Hartmann H A, Mazzocca N J, Kleiman R B, Houser S R
Temple University School of Medicine, Department of Physiology, Philadelphia, Pennsylvania 19140.
Am J Physiol. 1988 Nov;255(5 Pt 2):H1173-80. doi: 10.1152/ajpheart.1988.255.5.H1173.
Previous studies on numerous cardiac preparations have shown that stimulation of alpha 1-receptors produces a positive inotropic effect. The cellular basis for this effect is not well understood. Isolated feline ventricular myocytes were used in the present study to examine the idea that the increase in contractility induced by stimulation of alpha 1-receptors is produced by an increase in inward Ca2+ current and that this event is caused by the stimulation of protein kinase C (PKC). These experiments showed that phenylephrine (10(-4) M) increased Ca2+ current from 0.56 +/- 0.02 (control) to 1.12 +/- 0.25 nA and increased contractile magnitude by 201 +/- 28%. The effect on Ca2+ current was completely blocked by propranolol (10(-7)M), whereas after beta-receptor blockade, contractile state was still 130 +/- 8% of control levels. alpha 1-Receptor blockade by prazosin eliminated this residual inotropic component of phenylephrine. Lower concentrations of phenylephrine (10(-7)M) were without effect on Ca2+ current and contractility as was stimulation of PCK with 150 nM of a phorbol ester. These results suggest that the positive inotropic effect of alpha 1-receptor stimulation in adult feline ventricular myocytes is not produced by increasing inward Ca2+ current and that this response is also not associated with stimulation of PKC.
此前针对多种心脏制剂的研究表明,刺激α1受体可产生正性肌力作用。这种作用的细胞基础尚未完全明确。在本研究中,使用分离的猫心室肌细胞来检验以下观点:刺激α1受体所诱导的收缩力增加是由内向Ca2+电流增加所导致,且该事件是由蛋白激酶C(PKC)的刺激所引起。这些实验表明,去氧肾上腺素(10(-4) M)使Ca2+电流从0.56±0.02(对照)增加至1.12±0.25 nA,并使收缩幅度增加了201±28%。对Ca2+电流的影响被普萘洛尔(10(-7)M)完全阻断,而在β受体阻断后,收缩状态仍为对照水平的130±8%。哌唑嗪对α1受体的阻断消除了去氧肾上腺素的这种残余正性肌力成分。较低浓度的去氧肾上腺素(10(-7)M)对Ca2+电流和收缩力无影响,用150 nM佛波酯刺激PKC时也无影响。这些结果表明,在成年猫心室肌细胞中,刺激α1受体的正性肌力作用并非由增加内向Ca2+电流所产生,且这种反应也与PKC的刺激无关。