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Cellular specificity of serotonin storage and axonal transport in identified neurones of Aplysia californica

机译:在加利福尼亚海Ap神经元中血清素储存和轴突运输的细胞特异性

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摘要

1. [3H]D,L-5-hydroxytryptophan ([3H]5HTP) was injected under pressure into cell bodies of identified cholinergic and serotonergic neurones in the central nervous system of the marine mollusc, Aplysia californica.2. Both serotonergic and cholinergic neurones converted [3H]5HTP to [3H]5-hydroxytryptamine ([3H]5HT).3. The fate of [3H]5HT in the two types of neurones differed. In serotonergic cells, 5HT was present primarily in particulate form; the transmitter readily moved from cell bodies into nerves by selective transport. In contrast, 5HT remained free in the cytoplasm of the cholinergic neurone, and was not transported from the cell body.4. Treatment of Aplysia with reserpine decreased the proportion of [3H]5HT associated with particulate material, and also decreased the amount of [3H]5HT recovered.5. Serotonergic neurones possess specific mechanisms for the storage and axonal transport of 5HT which are absent in cholinergic cells.
机译:1.在压力下将[ 3 H] D,L-5-羟基色氨酸([ 3 H] 5HTP)注射到已鉴定的中枢胆碱能和血清素能神经元的细胞体内海洋软体动物Aplysia californica的神经系统2。血清素能和胆碱能神经元都将[ 3 H] 5HTP转换为[ 3 H] 5-羟基色胺([ 3 H] 5HT)。3。 [ 3 H] 5HT在两种神经元中的命运不同。在血清素能细胞中,5HT主要以颗粒形式存在。变送器可以通过选择性转运将其从细胞体内轻松转移到神经中。相反,5HT在胆碱能神经元的细胞质中保持游离,并且没有从细胞体内转运出来。4。利血平治疗海兔降低了与颗粒物质有关的[ 3 H] 5HT的比例,并降低了[ 3 H] 5HT的回收量。5。血清素能神经元具有胆碱能细胞中不存在的5HT的储存和轴突运输的特定机制。

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