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3α,5α-四氢孕酮对涉及孕烷异生物质受体的情绪、动机和奖赏功能的影响及机制

Effects and Mechanisms of 3α,5α,-THP on Emotion, Motivation, and Reward Functions Involving Pregnane Xenobiotic Receptor.

作者信息

Frye Cheryl A, Paris J J, Walf A A, Rusconi J C

机构信息

Department of Psychology, The University at Albany-SUNY Albany, NY, USA.

出版信息

Front Neurosci. 2012 Jan 19;5:136. doi: 10.3389/fnins.2011.00136. eCollection 2011.

Abstract

Progestogens [progesterone (P(4)) and its products] play fundamental roles in the development and/or function of the central nervous system during pregnancy. We, and others, have investigated the role of pregnane neurosteroids for a plethora of functional effects beyond their pro-gestational processes. Emerging findings regarding the effects, mechanisms, and sources of neurosteroids have challenged traditional dogma about steroid action. How the P(4) metabolite and neurosteroid, 3α-hydroxy-5α-pregnan-20-one (3α,5α-THP), influences cellular functions and behavioral processes involved in emotion/affect, motivation, and reward, is the focus of the present review. To further understand these processes, we have utilized an animal model assessing the effects, mechanisms, and sources of 3α,5α-THP. In the ventral tegmental area (VTA), 3α,5α-THP has actions to facilitate affective, and motivated, social behaviors through non-traditional targets, such as GABA, glutamate, and dopamine receptors. 3α,5α-THP levels in the midbrain VTA both facilitate, and/or are enhanced by, affective and social behavior. The pregnane xenobiotic receptor (PXR) mediates the production of, and/or metabolism to, various neurobiological factors. PXR is localized to the midbrain VTA of rats. The role of PXR to influence 3α,5α-THP production from central biosynthesis, and/or metabolism of peripheral P(4), in the VTA, as well as its role to facilitate, or be increased by, affective/social behaviors is under investigation. Investigating novel behavioral functions of 3α,5α-THP extends our knowledge of the neurobiology of progestogens, relevant for affective/social behaviors, and their connections to systems that regulate affect and motivated processes, such as those important for stress regulation and neuropsychiatric disorders (anxiety, depression, schizophrenia, drug dependence). Thus, further understanding of 3α,5α-THP's role and mechanisms to enhance affective and motivated processes is essential.

摘要

孕激素(孕酮(P(4))及其产物)在孕期中枢神经系统的发育和/或功能中发挥着重要作用。我们以及其他研究人员已经探讨了孕烷神经甾体在其孕激素作用过程之外的众多功能效应中的作用。关于神经甾体的效应、机制和来源的新发现对传统的类固醇作用学说提出了挑战。本综述的重点是P(4)代谢产物和神经甾体3α-羟基-5α-孕烷-20-酮(3α,5α-THP)如何影响与情绪/情感、动机和奖赏相关的细胞功能和行为过程。为了进一步了解这些过程,我们利用了一种动物模型来评估3α,5α-THP的效应、机制和来源。在腹侧被盖区(VTA),3α,5α-THP通过非传统靶点(如GABA、谷氨酸和多巴胺受体)促进情感和有动机的社会行为。中脑VTA中的3α,5α-THP水平既促进情感和社会行为,又受到情感和社会行为的增强。孕烷异生物质受体(PXR)介导各种神经生物学因子的产生和/或代谢。PXR定位于大鼠的中脑VTA。PXR在VTA中影响中枢生物合成产生3α,5α-THP以及外周P(4)代谢的作用,以及其促进情感/社会行为或被情感/社会行为增强的作用正在研究中。研究3α,5α-THP的新行为功能扩展了我们对孕激素神经生物学的认识,这与情感/社会行为相关,以及它们与调节情感和动机过程的系统的联系,如对压力调节和神经精神疾病(焦虑、抑郁、精神分裂症、药物依赖)重要的那些系统。因此,进一步了解3α,5α-THP增强情感和动机过程的作用和机制至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26c8/3261425/6acce5ad8d30/fnins-05-00136-g001.jpg

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