Steps in the development of chemical and electrical synapses by pairs of identified leech neurons in culture.

Y Liu, J Nicholls
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引用次数: 44

Abstract

Experiments have been made to follow the development of chemical and electrical transmission between pairs of leech neurons in culture. 1. The cell bodies of identified neurons were isolated from the CNS by suction after mild enzyme treatment, together with a length of the initial segment (or 'stump'). The neurons tested were Retzius cells (R), annulus erector motoneurons (AE), Anterior pagoda cells (AP) and pressure sensory cells (P). Pairs of cells were placed together in various configurations, with different sites on their surfaces making contact. 2. When pairs of Retzius cells were apposed with their stumps touching, serotonergic, chemically mediated synaptic transmission became apparent before electrical transmission. By 2.5 h impulses in either of the two Retzius cells produced hyperpolarizing inhibitory potentials in the other. These potentials were reversed by raised intracellular Cl and showed clear facilitation. The strength of chemical transmission between Retzius cells increased over the next 72 h. 3. After chemical transmission had been established, weak non-rectifying electrical transmission became apparent between Retzius cells at about 24-72 h. By 4 days coupling became stronger and tended to obscure chemically evoked synaptic potentials. 4. When pairs of Retzius cells were aligned in culture with the tip of one cell stump touching the soma of the other, chemical transmission also developed rapidly. Transmission was, however, in one direction, from stump to soma. At later stages non-rectifying electrical coupling developed as with stump-stump configuration. With the cell bodies of two Retzius cells apposed, electrical coupling developed after several days, before chemical transmission could be observed. 5. When Retzius and P cells were cultured with their stumps in contact, inhibitory chemical synaptic transmission developed within 24 h. Transmission was always in one direction, from Retzius to P cell. Electrical coupling of Retzius and P cells never occurred whatever the spatial relations of the cells to one another. 6. Annulus erector motoneurons, which contain ACh and a peptide resembling FMRFamide, first developed electrical coupling when the two stumps were in contact and then, later, bi-directional chemical transmission. Anterior Pagoda pairs placed stump-to-stump showed electrical connections. 7. Electronmicrographs revealed the presence of synaptic structures within 24 h after Retzius-Retzius, Retzius-P or AE-AE stumps were apposed. 8. The specificity of connections between cultured cells was similar to that observed in earlier experiments.(ABSTRACT TRUNCATED AT 400 WORDS)

经鉴定的水蛭神经元对在培养中形成化学和电突触的步骤。
对培养的水蛭神经元对之间的化学和电传递的发展进行了实验。1. 经轻度酶处理后,通过吸力从中枢神经系统中分离出已鉴定的神经元细胞体,以及一段初始片段(或“残端”)。所测神经元为Retzius细胞(R)、环竖运动神经元(AE)、前塔细胞(AP)和压力感觉细胞(P)。将细胞对以不同的构型放置在一起,在其表面的不同位置进行接触。2. 当Retzius细胞对接触残肢时,5 -羟色胺能化学介导的突触传递在电传递之前变得明显。2.5小时后,两个瑞兹细胞中的任何一个产生了超极化抑制电位。这些电位被升高的细胞内Cl逆转并表现出明显的促进作用。在接下来的72 h内,Retzius细胞之间的化学物质传递强度增加。化学传递建立后,Retzius细胞之间微弱的非整流电传递在大约24-72小时变得明显。到4天,耦合变得更强,并倾向于掩盖化学诱发的突触电位。4. 当一对雷兹乌斯细胞在培养中排列整齐,一个细胞残端接触另一个细胞的体细胞时,化学传播也迅速发展。然而,传播是单向的,从树桩到躯体。在后期阶段,非整流电耦合发展为残端-残端结构。当两个雷兹乌斯细胞的细胞体相对时,几天后电偶联发生,然后观察到化学传递。5. 当Retzius与P细胞残端接触培养时,抑制化学突触传递在24 h内发生,且始终是单向的,从Retzius向P细胞传递。无论细胞之间的空间关系如何,Retzius细胞和P细胞的电偶联从未发生过。6. 环直立运动神经元含有乙酰胆碱和一种类似于FMRFamide的肽,当两个树桩接触时,它们首先产生电偶联,然后是双向化学传递。树桩对树桩的前塔对显示出电连接。7. 电镜图显示,Retzius-Retzius、Retzius-P和AE-AE残肢在24 h内存在突触结构。8. 培养细胞之间连接的特异性与早期实验中观察到的相似。(摘要删节为400字)
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来源期刊
Proceedings of the Royal Society of London Series B-Containing Papers of Abiological Character
Proceedings of the Royal Society of London Series B-Containing Papers of Abiological Character 生命科学, 发育生物学与生殖生物学, 发育生物学
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