What animals can teach clinicians about the hippocampus.

Q3 Medicine
Frontiers of Neurology and Neuroscience Pub Date : 2014-01-01 Epub Date: 2014-04-16 DOI:10.1159/000356418
Pierre Lavenex, Pamela Banta Lavenex, Grégoire Favre
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引用次数: 2

Abstract

Abnormalities in hippocampal structure and function have been reported in a number of human neuropathological and neurodevelopmental disorders, including Alzheimer's disease, autism spectrum disorders, Down syndrome, epilepsy, and schizophrenia. Given the complexity of these disorders, animal studies are invaluable and remain to date irreplaceable, providing fundamental knowledge regarding the basic mechanisms underlying normal and pathological human brain structure and function. However, there is a prominent ill-conceived view in current research that scientists should be restricted to using animal models of human diseases that can lead to results applicable to humans within a few years. Although there is no doubt that translational studies of this kind are important and necessary, limiting animal studies to applicable questions is counterproductive and will ultimately lead to a lack of knowledge and an inability to address human health problems. Here, we discuss findings regarding the normal postnatal development of the monkey hippocampal formation, which provide an essential framework to consider the etiologies of different neuropathological disorders affecting human hippocampal structure and function. We focus on studies of gene expression in distinct hippocampal regions that shed light on some basic mechanisms that might contribute to the etiology of schizophrenia. We argue that researchers, as well as clinicians, should not consider the use of animals in research only as 'animal models' of human diseases, as they will continue to need and benefit from a better understanding of the normal structure and functions of the hippocampus in 'model animals'.

动物可以教给临床医生关于海马体的知识。
海马结构和功能异常在许多人类神经病理和神经发育障碍中都有报道,包括阿尔茨海默病、自闭症谱系障碍、唐氏综合症、癫痫和精神分裂症。鉴于这些疾病的复杂性,动物研究是无价的,迄今为止仍然是不可替代的,提供了关于正常和病理人类大脑结构和功能的基本机制的基本知识。然而,在目前的研究中有一种突出的错误观点,即科学家应该被限制使用可能在几年内产生适用于人类的结果的人类疾病的动物模型。虽然毫无疑问,这种转化研究是重要和必要的,但将动物研究限制在适用的问题上是适得其反的,最终将导致缺乏知识和无法解决人类健康问题。在这里,我们讨论了关于猴海马形成的正常出生后发育的发现,这为考虑影响人类海马结构和功能的不同神经病理疾病的病因提供了一个重要的框架。我们专注于研究不同海马区域的基因表达,揭示一些可能导致精神分裂症病因的基本机制。我们认为,研究人员以及临床医生不应该仅仅把动物作为人类疾病的“动物模型”,因为他们将继续需要并受益于对“模型动物”中海马体的正常结构和功能的更好理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers of Neurology and Neuroscience
Frontiers of Neurology and Neuroscience Medicine-Neurology (clinical)
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期刊介绍: Focusing on topics in the fields of both Neurosciences and Neurology, this series provides current and unique information in basic and clinical advances on the nervous system and its disorders.
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