Chilton Lisa, Giles Wayne R, Smith Godfrey L
Institute of Biomedical and Life Sciences, West Medical Building, University of Glasgow, Glasgow G12 8QQ, UK.
J Physiol. 2007 Aug 15;583(Pt 1):225-36. doi: 10.1113/jphysiol.2007.135038. Epub 2007 Jun 14.
Intercellular coupling between ventricular myocytes and myofibroblasts was studied by co-culturing adult rabbit ventricular myocytes with previously prepared layers of cardiac myofibroblasts. Intercellular coupling was examined by: (i) tracking the movement of the fluorescent dye calcein; (ii) immunostaining for connexin 43 (Cx43); and (iii) measurement of intracellular [Ca2+] ([Ca2+]i). The effects of stimulating ventricular myocytes on the underlying myofibroblasts was examined by confocal measurements of [Ca2+]i using fluo-3. When ventricular myocytes were preloaded with calcein and co-cultured with myofibroblasts for 24 h, calcein fluorescence was detected in 52+/-4% (n=8 co-cultures) of surrounding myofibroblasts. Treatment with the gap junction uncoupler heptanol significantly reduced the movement of calcein (12+/-3%, n=6 co-cultures). Immunostaining showed expression of Cx43 in co-cultured myofibroblasts and myocytes. Field stimulation of ventricular myocytes co-cultured with myofibroblasts increased myofibroblast [Ca2+]i, no response was observed after treatment with heptanol or stimulation of fibroblasts in the absence of ventricular myocytes. Action potential parameters of ventricular myocytes in co-culture were similar to control values. However, application of the hormone sphingosine-1-phosphate (S-1-P) to the co-culture caused a depolarization of ventricular myocytes to approximately -20 mV. Sphingosine-1-phosphate had no effect on ventricular myocytes alone. Voltage-clamp measurements of isolated myofibroblasts indicated that S-1-P activated a significant quasi-linear current with a reversal potential of approximately -40 mV. In conclusion, this study shows that stimulation of the ventricular myocyte influences the intracellular Ca2+ of the linked myofibroblast via connexons. These intercellular links also allow the myofibroblasts to influence the electrical activity of the myocyte. This work indicates the nature of the gap junction-mediated bi-directional interactions that occur between ventricular myocyte and myofibroblast.
通过将成年兔心室肌细胞与预先制备的心肌成纤维细胞层共培养,研究了心室肌细胞与成纤维细胞之间的细胞间偶联。通过以下方法检测细胞间偶联:(i)追踪荧光染料钙黄绿素的移动;(ii)对连接蛋白43(Cx43)进行免疫染色;(iii)测量细胞内[Ca2+]([Ca2+]i)。使用fluo-3通过共聚焦测量[Ca2+]i来检测刺激心室肌细胞对下层成纤维细胞的影响。当心室肌细胞预先加载钙黄绿素并与成纤维细胞共培养24小时时,在52±4%(n = 8个共培养物)的周围成纤维细胞中检测到钙黄绿素荧光。用缝隙连接解偶联剂庚醇处理显著减少了钙黄绿素的移动(12±3%,n = 6个共培养物)。免疫染色显示在共培养的成纤维细胞和肌细胞中存在Cx43表达。与成纤维细胞共培养的心室肌细胞的场刺激增加了成纤维细胞的[Ca2+]i,在用庚醇处理后或在没有心室肌细胞的情况下刺激成纤维细胞均未观察到反应。共培养中心室肌细胞的动作电位参数与对照值相似。然而,将激素鞘氨醇-1-磷酸(S-1-P)应用于共培养物会使心室肌细胞去极化至约-20 mV。鞘氨醇-1-磷酸单独对心室肌细胞没有影响。对分离的成纤维细胞进行电压钳测量表明,S-1-P激活了一种显著的准线性电流,其反转电位约为-40 mV。总之,本研究表明刺激心室肌细胞通过连接子影响相连成纤维细胞的细胞内Ca2+。这些细胞间连接也允许成纤维细胞影响肌细胞的电活动。这项工作表明了心室肌细胞与成纤维细胞之间发生的缝隙连接介导的双向相互作用的性质。