Literature DB >> 11965353

Tyrosine hydroxylase- and/or aromatic L-amino acid decarboxylase-expressing neurons in the rat arcuate nucleus: ontogenesis and functional significance.

M Ugrumov1, V Melnikova, P Ershov, I Balan, A Calas.   

Abstract

This study has evaluated in vivo, ex vivo and in vitro the ontogenesis and functional significance of the neurons of the arcuate nucleus (AN) expressing either individual enzymes of dopamine (DA) synthesis, tyrosine hydroxylase (TH) or aromatic L-amino acid decarboxylase (AADC) as well as both of them in rats from the 17th embryonic day (E) till adulthood. Immunocytochemistry, image analysis, confocal microscopy, high performance liquid chromatography with electrochemical detection and radioimmunoassay were used to solve this problem. Monoenzymatic TH-containing neurons were initially observed on E18 located in the ventrolateral AN whereas the neurons expressing only AADC or both AADC and TH first appeared on E20 in the dorsomedial AN. On E21, the monoenzymatic TH- or AADC-expressing neurons comprised more than 99% of the whole neuron population expressing the DA-synthesizing enzymes. In spite of an extremely small number (<1%) of the neurons expressing both enzymes (DArgic neurons), the dissected AN (ex vivo) and its primary cell culture (in vitro) contained a surprisingly high amount of DA and L-dihydroxyphenylalanine (L-DOPA) which were released in response to membrane depolarization. Furthermore, DA production in the AN of fetuses occurred to be sufficient to provide an inhibitory control of prolactin secretion, as in adults. The above data suggest that DA could be synthesized, at least in the AN of fetuses, by monoenzymatic neurons containing either TH or AADC, in co-operation. This hypothesis may be extended to adult animals as their AN contained the same populations of the neurons expressing DA-synthesizing enzymes as in fetuses though the proportion of true DArgic neurons increased up to 38%. During ontogenesis, the monoenzymatic TH- and AADC-containing neurons established axosomatic and axo-axonal junctions that might facilitate the L-DOPA transport from the former to the latter. Moreover, the monoenzymatic AADC-expressing neurons project their axons to the median eminence, thereby, providing the pathway for the DA transport toward the hypophysial portal circulation. Thus, DA appears to be synthesized in the AN not only by DArgic neurons but also by monoenzymatic TH- and AADC-expressing neurons in co-operation.

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Year:  2002        PMID: 11965353     DOI: 10.1016/s0306-4530(01)00091-9

Source DB:  PubMed          Journal:  Psychoneuroendocrinology        ISSN: 0306-4530            Impact factor:   4.905


  8 in total

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3.  Synthesis of dopamine in non-dopaminergic neurons of the mediobasal hypothalamus of adult rats.

Authors:  V I Melnikova; Yu V Lyupina; A V Lavrentieva; A Ya Sapronova; M V Ugrumov
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5.  Dopamine synthesis by non-dopaminergic neurons in the arcuate nucleus of rat fetuses.

Authors:  V I Mel'nikova; A V Lavrent'eva; V S Kudrin; K S Raevskii; M V Ugryumov
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7.  Three types of tyrosine hydroxylase-positive CNS neurons distinguished by dopa decarboxylase and VMAT2 co-expression.

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8.  White matter regeneration induced by aligned fibrin nanofiber hydrogel contributes to motor functional recovery in canine T12 spinal cord injury.

Authors:  Zheng Cao; Weitao Man; Yuhui Xiong; Yi Guo; Shuhui Yang; Dongkang Liu; He Zhao; Yongdong Yang; Shenglian Yao; Chuzhong Li; Lingyun Zhao; Xiaodan Sun; Hua Guo; Guihuai Wang; Xiumei Wang
Journal:  Regen Biomater       Date:  2021-11-29
  8 in total

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