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一种哌嗪衍生物对青蛙终板的新作用。

Novel action of a piperazine derivative on the end-plate of the frog.

作者信息

Kuba K, Chikazawa K, Koketsu K

出版信息

Jpn J Physiol. 1976;26(2):159-75. doi: 10.2170/jjphysiol.26.159.

DOI:10.2170/jjphysiol.26.159
PMID:966401
Abstract

The effects of a piperazine derivative, trimetazidine (1-(2, 3, 4-trimethoxybenzyl) piperazine dihydrochloride) on the frog end-plate membrane were studied. Action and resting membrane potentials and the input resistance of muscle fibers were not affected by trimetazidine (82-165 muM). Under these conditions, the frequency of the miniature endplate potentials was unchanged while its amplitude was slightly decreased. The amplitude of acetylcholine (ACh) potentials were markedly and reversibly decreased after application of trimetazine (82-165 muM). The dose response curve of the end-plate membrane to ACh showed a non-competitive type of blockade. Trimetazidine (165 muM) not only decreased the amplitude of the end-plate currents (EPC) recorded from the glycerinated muscles using a voltage clamp technique, but also drastically shortened its time course. Under these conditions, the falling phase of the EPC became completely voltage insensitive. The equilibrium potential for the EPC slightly shifted to a more negative value in the presence of trimetazine (165 muM). Coefficient of variation of EPC was increased by Trimetazidine (165 mum), indicating a decrease in the quantal content of the EPC. The rate of desensitization of the end-plate to ACh was facilitated and the rate of decrease in EPC amplitude during tetanic stimulation became voltage sensitive by the action of trimetazidine (133 muM). It is concluded that trimetazidine mainly acts on the postsynaptic membrane with a weak presynaptic action. The agent seems to block a step subsequent to the interaction of ACh with its receptor, which presumably involves changes in the ion conductance of the membrane and is responsible for the voltage sensitivity of the response.

摘要

研究了一种哌嗪衍生物曲美他嗪(1-(2,3,4-三甲氧基苄基)哌嗪二盐酸盐)对蛙终板膜的作用。曲美他嗪(82 - 165μM)对动作电位、静息膜电位和肌纤维的输入电阻无影响。在此条件下,微小终板电位的频率不变,但其幅度略有下降。应用曲美他嗪(82 - 165μM)后,乙酰胆碱(ACh)电位的幅度显著且可逆地降低。终板膜对ACh的剂量反应曲线呈非竞争性阻断类型。曲美他嗪(165μM)不仅降低了用电压钳技术从甘油化肌肉记录的终板电流(EPC)的幅度,还显著缩短了其时程。在此条件下,EPC的下降相变得完全对电压不敏感。在存在曲美他嗪(165μM)的情况下,EPC的平衡电位略微向更负的值移动。曲美他嗪(165μM)增加了EPC的变异系数,表明EPC的量子含量减少。曲美他嗪(133μM)的作用促进了终板对ACh的脱敏速率,并且在强直刺激期间EPC幅度的下降速率变得对电压敏感。结论是曲美他嗪主要作用于突触后膜,具有较弱的突触前作用。该药物似乎阻断了ACh与其受体相互作用后的一个步骤,这可能涉及膜离子电导的变化,并导致反应的电压敏感性。

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引用本文的文献

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J Physiol. 1980 Jan;298:301-19. doi: 10.1113/jphysiol.1980.sp013082.
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Pflugers Arch. 1979 Jan 31;378(3):205-12. doi: 10.1007/BF00592737.
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Analysis of atropine action at the frog neutromuscular junction.阿托品对青蛙神经肌肉接头作用的分析。
J Physiol. 1977 Jul;269(1):109-30. doi: 10.1113/jphysiol.1977.sp011895.