首页> 外文期刊>Journal of Evolutionary Biochemistry and Physiology: A Journal of Original Papers and Reviews on Evolutionary, Comparative, and Ecological Aspects of Physiology, Biochemistry, and Morphology >Expression of Tyrosine Hydroxylase in Vasopressinergic Neurons of the Supraoptic Nucleus in Rat Ontogenesis and Its Modulation by Noradrenergic Afferents
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Expression of Tyrosine Hydroxylase in Vasopressinergic Neurons of the Supraoptic Nucleus in Rat Ontogenesis and Its Modulation by Noradrenergic Afferents

机译:酪氨酸羟化酶在大鼠视神经上视神经核血管加压素神经元中的表达及其去甲肾上腺素能受体的调节作用

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An attempt is made to find out,at what stage of ontogenesis an expression of gene and synthesis of tyrosine hydroxylase (TH)is started,and whether noradrenergic afferents participate in regulation of these processes.The study is carried out on rats at the 21st embryonal day (E21),P3 and P13 with use of quantitative and semi-quantitative immunocytochemistry and hybridization in situ.Animals of all ages were subjected to a salt load,in some cases on the background of introduction of and alpha 1-adrenoreceptor inhibitor,prazozine.According to the obtained data,the TH expression in SON neurons in response to the salt load begins at P3.The number of VP-ergic neurons expressing TH during the salt load is 3-fold reduced from P3 to P13.Taking into account that the innervation of VP-ergic SON neurons is realized for this period of development,we formulated a hypothesis that the TH expression is inhibited by noradrenergic aflferents.According to the obtained data,TH is not expressed in osmotically stimulated VP-ergic neurons on the background of prazozine injection at E21;however,this combined effect results in increased TH expression at P3 and P13.At P13,i.e.,in animals with a more developed afferent innervation,the amount of TH-immu-noreactive neurons is three times lower,than at P3.Thus,in ontogenesis of rats,VP-ergic neurons begin to respond to osmotic stimulation by inclusion of the TH gene expression and its synthesis at the neonatal period,the both processes being under the inhibitory control of noradrenergic aflferents mediated through alpha 1-adrenoreceptors.
机译:试图找出在本体形成的哪个阶段开始基因表达和酪氨酸羟化酶(TH)的合成,以及是否去甲肾上腺素能传入参与这些过程的调节。该研究是在第21个胚胎的大鼠上进行的。 (E21)天,P3和P13,采用定量和半定量免疫细胞化学技术,并进行原位杂交。各个年龄段的动物都受到盐负荷,在某些情况下,在引入α1-肾上腺素受体抑制剂吡唑嗪的背景下根据获得的数据,SON神经元响应盐负荷的TH表达始于P3。在盐负荷期间表达TH的VP能神经元的数量从P3减少到P13的3倍。 VP SON神经元的神经支配在该发育阶段得以实现,我们提出了一个假设,即去甲肾上腺素能抑制TH的表达。根据获得的数据,TH在渗透压下不表达在E21注射哌唑嗪的背景下刺激了VP刺激神经元;但是,这种联合作用导致P3和P13的TH表达增加。在P13,即在神经支配神经发育较发达的动物中,TH-immu的量-无反应性神经元比P3低三倍。因此,在大鼠的发生过程中,VP敏感神经元开始通过包含TH基因的表达及其在新生儿期的合成来对渗透刺激作出反应,这两个过程都在α1肾上腺素受体介导的去甲肾上腺素香精的抑制性控制。

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