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Functional maturation of motor nerve terminals in the avian iris: ultrastructure transmitter metabolism and synaptic reliability

机译:禽虹膜运动神经末梢的功能成熟:超微结构递质代谢和突触可靠性

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1. The transformation of easily fatigued embryonic neuromuscular junctions into highly reliable mature terminals was examined by studying functional and morphological changes during development of the avian iris. The mature ability to follow repetitive electrical nerve stimulation was correlated with the rate of acetylcholine (ACh) synthesis and choline uptake, and with the fine structure of the nerve terminals and the post-synaptic elements.2. The terminals of the ciliary nerve of the chick initially form functional synaptic contacts with the iris muscle at embryonic St. 34-40. At the onset of this period, no Na+-dependent high affinity choline uptake can be demonstrated, and the low level of ACh synthesis present is sensitive to Na+ removal. At St. 36 [3H]ACh synthesis begins to increase, the increment being Na+-dependent.3. ACh synthesis in the embryonic iris was insensitive to a conditioning [K+]o depolarization even as late as St. 43. Just before hatching, depolarization elicits some augmentation in synthesis, but by 2 days ex ovo this release-induced response has increased by an order of magnitude.4. Concurrently with the acquisition of the ability to respond to depolarization with accelerated synthesis, neuromuscular transmission in the iris becomes reliable and secure during stimulation at 20 Hz. Embryonic junctions rapidly block during such stimulation, and the failure is shown to be presynaptic in origin, resulting most probably from failure to sustain adequate levels of transmitter release.5. Ultrastructural examination of the developing ciliary terminals revealed few synaptic vesicles at early stages, and a dearth of other specializations. The sequence of development from these small structurally undistinguished endings to large en plaque junctions completely filled with vesicles was reconstructed and compared to other neuromuscular junctions. Morphological maturation appears progressive with little evidence of discontinuity signalling functional status, but it is only after the terminals enlarge and become closely packed with vesicles that mature synaptic reliability is found.6. The temporal correlation between responsiveness of transmitter synthesis to depolarization and reliable neuromuscular transmission suggests that modulation of neurotransmitter metabolism in response to demand signals the achievement of junctional maturity.
机译:1.通过研究禽虹膜发育过程中的功能和形态变化,研究了容易疲劳的胚胎神经肌肉接头向高度可靠的成熟末端的转化。重复电神经刺激后的成熟能力与乙酰胆碱(ACh)的合成速率和胆碱摄取,神经末梢的精细结构和突触后元件有关。2。雏鸡的睫状神经末端最初在胚胎St. 40-40与虹膜肌肉形成功能性突触接触。在这一时期的开始,尚不能证明Na + 依赖的高亲和力的胆碱摄取,并且低水平的ACh合成对Na + 的去除很敏感。在St. 36,[ 3 H] ACh的合成开始增加,其增加依赖于Na + 。胚胎虹膜中的ACh合成对条件化的[K + ] o去极化不敏感,甚至直到St.43。在孵化之前,去极化都会引起合成的增加,但是在离卵2天之前释放诱导的反应增加了一个数量级。4。在获得对加速合成的去极化反应能力的同时,虹膜中的神经肌肉传递在20 Hz刺激期间变得可靠和安全。胚胎连接在这种刺激过程中迅速受阻,并且该失败被证明是突触前的起源,最有可能是由于未能维持足够水平的递质释放引起的。5。发育中的睫状终末的超微结构检查显示,早期阶段的突触囊泡很少,其他专科则缺乏。从这些小的结构上没有区别的末端到完全被囊泡充满的大斑块连接的发育顺序被重建,并与其他神经肌肉连接相比较。形态学成熟表现为进行性,几乎没有不连续信号功能状态的证据,但是只有在末端扩大并与囊泡紧密结合后,才能发现成熟的突触可靠性。6。递质合成对去极化的响应性与可靠的神经肌肉传递之间的时间相关性表明,响应于需求的神经递质代谢的调节信号化了结成熟度。

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