的Kir2.1最为丰富。具有不同电生理特性的心肌细胞具有不同的基因表达模式。单细胞RT-PCR结合膜片钳技术可作为一种精确的检测方法来分析心肌细胞特殊电生理特性的分子基础。