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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Diencephalic neurons producing melanin-concentrating hormone are influenced by local and multiple extra-hypothalamic tachykininergic projections through the neurokinin 3 receptor.
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Diencephalic neurons producing melanin-concentrating hormone are influenced by local and multiple extra-hypothalamic tachykininergic projections through the neurokinin 3 receptor.

机译:产生黑色素浓缩激素的双脑神经元受神​​经激肽3受体的局部和下丘脑外速激肽能投射的影响。

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摘要

As melanin-concentrating hormone (MCH) neurons express the neurokinin 3 receptor (NK3) in the rat diencephalon, their innervation by tachykininergic fibers, the origin of this innervation and the effect of a NK3 agonist on MCH mRNA expression were researched. The obtained results show that the tachykininergic system develops complex relationships with MCH neurons. Overall, MCH cell bodies appeared targeted by both NKB- and SP-inputs. These afferents have multiple hypothalamic and extra-hypothalamic origins, but a local (intra-lateral hypothalamic area) origin from small interneurons was suspected as well. MCH cell bodies do not express NK1, but around 2.7% of the MCH neurons contained SP after colchicine injection. Senktide, a NK3 agonist, produced an increase of the MCH mRNA expression in cultured hypothalamic slices. This effect was reversed by two NK3 antagonists. Tachykinins enhance MCH mRNA expression, and, thus, may modulate the effect of MCH in functions such as feeding and reproductive behaviors in which this peptide has been experimentally involved.
机译:研究了黑色素浓缩激素(MCH)神经元在大鼠中脑中表达神经激肽3受体(NK3)的情况,研究了其由速激肽能纤维的神经支配,这种神经支配的起源以及NK3激动剂对MCH mRNA表达的影响。获得的结果表明,速激肽能系统与MCH神经元发展了复杂的关系。总体而言,MCH细胞体似乎是NKB输入和SP输入的目标。这些传入有多个下丘脑和下丘脑起源,但也怀疑来自小的中间神经元的局部(外侧下丘脑区域)起源。 MCH细胞体不表达NK1,但是秋水仙碱注射后约有2.7%的MCH神经元含有SP。 NK3激动剂Senktide在培养的下丘脑切片中产生了MCH mRNA表达的增加。两种NK3拮抗剂可逆转这种作用。速激肽提高了MCH mRNA的表达,因此可以调节MCH在功能上的作用,例如该肽已通过实验参与进食和生殖行为。

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