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海兔神经内分泌细胞间的电紧张耦联

Electrotonic coupling among neuroendocrine cells in Aplysia.

作者信息

Blankenship J E, Haskins J T

出版信息

J Neurophysiol. 1979 Mar;42(2):347-55. doi: 10.1152/jn.1979.42.2.347.

Abstract
  1. We have discovered and characterized direct electrotonic synaptic coupling among a population of neuroendocrine (bag) cells in the parietovisceral ganglion of the marine gastropod Aplysia dactylomela. Pairs of ipsilateral and contralateral bag cells were impaled in vitro with microelectrodes. Current pulses applied through the electrometer amplifier to either cell influenced the other cell via electrotonic connections. 2. The coupling between bag cells was relatively weak when measured at the somata; the mean ratio of postsynaptic/presynaptic response amplitudes is 0.0075. Junctional rectification was not detected. The latency between pre- and postjunctional responses was long, up to 50 ms, a delay comparable to that for chemical synaptic transmission among neurons in this ganglion. Low-Ca2+/high-Mg2+ bathing solutions did not block transmission between bag cells, but did block chemical synaptic potentials in other identified neurons. 3. Postjunctional electrotonic responses had markedly slow time courses compared to the prejunctional responses, a characteristic that permitted summation of otherwise undetectable electrotonic PSPs and the demonstration of coupling between the two (bilateral) clusters of bag cells. 4. Based on extracellular recordings of their compound action potentials, the neurites of A. dactylomela bag cells extended a shorter distance (approximately 3 mm) along the connective than the neurites of A. californica or A. brasiliana. 5. Electrolytic lesions made along the neurites during intrasomatic coupling measurements significantly shortened the duration of postjuctional electrotonic responses, indicating that the neurites are widely electrically interconnected and, as a population, have a large effective membrane capacitance. The lesions furthermore revealed that an important site of electrotonic coupling is at the base of the pleurovisceral connective just rostral to the bag cell cluster. 6. The small-amplitude, long-latency and prolonged time course of postjunctional responses are interpreted to indicate remote and widespread coupling sites among the bag cells. This electrotonic coupling underlies the synchronized firing of the bag cells.
摘要
  1. 我们已经发现并描述了海洋腹足动物加州海兔(Aplysia dactylomela)内脏神经节中一群神经内分泌(袋状)细胞之间的直接电紧张性突触耦合。在体外,用微电极刺入同侧和对侧的成对袋状细胞。通过静电计放大器施加到任一细胞的电流脉冲会通过电紧张连接影响另一个细胞。2. 在胞体处测量时,袋状细胞之间的耦合相对较弱;突触后/突触前反应幅度的平均比值为0.0075。未检测到连接整流。突触前和突触后反应之间的潜伏期很长,长达50毫秒,这一延迟与该神经节中神经元之间化学突触传递的延迟相当。低钙/高镁浴液不会阻断袋状细胞之间的传递,但会阻断其他已鉴定神经元中的化学突触电位。3. 与突触前反应相比,突触后电紧张反应的时间进程明显较慢,这一特征使得原本无法检测到的电紧张性突触后电位能够叠加,并证明了两个(双侧)袋状细胞簇之间的耦合。4. 根据其复合动作电位的细胞外记录,加州海兔袋状细胞的神经突沿着结缔组织延伸的距离(约3毫米)比加州海兔(Aplysia californica)或巴西海兔(Aplysia brasiliana)的神经突短。5. 在体细胞内耦合测量期间沿神经突进行的电解损伤显著缩短了突触后电紧张反应的持续时间,表明神经突广泛地电互连,并且作为一个群体,具有较大的有效膜电容。这些损伤还揭示了电紧张耦合的一个重要部位是在袋状细胞簇前方的胸膜内脏结缔组织基部。6. 突触后反应的小幅度、长潜伏期和延长的时间进程被解释为表明袋状细胞之间存在远距离和广泛的耦合部位。这种电紧张耦合是袋状细胞同步放电的基础。

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