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在动物中模拟焦虑的遗传学方法。

Genetic approaches to modeling anxiety in animals.

作者信息

Jacobson Laura H, Cryan John F

机构信息

Novartis Institutes for Biomedical Research, CH-4002 Basel, Switzerland.

出版信息

Curr Top Behav Neurosci. 2010;2:161-201. doi: 10.1007/7854_2009_31.

Abstract

Anxiety disorders are a growing health problem world-wide. However, the causative factors, etiology, and underlying mechanisms of anxiety disorders, as for most psychiatric disorders, remain relatively poorly understood. The current status of clinical research indicates that anxiety traits and anxiety disorder in man have a genetic component, and therefore genetic modeling in animals is a logical approach to gain a greater insight into their neurobiology. However, it is also clear that the nature of these genetic contributions is highly complex. Moreover, the success of this approach is largely contingent upon the utility of available behavioral paradigms for modeling anxiety-related behaviors in mice. Animal genetic models provide a unique and comprehensive methodological tool to aid discovery into the etiology, neurobiology, and ultimately, the therapy of human anxiety disorders. The approach, however, is challenged with a number of complexities. In particular, the heterogeneous nature of anxiety disorders in man coupled with the associated multifaceted and descriptive diagnostic criteria, create challenges in both animal modeling and in clinical research. In this article, we describe some of the powerful modem genetic techniques that are uniquely amenable to the laboratory mouse and thus provide a strategy for approaching some of these challenges. Moreover, we focus on recent advances which have highlighted the relative contribution of genetic modeling in animals to the understanding of underlying neurobiology and genetic basis of anxiety disorders.

摘要

焦虑症在全球范围内正成为一个日益严重的健康问题。然而,与大多数精神疾病一样,焦虑症的致病因素、病因和潜在机制仍相对了解不足。临床研究现状表明,人类的焦虑特质和焦虑症具有遗传成分,因此在动物身上进行遗传建模是更深入了解其神经生物学的合理方法。然而,同样明显的是,这些遗传因素的性质高度复杂。此外,这种方法的成功很大程度上取决于现有行为范式对模拟小鼠焦虑相关行为的效用。动物遗传模型提供了一种独特而全面的方法学工具,有助于探索人类焦虑症的病因、神经生物学以及最终的治疗方法。然而,这种方法面临着许多复杂性挑战。特别是,人类焦虑症的异质性以及相关的多方面和描述性诊断标准,给动物建模和临床研究都带来了挑战。在本文中,我们描述了一些强大的现代遗传技术,这些技术特别适用于实验室小鼠,从而为应对其中一些挑战提供了一种策略。此外,我们关注最近的进展,这些进展突出了动物遗传建模对理解焦虑症潜在神经生物学和遗传基础的相对贡献。

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