• The melatonin receptor 1a (MTNR1A) is one of the necessary receptors for melatonin exerting its biological function.

    黑激素受体(MTNR1A)褪黑激素发挥生物学功能必需受体之一

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  • AIM: to investigate the melatonin receptor (MR) gene and protein expression in the human peripheral blood lymphocytes.

    目的:研究人外周血淋巴细胞黑素受体(MR)的基因蛋白表达特点。

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  • This paper introduced the polymorphism of melatonin receptor gene and discussed the relationship between melatonin receptor gene and reproductive seasonality.

    本文介绍黑激素受体基因多态性分析及其繁殖季节性之间关系,并对牦牛该基因的研究做一展望。

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  • To determine whether melatonin receptors (MR) exist in human stomach, specific binding of melatonin receptor in human stomach was measured by radioligand binding assay.

    明确人体组织是否存在褪黑素受体(MR),应用放射配体结合法检测人体胃组织MR特异结合量。

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  • For example, the use of melatonin receptor blockers could improve performance of night-time cognitive tasks, helping people such as night-shift workers or students cramming for exams.

    例如褪黑素受体阻碍影响天黑晚认知能力那么对于那些夜班工作者熬夜备考学生都有所辅佐。

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  • This review introduced the structure and function of melatonin receptor 1b, the cloning and structure, developmental expression, mapping and polymorphism of melatonin receptor 1b gene.

    作者介绍黑激素受体1b结构功能,褪黑激素受体1b基因克隆基因结构、发育性表达作用、定位多态性,并讨论了该基因与繁殖季节性的关系。

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  • Conclusion: Melatonin can change the responses of pain neurons to pain stimulation via opioid receptor in the LHb, which might be one of analgesic mechanisms by MEL.

    结论黑色素通过作用于外侧缰核阿片受体而影响其相关神经元刺激反应可能褪黑色素中枢镇痛机制之一

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  • Conclusion: Melatonin does not exhibit its potentiation sleeping time in mice through melatonin 3 receptor. Hypnotic activity of melatonin may be mediated through picrotoxin site on GABAA receptor.

    结论黑素延长小鼠睡眠时间的作用与褪黑素3受体无关,而与GABAA受体关系密切,作用主要印防己毒素结合位点介导

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  • Objective: To examine whether the ovary of human embryo expresses the melatonin (MEL) receptor and to explore its molecular characters.

    前言: 目的:研究人胚胎卵巢是否存在褪黑素受体

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  • Objective: To examine whether the ovary of human embryo expresses the melatonin (MEL) receptor and to explore its molecular characters.

    前言: 目的:研究人胚胎卵巢是否存在褪黑素受体

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