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将秋水仙碱应用于节后神经后哺乳动物交感神经元的功能和结构变化。

Functional and structural changes in mammalian sympathetic neurones following colchicine application to post-ganglionic nerves.

作者信息

Purves D

出版信息

J Physiol. 1976 Jul;259(1):159-75. doi: 10.1113/jphysiol.1976.sp011459.

Abstract
  1. The effects of post-ganglionic colchicine application on neurones of the guinea-pig superior cervical ganglion were studied with intracellular recording and electron microscopy. 2. Local colchicine application for 30 min to one of the major post-ganglionic nerves caused several electrophysiological changes after 4-7 days in many neurones whose axons run in this nerve. These changes include: (a) a reduction in the amplitude of synaptic potentials elicited by supramaximal preganglionic stimulation; (b) a decrease in the number of preganglionic fibres innervating individual neurones; (c) the development of regenerative responses in dendrites; and (d) the failure of antidromic action potentials to fully invade the neuronal soma. These functional changes occurred in the absence of impaired impulse conduction or axon degeneration, and were not observed in nearby neurones whose axons ran in an untreated post-ganglionic nerve. The effects of colchicine are similar to the changes produced by axotomy. 3. Counts of synapses in thin sections from the region of the ganglion where the affected neurones were located showed a reduction, compared to the number of synapses in other regions of the colchicine treated ganglia, or normal control ganglia. This finding indicates that synaptic depression after colchicine treatment, like that after axotomy, is due primarily to a loss of synaptic contacts from the dendrites of affected nerve cells. Unusual profiles containing numerous vesicular and tubular organelles frequently seen after interruption of the axons were also observed in thin sections after colchicine treatment. 4. The similarity of the electrophysiological and ultrastructural effects of colchicine treatment and axon interruption offers further support for the view that synaptic contacts on sympathetic neurones are normally regulated by an interaction of the neuronal soma with its axonal extension to the periphery.
摘要
  1. 采用细胞内记录和电子显微镜技术,研究了节后应用秋水仙碱对豚鼠颈上神经节神经元的影响。2. 对一条主要的节后神经局部应用秋水仙碱30分钟,4 - 7天后,许多轴突走行于该神经的神经元出现了几种电生理变化。这些变化包括:(a) 超强节前刺激引发的突触电位幅度降低;(b) 支配单个神经元的节前纤维数量减少;(c) 树突中出现再生反应;(d) 逆向动作电位不能完全侵入神经元胞体。这些功能变化发生在冲动传导未受损或轴突未发生退变的情况下,且在轴突走行于未处理的节后神经的附近神经元中未观察到。秋水仙碱的作用与轴突切断所产生的变化相似。3. 对受影响神经元所在神经节区域的薄切片进行突触计数,结果显示,与秋水仙碱处理的神经节其他区域或正常对照神经节相比,突触数量减少。这一发现表明,秋水仙碱处理后的突触抑制,与轴突切断后一样,主要是由于受影响神经细胞树突上突触联系的丧失。秋水仙碱处理后的薄切片中还观察到了在轴突中断后经常出现的含有大量囊泡和管状细胞器的异常结构。4. 秋水仙碱处理和轴突中断在电生理和超微结构效应方面的相似性,进一步支持了这样一种观点,即交感神经元上的突触联系通常是由神经元胞体与其向周围延伸的轴突之间相互作用来调节的。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7051/1309019/8ebd9e850bdb/jphysiol00841-0203-a.jpg

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