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培养的交感神经元中P物质、生长抑素和神经递质合成酶的环境共同调节

Environmental co-regulation of substance P, somatostatin and neurotransmitter synthesizing enzymes in cultured sympathetic neurons.

作者信息

Kessler J A

出版信息

Brain Res. 1984 Oct 29;321(1):155-9. doi: 10.1016/0006-8993(84)90693-0.

Abstract

Mechanisms regulating peptide neurotransmitter metabolism were examined in dissociated cell cultures of the neonatal rat superior cervical ganglion (SCG). The pineal gland, a target of the SCG, produced a soluble factor (PCM) which increased substance P (SP) levels more than 15-fold in sympathetic neurons cultured in the presence of ganglion non-neuronal cells. Elimination of the non-neuronal cells decreased SP to negligible levels and abolished the stimulatory effects of PCM on SP expression. These observations suggest that ganglion non-neuronal cells stimulate sympathetic expression of SP, and that the pineal influences neuronal SP by acting on, or in concert with, ganglion support cells. PCM also influenced other neurotransmitter systems. In the presence of ganglion non-neuronal cells, PCM treatment increased choline acetyltransferase (CHAC) and decreased tyrosine hydroxylase (TOH) and somatostatin (SO). By contrast, PCM treatment of pure neuronal cultures resulted in negligible CHAC and SP levels and a doubling of SO with a small increase in TOH. In sympathetic neurons, SP expression may be associated with cholinergic development, whereas SO may be associated with noradrenergic phenotypic expression. Moreover, there is a reciprocal relationship between SP and SS expression by sympathetic neurons analogous to the previously described relationship between noradrenergic and cholinergic expression.

摘要

在新生大鼠颈上神经节(SCG)的解离细胞培养物中研究了调节肽类神经递质代谢的机制。松果体是SCG的一个靶器官,它产生一种可溶性因子(PCM),在存在神经节非神经元细胞的情况下培养的交感神经元中,该因子使P物质(SP)水平增加超过15倍。去除非神经元细胞可使SP降至可忽略不计的水平,并消除PCM对SP表达的刺激作用。这些观察结果表明,神经节非神经元细胞刺激交感神经元中SP的表达,并且松果体通过作用于神经节支持细胞或与神经节支持细胞协同作用来影响神经元中的SP。PCM还影响其他神经递质系统。在存在神经节非神经元细胞的情况下,PCM处理可增加胆碱乙酰转移酶(CHAC),并降低酪氨酸羟化酶(TOH)和生长抑素(SO)。相比之下,对纯神经元培养物进行PCM处理会导致CHAC和SP水平可忽略不计,SO增加一倍,TOH略有增加。在交感神经元中,SP表达可能与胆碱能发育相关,而SO可能与去甲肾上腺素能表型表达相关。此外,交感神经元中SP和SS表达之间存在相互关系,类似于先前描述的去甲肾上腺素能和胆碱能表达之间的关系。

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