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精神分裂症及精神分裂症动物模型中海马的结构和功能偏差。

Structural and Functional Deviations of the Hippocampus in Schizophrenia and Schizophrenia Animal Models.

机构信息

Department of Cell Morphology and Molecular Neurobiology, Faculty for Biology and Biotechnology, Ruhr-University Bochum, Universitaetsstr. 150, D-44801 Bochum, Germany.

Department of Psychiatry, LWL University Hospital, Ruhr-University Bochum, Alexandrinenstr. 1, D-44791 Bochum, Germany.

出版信息

Int J Mol Sci. 2022 May 13;23(10):5482. doi: 10.3390/ijms23105482.

Abstract

Schizophrenia is a grave neuropsychiatric disease which frequently onsets between the end of adolescence and the beginning of adulthood. It is characterized by a variety of neuropsychiatric abnormalities which are categorized into positive, negative and cognitive symptoms. Most therapeutical strategies address the positive symptoms by antagonizing D2-dopamine-receptors (DR). However, negative and cognitive symptoms persist and highly impair the life quality of patients due to their disabling effects. Interestingly, hippocampal deviations are a hallmark of schizophrenia and can be observed in early as well as advanced phases of the disease progression. These alterations are commonly accompanied by a rise in neuronal activity. Therefore, hippocampal formation plays an important role in the manifestation of schizophrenia. Furthermore, studies with animal models revealed a link between environmental risk factors and morphological as well as electrophysiological abnormalities in the hippocampus. Here, we review recent findings on structural and functional hippocampal abnormalities in schizophrenic patients and in schizophrenia animal models, and we give an overview on current experimental approaches that especially target the hippocampus. A better understanding of hippocampal aberrations in schizophrenia might clarify their impact on the manifestation and on the outcome of this severe disease.

摘要

精神分裂症是一种严重的神经精神疾病,通常在青春期末和成年初期发作。它的特征是多种神经精神异常,可分为阳性、阴性和认知症状。大多数治疗策略通过拮抗 D2-多巴胺受体(DR)来解决阳性症状。然而,阴性和认知症状持续存在,并由于其致残作用而严重影响患者的生活质量。有趣的是,海马体偏差是精神分裂症的一个标志,可在疾病进展的早期和晚期观察到。这些改变通常伴随着神经元活动的增加。因此,海马体在精神分裂症的表现中起着重要作用。此外,动物模型研究表明,环境风险因素与海马体的形态和电生理异常之间存在联系。在这里,我们回顾了精神分裂症患者和精神分裂症动物模型中海马体结构和功能异常的最新发现,并概述了目前特别针对海马体的实验方法。更好地了解精神分裂症中海马体的异常可能会阐明它们对该严重疾病表现和结果的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9608/9143100/8aad1a831e2a/ijms-23-05482-g001.jpg

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