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新斯的明引起的哺乳动物神经肌肉接头改变。I. 肌肉收缩与电生理学

Neostigmine-induced alterations at the mammalian neuromuscular junction. I. Muscle contraction and electrophysiology.

作者信息

Tiedt T N, Albuquerque E X, Hudson C S, Rash J E

出版信息

J Pharmacol Exp Ther. 1978 May;205(2):326-39.

PMID:205647
Abstract

The effects of single and repetitive injections of neostigmine on neuromuscular physiology were examined in rat extensor digitorum longus muscles. The characteristic facilitation of neuromuscular transmission associated with acute anticholinesterase treatment was accompanied by significant pre- and postsynaptic alterations in neuromuscular transmission. Three days of neostigmine treatment caused a decrease in indirectly and directly elicited muscle contraction. Miniature end-plate potential amplitude and frequency, end-plate potential amplitude, junctional acetylcholine sensitivity and quantal content of nerve-evoked end-plate potentials were also decreased by this treatment. By 22 to 25 days of continued treatment, the decreased rate of transmitter release had returned almost to normal, whereas the alterations of the postsynaptic membrane persisted for as long as 106 days. Alterations were also found in the muscle action potential and in certain passive electrical properties of the extrajunctional muscle membrane. In addition, many of the physiological changes were correlated directly with the morphological changes observed in rats treated similarly. We conclude that neostigmine treatment in rats in therapeutic doses has deleterious effects on neuromuscular physiology and neuromuscular ultrastructure. Although the pattern of these changes is not identical with that seen in rabbit and human myasthenia gravis, the neostigmine treatment used in patients with myasthenia gravis may contribute in part to the neuromuscular alterations observed in this disease.

摘要

在大鼠趾长伸肌中研究了单次和重复注射新斯的明对神经肌肉生理学的影响。急性抗胆碱酯酶治疗相关的神经肌肉传递特征性促进伴随着神经肌肉传递中显著的突触前和突触后改变。新斯的明治疗三天导致间接和直接诱发的肌肉收缩减少。这种治疗还降低了微小终板电位的幅度和频率、终板电位幅度、接头处乙酰胆碱敏感性以及神经诱发终板电位的量子含量。持续治疗22至25天时,递质释放减少的速率几乎恢复正常,而突触后膜的改变持续长达106天。在肌肉动作电位和结外肌膜的某些被动电学性质中也发现了改变。此外,许多生理变化与在类似治疗的大鼠中观察到的形态学变化直接相关。我们得出结论,治疗剂量的新斯的明对大鼠神经肌肉生理学和神经肌肉超微结构有有害影响。虽然这些变化的模式与兔和人重症肌无力中所见的不同,但重症肌无力患者使用的新斯的明治疗可能部分导致了该疾病中观察到的神经肌肉改变。

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