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电休克治疗的神经生物学机制:脑刺激的分子视角

Neurobiological Mechanisms of Electroconvulsive Therapy: Molecular Perspectives of Brain Stimulation.

作者信息

Fetahovic Ermin, Janjic Vladimir, Muric Maja, Jovicic Nemanja, Radmanovic Branimir, Rosic Gvozden, Selakovic Dragica, Filipovic Milos, Muric Nemanja

机构信息

Department of Communication Skills, Ethics, and Psychology, Faculty of Medical Sciences, University of Kragujevac, 34000 Kragujevac, Serbia.

Department of Psychiatry, Faculty of Medical Sciences, University of Kragujevac, 34000 Kragujevac, Serbia.

出版信息

Int J Mol Sci. 2025 Jun 19;26(12):5905. doi: 10.3390/ijms26125905.

Abstract

Electroconvulsive therapy (ECT) remains one of the most effective interventions for treatment-resistant psychiatric disorders, particularly major depressive disorder and bipolar disorder. Despite extensive clinical and preclinical investigations, the precise neurobiological mechanisms underlying ECT's therapeutic effects are not fully understood. This review explores the molecular and cellular pathways involved in ECT, emphasizing its impact on neurotrophic signaling, oxidative stress, apoptosis, and neuroplasticity. Evidence suggests that ECT modulates brain-derived neurotrophic factor and other neurotrophic factors, promoting synaptic plasticity and neuronal survival. Additionally, ECT influences the hypothalamic-pituitary-adrenal axis, reduces neuroinflammation, and alters neurotransmitter systems, contributing to its antidepressant effects. Recent findings also highlight the role of mitochondrial function and oxidative stress regulation in ECT-induced neural adaptation. By synthesizing current molecular insights, this review provides a comprehensive perspective on the neurobiological mechanisms of ECT, offering potential directions for future research and therapeutic advancements in brain stimulation.

摘要

电休克疗法(ECT)仍然是治疗难治性精神疾病最有效的干预措施之一,尤其是重度抑郁症和双相情感障碍。尽管进行了广泛的临床和临床前研究,但ECT治疗效果背后的确切神经生物学机制尚未完全了解。本综述探讨了ECT涉及的分子和细胞途径,强调了其对神经营养信号、氧化应激、细胞凋亡和神经可塑性的影响。有证据表明,ECT可调节脑源性神经营养因子和其他神经营养因子,促进突触可塑性和神经元存活。此外,ECT影响下丘脑-垂体-肾上腺轴,减轻神经炎症,并改变神经递质系统,从而产生抗抑郁作用。最近的研究结果还强调了线粒体功能和氧化应激调节在ECT诱导的神经适应中的作用。通过综合当前的分子见解,本综述提供了关于ECT神经生物学机制的全面观点,为未来脑刺激研究和治疗进展提供了潜在方向。

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