Harrison S M, Robinson M, Davies L A, Hopkins P M, Boyett M R
School of Biomedical Sciences, University of Leeds, UK.
Br J Anaesth. 1999 Apr;82(4):609-21. doi: 10.1093/bja/82.4.609.
The mechanisms contributing to the negative inotropic effect of halothane were studied in isolated rate ventricular myocytes. Contraction and intracellular Ca2+ transients were measured optically in these cells. The initial application of halothane (2% or 0.5 mmol litre-1) led to short-lived increases in the Ca2+ transient and contraction, which were abolished by ryanodine. Continued application of halothane led to a sustained decrease in contraction: this resulted from: (i) a decrease in myofilament Ca2+ sensitivity; (ii) a decrease in the Ca2+ transient; and (iii) a decrease in the Ca2+ content of the sarcoplasmic reticulum. Although halothane reduced action potential duration, the sustained negative inotropic effect was similar when action potentials or voltage clamp pulses of constant duration were used to trigger contractions. In cells exposed to nifedipine 0.5 mumol litre-1 (which decreases the L-type Ca2+ current, ICa), Ca2+ transients, sarcoplasmic reticulum Ca2+ content and fractional release (the fraction of sarcoplasmic reticulum Ca2+ content released during each stimulus) were reduced. Halothane 0.5 mmol litre-1 (which also decreases ICa) decreased Ca2+ transients to a lesser extent and reduced sarcoplasmic reticulum Ca2+ content to a greater extent than nifedipine, whereas fractional release was unchanged compared with control. These data suggest that halothane sensitizes Ca(2+)-induced Ca2+ release from the sarcoplasmic reticulum in addition to reducing ICa.
在离体大鼠心室肌细胞中研究了氟烷负性肌力作用的机制。通过光学方法测量这些细胞的收缩和细胞内Ca2+瞬变。最初应用氟烷(2%或0.5 mmol/L)会导致Ca2+瞬变和收缩短暂增加,而这被兰尼碱消除。持续应用氟烷会导致收缩持续降低:这是由以下原因导致的:(i)肌丝对Ca2+的敏感性降低;(ii)Ca2+瞬变减少;(iii)肌浆网Ca2+含量减少。尽管氟烷缩短了动作电位时程,但当使用恒定持续时间的动作电位或电压钳脉冲来触发收缩时,持续的负性肌力作用相似。在暴露于0.5 μmol/L硝苯地平(可降低L型Ca2+电流,ICa)的细胞中,Ca2+瞬变、肌浆网Ca2+含量和分数释放(每次刺激时肌浆网Ca2+含量释放的分数)均降低。0.5 mmol/L氟烷(也可降低ICa)使Ca2+瞬变的降低程度小于硝苯地平,而使肌浆网Ca2+含量的降低程度大于硝苯地平,而分数释放与对照相比未改变。这些数据表明,氟烷除了降低ICa外,还使肌浆网Ca(2+)诱导的Ca2+释放敏感化。