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饮食失调特质的动物模型。

Animal models of eating disorder traits.

作者信息

Kas Martien J H, Adan Roger A H

机构信息

Department of Neuroscience and Pharmacology, Rudolf Magnus Institute of Neuroscience, University Medical Centre Utrecht, The Netherlands.

出版信息

Curr Top Behav Neurosci. 2011;6:209-27. doi: 10.1007/7854_2010_84.

Abstract

Eating disorders, such as anorexia and bulimia nervosa, are psychiatric disorders that are likely determined by a complex interaction between genetic variations, developmental processes, and certain life events. Cross-species analysis of traits related to eating disorders may provide a way to functionally and systematically study neurobiological mechanisms underlying these disorders. Interspecies trait genetics may offer opportunities to identify common neurobiological mechanisms underlying eating disorder characteristics relevant to the initiation, progression, and/or maintenance of the disease, such as cognitive rigidity, increased anxiety levels, and behavioral hyperactivity. These can subsequently be tested directly by studying allelic variation in mice and human subjects and by applying methods that can modify gene expression levels in rodent models. Increasing our knowledge about these traits and their underlying neurobiological mechanisms will be relevant to develop new therapies for patients within the heterogeneous eating disorder populations. Novel mouse genetic and phenotyping tools offer a way to study these neurobehavioral traits under controlled environmental and genetic background conditions.

摘要

饮食失调,如神经性厌食症和神经性贪食症,是精神疾病,可能由基因变异、发育过程和某些生活事件之间的复杂相互作用所决定。对与饮食失调相关的性状进行跨物种分析,可能为从功能和系统层面研究这些疾病背后的神经生物学机制提供一种方法。种间性状遗传学可能提供机会,来识别与饮食失调特征相关的共同神经生物学机制,这些特征与疾病的起始、进展和/或维持有关,如认知僵化、焦虑水平升高和行为多动。随后,可以通过研究小鼠和人类受试者的等位基因变异,以及应用能够改变啮齿动物模型中基因表达水平的方法,直接对这些机制进行测试。增进我们对这些性状及其潜在神经生物学机制的了解,将有助于为异质性饮食失调人群的患者开发新的治疗方法。新型小鼠基因和表型分析工具提供了一种在可控的环境和基因背景条件下研究这些神经行为性状的方法。

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