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胶质细胞源性神经营养因子与精神分裂症谱系障碍:一项范围综述

Glial Derived Neurotrophic Factor and Schizophrenia Spectrum Disorders: A Scoping Review.

作者信息

Ricci Valerio, De Berardis Domenico, Martinotti Giovanni, Maina Giuseppe

机构信息

Ospedale San Luigi Gonzaga, Università degli Studi di Torino, Italia; Regione Gonzole, 10, Orbassano 10043, Torino, Italia.

Dipartimento di Salute Mentale, Servizio Psichiatrico di Diagnosi e Cura, Ospedale "Giuseppe Mazzini", Azienda Sanitaria Locale 4, 64100 Teramo, Italia.

出版信息

Curr Neuropharmacol. 2025;23(5):564-578. doi: 10.2174/011570159X340124241205095729.

Abstract

BACKGROUND

Psychotic disorders, characterized by altered brain function, significantly impair reality perception. The neurodevelopmental hypothesis suggests these disorders originate from early brain development disruptions. Glial-derived neurotrophic factor (GDNF) is crucial for neuronal survival and differentiation, especially in dopaminergic neurons, and shows promise in neurodegenerative and neuropsychiatric conditions.

OBJECTIVES

This scoping review aims to examine the role of GDNF in schizophrenia spectrum disorders and substance-induced psychoses, integrating knowledge on the neurobiological mechanisms and therapeutic potential of GDNF.

METHODS

A comprehensive literature search was conducted using PubMed and Scopus databases from January 2001 onwards. Data extraction focused on GDNF levels, cognitive function, antipsychotic treatment effects, and genetic studies.

RESULTS

The review included 25 studies (18 human, 7 animal). While some studies demonstrated inconsistent results regarding GDNF serum levels in schizophrenic patients, the majority reported correlations between GDNF levels and cognitive functions. Animal studies underscored GDNF's role in stress response, drug-induced neurotoxicity, and dopamine signaling abnormalities. Genetic studies revealed potential associations between GDNF gene polymorphisms and schizophrenia susceptibility, though findings were mixed.

DISCUSSION

GDNF plays a significant role in cognitive functions and neuroprotection in schizophrenia. The variability in study results underscores the complexity of GDNF's involvement. The therapeutic potential of GDNF in psychotic disorders remains unclear, necessitating further research to clarify its efficacy and safety.

CONCLUSION

This review emphasizes the importance of integrated biomarker strategies, gene therapy approaches, and precision medicine in advancing the understanding and treatment of psychotic disorders.

摘要

背景

精神障碍以脑功能改变为特征,严重损害现实感知。神经发育假说认为这些障碍源于早期脑发育中断。胶质细胞源性神经营养因子(GDNF)对神经元存活和分化至关重要,尤其是在多巴胺能神经元中,并且在神经退行性和神经精神疾病中显示出前景。

目的

本范围综述旨在研究GDNF在精神分裂症谱系障碍和物质所致精神病中的作用,整合关于GDNF的神经生物学机制和治疗潜力的知识。

方法

从2001年1月起使用PubMed和Scopus数据库进行全面的文献检索。数据提取集中在GDNF水平、认知功能、抗精神病药物治疗效果和基因研究。

结果

该综述纳入了25项研究(18项人类研究,7项动物研究)。虽然一些研究关于精神分裂症患者GDNF血清水平的结果不一致,但大多数研究报告了GDNF水平与认知功能之间的相关性。动物研究强调了GDNF在应激反应、药物诱导的神经毒性和多巴胺信号异常中的作用。基因研究揭示了GDNF基因多态性与精神分裂症易感性之间的潜在关联,尽管结果不一。

讨论

GDNF在精神分裂症的认知功能和神经保护中起重要作用。研究结果的变异性凸显了GDNF参与的复杂性。GDNF在精神障碍中的治疗潜力仍不清楚,需要进一步研究以阐明其疗效和安全性。

结论

本综述强调了综合生物标志物策略、基因治疗方法和精准医学在推进对精神障碍的理解和治疗方面的重要性。

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