通过患者特异性细胞系统研究和调节精神分裂症相关的少突胶质细胞功能障碍。

IF 5.7 2区 医学 Q1 PSYCHIATRY
Florian J Raabe, Sabrina Galinski, Sergi Papiol, Peter G Falkai, Andrea Schmitt, Moritz J Rossner
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引用次数: 30

摘要

精神分裂症(SCZ)患者的死后研究揭示了髓鞘形成缺陷、髓鞘基因表达异常和大脑中少突胶质细胞数量改变。然而,由于技术障碍,获得少突胶质细胞(OL)功能障碍及其对SCZ的贡献的机制见解一直具有挑战性。个体患者来源的人类诱导多能干细胞(hipsc)的出现,以及原则上任何神经元和胶质细胞类型(包括ol和少突胶质前体细胞(OPCs))的产生,对于理解遗传复杂精神疾病(如SCZ)的病因发生的分子基础具有巨大潜力,并可能为个性化医疗铺平道路。神经元和胶质共培养系统的发展使得体外研究scz相关的神经生物学内表型,包括OL功能障碍和髓鞘形成,具有前所未有的结构效度。尽管如此,在对患者来源的细胞系统进行后续功能分析之前,对患者进行有意义的分层仍然是一个重要的瓶颈。在这里,为了提高离体疾病建模的预测能力,我们建议使用hiPSC技术来关注基因组和/或表型特征和神经生物学细胞系统分层的患者亚组代表。因此,本综述将概述OPCs/OLs参与SCZ的证据,包括其提出的功能,包括髓鞘形成和轴突支持,对基于hipsc的细胞疾病建模的影响以及患者选择的潜在策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Studying and modulating schizophrenia-associated dysfunctions of oligodendrocytes with patient-specific cell systems.

Studying and modulating schizophrenia-associated dysfunctions of oligodendrocytes with patient-specific cell systems.

Studying and modulating schizophrenia-associated dysfunctions of oligodendrocytes with patient-specific cell systems.

Studying and modulating schizophrenia-associated dysfunctions of oligodendrocytes with patient-specific cell systems.

Postmortem studies in patients with schizophrenia (SCZ) have revealed deficits in myelination, abnormalities in myelin gene expression and altered numbers of oligodendrocytes in the brain. However, gaining mechanistic insight into oligodendrocyte (OL) dysfunction and its contribution to SCZ has been challenging because of technical hurdles. The advent of individual patient-derived human-induced pluripotent stem cells (hiPSCs), combined with the generation of in principle any neuronal and glial cell type, including OLs and oligodendrocyte precursor cells (OPCs), holds great potential for understanding the molecular basis of the aetiopathogenesis of genetically complex psychiatric diseases such as SCZ and could pave the way towards personalized medicine. The development of neuronal and glial co-culture systems now appears to enable the in vitro study of SCZ-relevant neurobiological endophenotypes, including OL dysfunction and myelination, with unprecedented construct validity. Nonetheless, the meaningful stratification of patients before the subsequent functional analyses of patient-derived cell systems still represents an important bottleneck. Here, to improve the predictive power of ex vivo disease modelling we propose using hiPSC technology to focus on representatives of patient subgroups stratified for genomic and/or phenomic features and neurobiological cell systems. Therefore, this review will outline the evidence for the involvement of OPCs/OLs in SCZ in the context of their proposed functions, including myelination and axon support, the implications for hiPSC-based cellular disease modelling and potential strategies for patient selection.

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来源期刊
NPJ Schizophrenia
NPJ Schizophrenia Medicine-Psychiatry and Mental Health
CiteScore
6.30
自引率
0.00%
发文量
44
审稿时长
15 weeks
期刊介绍: npj Schizophrenia is an international, peer-reviewed journal that aims to publish high-quality original papers and review articles relevant to all aspects of schizophrenia and psychosis, from molecular and basic research through environmental or social research, to translational and treatment-related topics. npj Schizophrenia publishes papers on the broad psychosis spectrum including affective psychosis, bipolar disorder, the at-risk mental state, psychotic symptoms, and overlap between psychotic and other disorders.
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