Walsh Kenneth B, Parks Graham E
Department of Pharmacology, University of South Carolina, School of Medicine, Columbia 29208, USA.
Cardiovasc Res. 2002 Jul;55(1):64-75. doi: 10.1016/s0008-6363(02)00403-0.
The goal of this study was to determine if the properties of the transient outward potassium (I(to)), TTX-resistant sodium (I(Na)) and L-type calcium (I(Ca)) currents are altered during changes in cardiac cell shape.
Ventricular myocytes were isolated from 3- to 4-day-old neonatal rats and cultured on either non-aligned or aligned collagen thin gels. In contrast to the flat, stellar-shaped myocytes obtained when the cells are plated on non-aligned collagen gels, myocytes plated on aligned gels display an elongated, rod-like shape. Ion channel expression was measured using the whole-cell arrangement of the patch clamp technique and Western blot analysis.
Peak values for I(to), I(Na) and I(Ca) were 9+/-1, 71+/-13 and 7+/-1 pA/pF, respectively, in the flat cells, and increased to 21+/-2, 190+/-26 and 13+/-1 pA/pF, respectively, in the aligned cells. Application of forskolin (2 microM) and 3-isobutyl-1-methylxanthine (100 microM) resulted in a 101+/-18% increase in I(Ca) in the flat cells, but increased the current by only 43+/-9% in the aligned cells. Internal dialysis of the myocytes with cAMP strongly increased the peak I(Ca) in the flat cells, but caused no significant change in the aligned cells. While both basal and forskolin-stimulated levels of cAMP were the same in the two cell morphologies, the expression of the calcium channel alpha(1C) subunit was increased in the aligned cells.
The expression and regulatory properties of voltage-gated calcium channels are modified during changes in neonatal rat myocyte shape.
本研究旨在确定在心脏细胞形态发生变化期间,瞬时外向钾电流(I(to))、河豚毒素抗性钠电流(I(Na))和L型钙电流(I(Ca))的特性是否发生改变。
从3至4日龄新生大鼠中分离出心室肌细胞,并培养于未对齐或对齐的胶原薄凝胶上。与将细胞接种在未对齐胶原凝胶上时获得的扁平、星形肌细胞不同,接种在对齐凝胶上的肌细胞呈现出细长的杆状形态。使用膜片钳技术的全细胞记录模式和蛋白质免疫印迹分析来测量离子通道表达。
扁平细胞中I(to)、I(Na)和I(Ca)的峰值分别为9±1、71±13和7±1 pA/pF,而在对齐细胞中分别增加到21±2、190±26和13±1 pA/pF。应用福斯可林(2 μM)和3 - 异丁基 - 1 - 甲基黄嘌呤(100 μM)使扁平细胞中的I(Ca)增加了101±18%,但在对齐细胞中仅使电流增加了43±9%。用环磷酸腺苷(cAMP)对肌细胞进行内部透析,可使扁平细胞中的I(Ca)峰值大幅增加,但对齐细胞中无显著变化。虽然两种细胞形态中基础和福斯可林刺激的cAMP水平相同,但对齐细胞中钙通道α(1C)亚基的表达增加。
新生大鼠心肌细胞形态发生变化时,电压门控钙通道的表达和调节特性会发生改变。