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几种吸入麻醉剂对小鼠膈肌突触后电导变化动力学的影响。

Effects of several inhalation anaesthetics on the kinetics of postsynaptic conductance changes in mouse diaphragm.

作者信息

Gage P W, Hamill O P

出版信息

Br J Pharmacol. 1976 Jun;57(2):263-72. doi: 10.1111/j.1476-5381.1976.tb07476.x.

Abstract

1 Miniature endplate currents were recorded with extracellular electrodes in mouse diaphragms in order to measure the kinetics of the conductance change produced by acetylcholine. Miniature endplate potentials (m.e.p.ps) were recorded intracellularly in the same fibres in which the currents were being recoreded. 2 The general anaesthetics, ether, halothane, chloroform and enflurane at low (anaesthetic) concentrations increased the rate of decay of miniature endplate currents (m.e.p.cs) and reduced the amplitude of m.e.p.ps in this way. 3 At high concentrations the anaesthetics caused a reduction in the amplitude of both m.e.p.cs and m.e.p.ps, and a decrease in the rate of decay of the currents. With halothane and enflurane the decay of some currents became biphasic, with a prolonged tail. 4 It was proposed that the increased rate of decay of the conductance caused by the four agents at anaesthetic concentrations is due to an increase in the fluidity of the subsynaptic membrane. Prolongation of the currents at higher concentrations may be caused by an increase in membrane dielectric constant. 5 The effectiveness of the four anaesthetics in producing a 30% decrease in the time constant of decay of m.e.p.cs was shown to be related to their oil/water partition coefficients and followed closely the relationship between anaesthetic potency and oil/water partition coefficient. It is suggested therefore that the four anaesthetics may produce anaesthesia by changing the kinetics of postsynaptic conductance changes at synapses, perphaps by increasing membrane fluidity.

摘要
  1. 为了测量乙酰胆碱引起的电导变化的动力学,用细胞外电极记录小鼠膈肌的微小终板电流。在记录电流的同一纤维中,细胞内记录微小终板电位(m.e.p.ps)。2. 低(麻醉)浓度的全身麻醉药乙醚、氟烷、氯仿和恩氟烷以这种方式增加了微小终板电流(m.e.p.cs)的衰减速率,并降低了m.e.p.ps的幅度。3. 在高浓度时,麻醉药导致m.e.p.cs和m.e.p.ps的幅度均降低,以及电流衰减速率降低。对于氟烷和恩氟烷,一些电流的衰减变得双相,伴有延长的尾部。4. 有人提出,这四种药物在麻醉浓度下引起的电导衰减速率增加是由于突触后膜流动性增加。在较高浓度下电流的延长可能是由于膜介电常数增加所致。5. 这四种麻醉药在使m.e.p.cs衰减时间常数降低30%方面的有效性被证明与其油/水分配系数有关,并且紧密遵循麻醉效能与油/水分配系数之间的关系。因此,有人认为这四种麻醉药可能通过改变突触后电导变化的动力学来产生麻醉作用,也许是通过增加膜流动性。

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