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硝酸铀酰对小鼠膈神经-膈肌标本的突触前作用。

Presynaptic action of uranyl nitrate on the phrenic nerve-diaphragm preparation of the mouse.

作者信息

Lin R H, Fu W M, Lin-Shiau S Y

机构信息

Department of Pharmacology, College of Medicine, National Taiwan University, Taipei, R.O.C.

出版信息

Neuropharmacology. 1988 Aug;27(8):857-63. doi: 10.1016/0028-3908(88)90103-7.

Abstract

The contraction of the diaphragm of the mouse, induced by nerve stimulation, can be potentiated by uranyl nitrate [UO2(NO3)2, 0.2-0.8 mM]. At concentrations greater than 0.8 mM, uranyl nitrate also directly enhanced the contractions induced by electrical stimulation of muscle. The effects of uranyl nitrate in potentiating the twitch were augmented by low calcium (0.25-0.5 mM) and antagonized by high levels of calcium (5-10 mM). Electrophysiological studies on the effects of uranyl nitrate on the diaphragm in the mouse have revealed that the frequency of miniature end-plate potentials (MEPP) but not the amplitude was increased; the amplitude and quantal content of end-plate potential (EPPs) were also markedly increased by uranyl nitrate. The most peculiar phenomenon induced by uranyl nitrate was that repetitive end-plate potentials, as well as repetitive action potentials, of the diaphragm of the mouse were triggered by single nerve stimulation in the presence of uranyl nitrate. The duration of muscle action potentials was significantly prolonged. Recordings of the evoked compound action potentials from nerve axons showed that uranyl nitrate not only prolonged the duration of the axonal compound action potentials but also induced antidromic activity with a single stimulation. This latter effect of uranyl nitrate was blocked by d-tubocurarine. All of these findings suggest that uranyl nitrate potentiated the contractions of the diaphragm of the mouse, possibly through the activation of stimulus-activated repetitive discharges which resulted in the repetitive end-plate potentials and muscle action potentials.

摘要

通过神经刺激诱导的小鼠膈肌收缩可被硝酸铀酰[UO2(NO3)2,0.2 - 0.8 mM]增强。在浓度大于0.8 mM时,硝酸铀酰还直接增强了电刺激肌肉所诱导的收缩。硝酸铀酰增强抽搐的作用在低钙(0.25 - 0.5 mM)时增强,而在高钙(5 - 10 mM)时受到拮抗。关于硝酸铀酰对小鼠膈肌影响的电生理研究表明,微小终板电位(MEPP)的频率增加,但幅度未增加;硝酸铀酰还显著增加了终板电位(EPPs)的幅度和量子含量。硝酸铀酰诱导的最奇特现象是,在存在硝酸铀酰的情况下,单次神经刺激可触发小鼠膈肌的重复终板电位以及重复动作电位。肌肉动作电位的持续时间显著延长。从神经轴突记录诱发的复合动作电位表明,硝酸铀酰不仅延长了轴突复合动作电位的持续时间,还通过单次刺激诱导了逆向活动。硝酸铀酰的后一种作用被d - 筒箭毒碱阻断。所有这些发现表明,硝酸铀酰可能通过激活刺激激活的重复放电来增强小鼠膈肌的收缩,这种重复放电导致了重复终板电位和肌肉动作电位。

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