首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Effects of lysophosphatidylcholine on electrophysiological properties and excitation-contraction coupling in isolated guinea pig ventricular myocytes.
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Effects of lysophosphatidylcholine on electrophysiological properties and excitation-contraction coupling in isolated guinea pig ventricular myocytes.

机译:溶血磷脂酰胆碱对豚鼠心室心肌细胞电生理特性和兴奋收缩偶联的影响。

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摘要

Lysophosphoglyceride accumulation in ischemic myocardium has been implicated as a cause of arrhythmias. We examined the effects of lysophosphatidylcholine (LPC) in isolated guinea pig ventricular myocytes. In paced myocytes loaded with the Ca2+ indicator Indo-1-AM and studied at room temperature, 20 microM LPC caused an initial positive inotropic effect followed by spontaneous automaticity, a decline in active cell shortening, and progressive diastolic shortening (contracture) leading to cell death. These changes were accompanied by a progressive increase in cytosolic [Ca2+]i. In patch-clamped myocytes dialyzed internally with high EGTA concentrations, LPC caused membrane depolarization, shortening of the action potential duration, and abnormal automaticity as seen in multicellular preparations. Voltage clamp experiments revealed the appearance of a nonselective leak conductance without significant changes in the delayed rectifier K+ current, inward rectifier K+ current, L-type Ca2+ current, and T-type Ca2+ current. Pretreatment with 20 mM caffeine and [Ca2+]o-free solution did not prevent the leak current. In patch clamped myocytes loaded with 0.1 mM Fura-2 salt, the [Ca2+]i transient induced by either voltage clamps or brief caffeine exposure remained normal until the nonselective leak current developed. The Na(+)-Ca2+ exchange current elicited during caffeine-induced [Ca2+]i transients also did not appear to be altered by LPC. Qualitatively similar results were obtained in myocytes studied at 35 degrees C. The membrane detergent saponin (0.005% wt/wt) mimicked all of the effects of LPC. We conclude that under these experimental conditions the effects of LPC are most compatible with a detergent action causing membrane leakiness with resultant depolarization, [Ca2+]i overload, and contracture.
机译:溶血磷酸甘油酯在缺血性心肌中的蓄积被认为是心律不齐的原因。我们检查了溶血磷脂酰胆碱(LPC)在离体豚鼠心室肌​​细胞中的作用。在装有Ca2 +指示剂Indo-1-AM并在室温下进行研究的起搏的心肌细胞中,20 microM LPC引起了最初的正性肌力作用,随后是自发的自动性,活性细胞缩短的下降和进行性舒张期缩短(收缩),从而导致细胞死亡。这些变化伴随着胞质[Ca2 +] i的逐渐增加。如在多细胞制剂中所见,在以高EGTA浓度在内部透析的膜片钳型心肌细胞中,LPC引起膜去极化,动作电位持续时间缩短和自动性异常。电压钳实验显示了非选择性泄漏电导的出现,而延迟整流器K +电流,向内整流器K +电流,L型Ca2 +电流和T型Ca2 +电流没有明显变化。用20 mM咖啡因和无[Ca2 +] o的溶液进行预处理无法防止泄漏电流。在装有0.1 mM Fura-2盐的膜片钳形心肌细胞中,电压钳或短暂咖啡因暴露引起的[Ca2 +] i瞬变一直保持正常,直到产生非选择性泄漏电流为止。在咖啡因诱导的[Ca2 +] i瞬态过程中引起的Na(+)-Ca2 +交换电流似乎也没有被LPC改变。在35摄氏度下研究的肌细胞中获得了定性相似的结果。膜洗涤剂皂苷(0.005%wt / wt)模仿了LPC的所有作用。我们得出的结论是,在这些实验条件下,LPC的作用与去污剂作用最相容,去污剂作用导致膜渗漏,导致去极化,[Ca2 +] i超载和挛缩。

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