肿瘤坏死因子在神经可塑性、神经发生和酒精使用障碍中的作用。

Ignatius Alvarez Cooper, Kate Beecher, Fatemeh Chehrehasa, Arnauld Belmer, Selena E Bartlett
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摘要

酒精使用障碍是一种普遍存在的有害疾病,涉及神经可塑性和神经发生的变化。酒精会激活神经免疫系统,改变大脑的炎症状态。肿瘤坏死因子(TNF)是一种特征明显的神经免疫信号,但它与酒精使用障碍的关系尚不清楚。在这篇综述中,我们将讨论 TNF 对神经可塑性和神经发生的不同影响。急性乙醇暴露会减少 TNF 的释放,而慢性酒精摄入通常会增加 TNF 的水平。有证据表明,TNF能增强兴奋性传递,在戒酒过程中促进焦虑,并参与啮齿类动物的药物使用。在人类戒酒过程中,对酒精的渴望与 TNF 之间存在明显联系。虽然抗炎疗法对逆转酒精暴露后的神经源缺失有一定疗效,但没有证据表明 TNF 在酒精对神经发生的影响中发挥了重要作用。总之,由于人们对 TNF 对突触传递和神经发生的不同影响知之甚少,因此确定 TNF 在酒精使用障碍中的作用变得复杂。虽然 TNF 可能与戒酒期间有关,但神经免疫系统可能通过更多的炎性细胞因子来改变神经可塑性和神经发生。要了解 TNF 在酒精使用障碍中的个体相关性,还需要更全面地了解 TNF 在大脑中的作用。
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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Tumour Necrosis Factor in Neuroplasticity, Neurogenesis and Alcohol Use Disorder.

Alcohol use disorder is a pervasive and detrimental condition that involves changes in neuroplasticity and neurogenesis. Alcohol activates the neuroimmune system and alters the inflammatory status of the brain. Tumour necrosis factor (TNF) is a well characterised neuroimmune signal but its involvement in alcohol use disorder is unknown. In this review, we discuss the variable findings of TNF's effect on neuroplasticity and neurogenesis. Acute ethanol exposure reduces TNF release while chronic alcohol intake generally increases TNF levels. Evidence suggests TNF potentiates excitatory transmission, promotes anxiety during alcohol withdrawal and is involved in drug use in rodents. An association between craving for alcohol and TNF is apparent during withdrawal in humans. While anti-inflammatory therapies show efficacy in reversing neurogenic deficit after alcohol exposure, there is no evidence for TNF's essential involvement in alcohol's effect on neurogenesis. Overall, defining TNF's role in alcohol use disorder is complicated by poor understanding of its variable effects on synaptic transmission and neurogenesis. While TNF may be of relevance during withdrawal, the neuroimmune system likely acts through a larger group of inflammatory cytokines to alter neuroplasticity and neurogenesis. Understanding the individual relevance of TNF in alcohol use disorder awaits a more comprehensive understanding of TNF's effects within the brain.

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