Nakaya H, Tohse N
Br J Pharmacol. 1986 Dec;89(4):749-57. doi: 10.1111/j.1476-5381.1986.tb11179.x.
Electrophysiological effects of synthetic platelet activating factor, acetyl glyceryl ether phosphorylcholine (AGEPC), were examined and compared with those of lysophosphatidylcholine (LPC) and long chain acyl carnitine (AC) in canine Purkinje fibres and guinea-pig papillary muscles, by use of standard microelectrode techniques. In canine Purkinje fibres, AGEPC at concentrations higher than 3 X 10(-5)M, decreased maximum diastolic potential, action potential amplitude and the maximum upstroke velocity of phase 0. AGEPC also induced abnormal automaticity arising from depolarized membrane potentials. LPC and AC in concentrations higher than 3 X 10(-5)M also produced virtually identical electrophysiological alterations in Purkinje fibres. Although twitch tension was slightly decreased by low concentrations (10(-6)-10(-5)M) of these amphiphilic lipids, a transient positive inotropic response appeared at the beginning of a progressive depolarization after exposure to higher concentrations of the amphiphiles. In guinea-pig papillary muscles, AGEPC in concentrations higher than 3 X 10(-5)M produced slight decreases in resting membrane potential, action potential amplitude and action potential durations, concomitantly with a positive inotropic response. These electrophysiological and mechanical changes were also induced by LPC and AC at comparable concentrations. In guinea-pig papillary muscles depolarized with 25 mM [K+]0, AGEPC, LPC and AC all evoked slow action potentials at a concentration of 10(-4)M. It is concluded that in isolated cardiac tissues AGEPC exerts electrophysiological effects similar to those of LPC and AC only at high concentrations, and that the non-specific interaction of amphiphiles with sarcolemmal membrane may be responsible for the electrophysiological and mechanical effects.
运用标准微电极技术,在犬浦肯野纤维和豚鼠乳头肌中检测并比较了合成血小板活化因子乙酰甘油醚磷酸胆碱(AGEPC)与溶血磷脂酰胆碱(LPC)和长链酰基肉碱(AC)的电生理效应。在犬浦肯野纤维中,浓度高于3×10⁻⁵M的AGEPC可降低最大舒张电位、动作电位幅度和0期最大上升速度。AGEPC还可诱导去极化膜电位产生异常自律性。浓度高于3×10⁻⁵M的LPC和AC在浦肯野纤维中也产生了几乎相同的电生理改变。尽管这些两亲性脂质的低浓度(10⁻⁶ - 10⁻⁵M)会使抽搐张力略有降低,但在暴露于较高浓度的两亲性物质后,在逐渐去极化开始时会出现短暂的正性肌力反应。在豚鼠乳头肌中,浓度高于3×10⁻⁵M的AGEPC会使静息膜电位、动作电位幅度和动作电位时程略有降低,同时伴有正性肌力反应。LPC和AC在相当浓度下也会诱导这些电生理和机械变化。在用25 mM [K⁺]₀去极化的豚鼠乳头肌中,AGEPC、LPC和AC在浓度为10⁻⁴M时均能诱发缓慢动作电位。结论是,在离体心脏组织中,AGEPC仅在高浓度时才发挥与LPC和AC相似的电生理效应,两亲性物质与肌膜的非特异性相互作用可能是电生理和机械效应的原因。