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血清素对大鼠视交叉上核中产生血管活性肠肽的神经元分化的影响。

The effects of serotonin on the differentiation of neurons producing vasoactive intestinal polypeptide in the suprachiasmatic nucleus of the rat.

作者信息

Mirochnik V V, Ugryumov M V, Bosler O, Calas A

机构信息

P. K. Anokhin Institute of Normal Physiology, Russian Academy of Medical Sciences, 8 Baltiiskaya Street, 125315 Moscow, Russia.

出版信息

Neurosci Behav Physiol. 2003 Sep;33(7):729-33. doi: 10.1023/a:1024477227552.

Abstract

The morphogenetic influences of serotonin on the differentiation of neurons synthesizing vasoactive intestinal polypeptide (VIP) in the suprachiasmatic nucleus were studied in rats. This was addressed by comparative morphofunctional analysis of VIP neurons in adult rats whose brains developed prenatally in conditions of normal and deficient serotonin metabolism. Serotonin deficiency was created in fetuses by treatment of their mothers with p-chlorophenylalanine (PCPA). Pregnant females in controls were treated with 0.9% NaCl. VIP neurons in experimental and control animals were found to show no differences in VIP mRNA concentrations and, probably, in the level of VIP synthesis. However, inhibition of serotonin synthesis led to an increase in the number of VIP-immunoreactive neurons and an increase in the VIP concentration within these cells. This was not associated with any change in neuron size, which was an indicator of the absence of functional hypertrophy accompanying activation of specific synthesis. Comparison of the data obtained here showed that during prenatal ontogenesis, serotonin has an imprinting influence on the differentiation of VIP neurons and is probably involved in the formation of the mechanism of VIP secretion.

摘要

在大鼠中研究了血清素对视交叉上核中合成血管活性肠肽(VIP)的神经元分化的形态发生影响。通过对成年大鼠VIP神经元进行比较形态功能分析来解决这一问题,这些成年大鼠的大脑在产前发育于正常和血清素代谢不足的条件下。通过用对氯苯丙氨酸(PCPA)处理胎儿的母亲来造成胎儿血清素缺乏。对照组的怀孕雌性用0.9%氯化钠处理。发现实验动物和对照动物中的VIP神经元在VIP mRNA浓度以及可能在VIP合成水平上没有差异。然而,血清素合成的抑制导致VIP免疫反应性神经元数量增加以及这些细胞内VIP浓度增加。这与神经元大小的任何变化无关,神经元大小是伴随特定合成激活而无功能性肥大的指标。此处获得的数据比较表明,在产前个体发育过程中,血清素对VIP神经元的分化有印记影响,并且可能参与VIP分泌机制的形成。

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