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5-羟色胺诱导医蛭体壁肌细胞超极化和抑制性突触后电位的离子机制。

Ionic mechanism of 5-hydroxytryptamine induced hyperpolarization and inhibitory junctional potential in body wall muscle cells of Hirudo medicinalis.

作者信息

Sawada M, Coggeshall R E

出版信息

J Neurobiol. 1976 Jan;7(1):63-73. doi: 10.1002/neu.480070107.

Abstract

Five-hydroxytryptamine (5-HT) causes a hyperpolarization and increased conductance of the leech body wall muscle cell membrane. If 5-HT is applied in the absence of the Cl minus ion, the response appears as a depolarization, whereas if 5-HT is applied in the absence of the K+ ion, the response is a hyperpolarization. In both cases, the conductance of the muscle cell membrane is increased. Stimulation of the peripheral nerve to the body wall muscle produces a complex junctional potential in muscle cells. Exposing the muscle to d-tubocurarine (d-TC) eliminates the excitatory component (EJP) of the complex potential. The inhibitory potential (IJP) that remains has an equilibrium potential at approximately 65 mV. Furthermore, this IJP appears as a depolarization when the nerve is stimulated in the presence of d-TC and low CL minus, whereas this is not the case if the nerve is stimulated in the presence of d-TC and low K+. The drugs BOL-148 and cyproheptadine block the IJP's in the body wall muscle. These data are interpreted as indicating that 5-HT acts on leech body wall muscle cells by increasing the conductance to the Cl minus ion and that the IJP's caused by nerve stimulation are probably the result of 5-HT release at nerve terminals. As a final point, it has been shown that the inhibition by 5-HT of the spontaneous EJP's that occur on the leech body wall muscle results from an inhibition of central neurons and not from any direct effect on the muscle cell or on peripheral synapses.

摘要

5-羟色胺(5-HT)可引起水蛭体壁肌肉细胞膜超极化并增加其电导。如果在没有氯离子的情况下应用5-HT,反应表现为去极化,而如果在没有钾离子的情况下应用5-HT,反应则是超极化。在这两种情况下,肌肉细胞膜的电导都会增加。刺激支配体壁肌肉的外周神经会在肌肉细胞中产生复杂的接头电位。将肌肉暴露于筒箭毒碱(d-TC)可消除复合电位的兴奋性成分(EJP)。剩余的抑制性电位(IJP)的平衡电位约为65 mV。此外,当在d-TC和低氯离子存在的情况下刺激神经时,这种IJP表现为去极化,而如果在d-TC和低钾离子存在的情况下刺激神经则并非如此。药物BOL-148和赛庚啶可阻断体壁肌肉中的IJP。这些数据被解释为表明5-HT通过增加对氯离子的电导作用于水蛭体壁肌肉细胞,并且神经刺激引起的IJP可能是神经末梢释放5-HT的结果。最后一点,已经表明5-HT对水蛭体壁肌肉上自发产生的EJP的抑制作用是由于对中枢神经元的抑制,而不是对肌肉细胞或外周突触的任何直接作用。

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