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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Quantitative measurement of serotonin synthesis and sequestration in individual live neuronal cells.
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Quantitative measurement of serotonin synthesis and sequestration in individual live neuronal cells.

机译:定量测量单个活神经元细胞中5-羟色胺的合成和螯合。

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Synthesis and subsequent sequestration into vesicles are essential steps that precede neurotransmitter exocytosis, but neither the total neurotransmitter content nor the fraction sequestered into vesicles have been measured in individual live neurons. We use multiphoton microscopy to directly observe intracellular and intravesicular serotonin in the serotonergic neuronal cell line RN46A. We focus on how the relationship between synthesis and sequestration changes as synthesis is up-regulated by differentiation or down-regulated by chemical inhibition. Temperature-induced differentiation causes an increase of about 60% in the total serotonin content of individual cells, which goes up to about 10 fmol. However, the number of vesicles per cell increases by a factor of four and the proportion of serotonin sequestered inside the vesicles increases by a factor of five. When serotonin synthesis is inhibited in differentiated cells and the serotonin content goes down to the level present in undifferentiated cells, the sequestered proportion still remains at this high level. The total neurotransmitter content of a cell is, thus, an unreliable indicator of the sequestered amount.
机译:合成和随后的隔离到囊泡中是神经递质胞吐作用之前的重要步骤,但是在单个活的神经元中都没有测量总的神经递质含量或隔离到囊泡中的级分。我们使用多光子显微镜直接观察血清素能神经元细胞系RN46A中的细胞内和囊泡内5-羟色胺。我们着重于合成与螯合之间的关系如何随着合成通过分化而上调或通过化学抑制而下调而改变。温度诱导的分化导致单个细胞的总血清素含量增加约60%,最高可达10 fmol。但是,每个细胞的囊泡数目增加了四倍,而隔离在囊泡中的5-羟色胺的比例增加了五倍。当分化细胞中5-羟色胺的合成受到抑制,且5-羟色胺含量降至未分化细胞中的水平时,螯合比例仍保持在该高水平。因此,细胞中神经递质的总含量是隔离量的不可靠指标。

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