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线粒体心理生物学:基础与应用

Mitochondrial Psychobiology: Foundations and Applications.

作者信息

Picard Martin, Trumpff Caroline, Burelle Yan

机构信息

Department of Psychiatry, Division of Behavioral Medicine, Columbia University Medical Center, New York, NY, 10032, USA.

Department of Neurology, H. Houston Merritt Center, Columbia Translational Neuroscience Initiative, Columbia University Medical Center, New York, NY, 10032, USA.

出版信息

Curr Opin Behav Sci. 2019 Aug;28:142-151. doi: 10.1016/j.cobeha.2019.04.015. Epub 2019 Jun 14.

Abstract

Mitochondrial psychobiology is the study of the interactions between psychological states and the biological processes that take place within mitochondria. It also examines how mitochondrial behavior influence neural, endocrine, and immune systems known to transduce psychological experiences into health outcomes. Unlike traditional biological outcomes and mediators, mitochondria are dynamic and multifunctional living organisms. By leveraging a variety of laboratory tools including omics, scientists can now map mitochondrial behavior at multiple levels of complexity - from isolated molecular markers to dynamic functional and signaling outcomes. Here we discuss current efforts to develop relevant measures of mitochondrial behavior in accessible human tissues, increase their biological specificity by applying precise measurements in defined cell populations, create composite indices reflecting mitochondrial health, and integrate these approaches with psycho-neuro-endocrino-immune outcomes. This systematic inter-disciplinary effort will help move the field of mitochondrial psychobiology towards a predictive science explaining how, and to what extent, mitochondria contribute to the biological embedding of stress and other psychological states.

摘要

线粒体心理生物学是研究心理状态与线粒体内部发生的生物过程之间的相互作用。它还研究线粒体行为如何影响已知能将心理体验转化为健康结果的神经、内分泌和免疫系统。与传统的生物学结果和介质不同,线粒体是动态且多功能的生物体。通过利用包括组学在内的各种实验室工具,科学家现在可以在多个复杂层面绘制线粒体行为图谱——从分离的分子标记到动态功能和信号结果。在这里,我们讨论了当前为在可获取的人体组织中开发相关的线粒体行为测量方法所做的努力,通过在特定细胞群体中应用精确测量来提高其生物学特异性,创建反映线粒体健康的综合指标,并将这些方法与心理 - 神经 - 内分泌 - 免疫结果相结合。这种系统的跨学科努力将有助于推动线粒体心理生物学领域朝着一门预测性科学发展,该科学能够解释线粒体如何以及在多大程度上促成压力和其他心理状态的生物学嵌入。

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