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部分去神经支配和终末场扩展对神经肌肉递质释放及神经末梢结构的影响。

Effect of partial denervation and terminal field expansion on neuromuscular transmitter release and nerve terminal structure.

作者信息

Rochel S, Robbins N

机构信息

Department of Developmental Genetics and Anatomy, Case Western Reserve University, School of Medicine, Cleveland, Ohio 44106.

出版信息

J Neurosci. 1988 Jan;8(1):332-8. doi: 10.1523/JNEUROSCI.08-01-00332.1988.

DOI:10.1523/JNEUROSCI.08-01-00332.1988
PMID:2892899
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6569365/
Abstract

The efficacy of evoked ACh release by intact and newly sprouted terminals in response to partial denervation and expansion of the motor neuron terminal field was studied in mouse soleus muscle after section of the L-5 spinal root. From 2 to 4 d after partial denervation until 90 d later, only 3-7 motor units of the normal 21 remained. Regeneration of the dissected nerve was prevented while the remaining motor units were sprouting. The indirect twitch, which was only 20% of direct twitch tension 2-4 d after nerve section, recovered between 28 and 50 d postoperatively. However, the depression of twitch in low Ca/high Mg solution, which was equal to control 2-3 d postoperatively, was 2-3 times more depressed than control by 50 d and remained so up to 90 d. This indicated persistent reduction of the safety factor in sprouted motor units. Intracellular measurement of quantal content in 0.4 mM Ca, 2.75 mM Mg revealed 2 groups of nerve terminals in partially denervated muscle. The quantal content of the first group was greater than contralateral control at earlier times (28-50 d) and only slightly greater than control later (74 and 90 d). This group consisted of the original undenervated terminals, since it was associated with normal miniature endplate potential (MEPP) frequency and end-plate potential (EPP) latency, and presumably with the class of fibers with normal (zinc iodide osmium-stained) nerve terminal morphology and occasional large myelinated preterminal axons.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在切断L-5脊神经根后,研究了小鼠比目鱼肌中完整和新发芽的终末对部分去神经支配和运动神经元终末场扩张的反应所诱发的乙酰胆碱释放的功效。部分去神经支配后2至4天直至90天后,正常的21个运动单位中仅剩下3至7个。在其余运动单位发芽时,切断的神经的再生受到抑制。间接抽搐在神经切断后2至4天仅为直接抽搐张力的20%,术后28至50天恢复。然而,在低钙/高镁溶液中抽搐的抑制在术后2至3天与对照相等,但在50天时比对照抑制大2至3倍,并一直保持到90天。这表明发芽的运动单位中安全系数持续降低。在0.4 mM钙、2.75 mM镁中对量子含量进行细胞内测量,揭示了部分去神经支配肌肉中的两组神经终末。第一组的量子含量在较早时间(28至50天)大于对侧对照,后来(74天和90天)仅略大于对照。该组由原来未去神经支配的终末组成,因为它与正常的微小终板电位(MEPP)频率和终板电位(EPP)潜伏期相关,并且大概与具有正常(碘化锌锇染色)神经终末形态和偶尔的大型有髓前终末轴突的纤维类别相关。(摘要截断于250字)

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