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培养的非洲爪蟾神经肌肉接头发育过程中量子化和非量子化乙酰胆碱释放

Quantal and non-quantal ACh release at developing Xenopus neuromuscular junctions in culture.

作者信息

Young S H, Grinnell A D

机构信息

Department of Physiology, UCLA School of Medicine 90024.

出版信息

J Physiol. 1994 Mar 1;475(2):207-16. doi: 10.1113/jphysiol.1994.sp020062.

Abstract
  1. Single acetylcholine receptor (AChR) channel openings, detected by the whole-cell patch clamp technique, were used to monitor quantal and non-quantal ACh release at synapses in 1- and 2-day-old co-cultures of Xenopus embryonic motoneurons and muscle cells. motoneuron growth cones in ways that presumably reflect muscle-nerve inductive influences and the development of neurotransmitter release mechanisms. 2. Miniature endplate currents (MEPCs) occurred at a mean frequency of approximately 0.6 s-1 with a skewed distribution and mean amplitude of about twenty channel openings. In addition, occasional brief episodes of rapid deviations in the baseline were observed in some cells, with mean amplitudes of 4-8 pA and durations of a few hundred milliseconds. However, these episodes did not closely resemble summated openings of AChR channels. Moreover, where tested, these episodes were not blocked by curare; and comparable episodes were seen in an uninnervated myocyte. Thus they appear not to reflect ACh release from the nerve terminal. 3. Single-channel openings that might have been responses to non-quantal release of ACh were observed at rates of 0.9-12.3 min-1 (mean 3.0 min-1), only 1-5 times the rate of spontaneous AChR channel openings in uninnervated myocytes (mean 1.4 min-1). 4. We conclude that there is no significant non-quantal ACh leak from the presynaptic contacts in these immature synapses under these culture conditions. This is in disagreement with other, less direct, experimental reports, but consistent with findings in mature frog motor nerve terminals.
摘要
  1. 采用全细胞膜片钳技术检测单个乙酰胆碱受体(AChR)通道开放情况,以此监测非洲爪蟾胚胎运动神经元与肌肉细胞1天和2天共培养物突触处的量子化和非量子化乙酰胆碱释放。运动神经元生长锥的方式可能反映了肌肉 - 神经诱导影响和神经递质释放机制的发育。2. 微小终板电流(MEPCs)出现的平均频率约为0.6 s⁻¹,呈偏态分布,平均幅度约为二十个通道开放。此外,在一些细胞中偶尔观察到基线的短暂快速偏差,平均幅度为4 - 8 pA,持续时间为几百毫秒。然而,这些事件与AChR通道的总和开放并不十分相似。此外,在测试时,这些事件不受箭毒阻断;在未受神经支配的肌细胞中也观察到了类似事件。因此,它们似乎不反映神经末梢释放的乙酰胆碱。3. 可能是对非量子化乙酰胆碱释放反应的单通道开放以0.9 - 12.3 min⁻¹(平均3.0 min⁻¹)的速率被观察到,仅为未受神经支配的肌细胞中自发AChR通道开放速率(平均1.4 min⁻¹)的1 - 5倍。4. 我们得出结论,在这些培养条件下,这些未成熟突触的突触前接触处不存在显著的非量子化乙酰胆碱泄漏。这与其他不太直接的实验报告不一致,但与成熟青蛙运动神经末梢的发现一致。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/770d/1160371/a07eb96763ea/jphysiol00405-0027-a.jpg

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