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认知功能的分子和细胞机制:对精神疾病的影响

Molecular and cellular mechanisms of cognitive function: implications for psychiatric disorders.

作者信息

Silva A J, Elgersma Y, Costa R M

机构信息

Department of Neurobiology, University of California Los Angeles 90095-1761, USA.

出版信息

Biol Psychiatry. 2000 Feb 1;47(3):200-9. doi: 10.1016/s0006-3223(99)00294-2.

Abstract

Recent studies on the molecular and cellular basis of learning and memory have brought us closer than ever to understanding the mechanisms of synaptic plasticity and their relevance to memory formation. Genetic approaches have played a central role in these new findings because the same mutant mice can be studied with molecular, cellular, circuit, and behavioral tools. Therefore, the results can be used to construct models that cut across levels of analytical complexity, forging connections from the biochemistry of the modified protein to the behavior of the mutant mice. These findings are not only improving our understanding of learning and memory, they are also enriching our understanding of cognitive disorders, such as neurofibromatosis type I. Mechanisms underlying long-term changes in synaptic function are likely to be at the heart of many cognitive and emotional processes in humans. Therefore, molecular and cellular insights into learning and memory undoubtedly will have a profound impact on the understanding and treatment of psychiatric disorders.

摘要

最近关于学习与记忆的分子和细胞基础的研究,使我们比以往任何时候都更接近理解突触可塑性的机制及其与记忆形成的相关性。遗传学方法在这些新发现中发挥了核心作用,因为可以使用分子、细胞、神经回路和行为学工具对相同的突变小鼠进行研究。因此,这些结果可用于构建跨越分析复杂性水平的模型,建立从修饰蛋白的生物化学到突变小鼠行为的联系。这些发现不仅增进了我们对学习与记忆的理解,还丰富了我们对诸如I型神经纤维瘤病等认知障碍的理解。突触功能长期变化的潜在机制可能是人类许多认知和情感过程的核心。因此,对学习与记忆的分子和细胞层面的深入了解无疑将对精神疾病的理解和治疗产生深远影响。

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