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脑细胞色素P450:探索神经健康与代谢调节

Brain Cytochrome P450: Navigating Neurological Health and Metabolic Regulation.

作者信息

Durairaj Pradeepraj, Liu Zixiang Leonardo

机构信息

Department of Chemical and Biomedical Engineering, Florida State University, Tallahassee, FL 32310, USA.

Department of Chemical and Biomedical Engineering, Florida A&M University, Tallahassee, FL 32310, USA.

出版信息

J Xenobiot. 2025 Mar 14;15(2):44. doi: 10.3390/jox15020044.

Abstract

Human cytochrome P450 (CYP) enzymes in the brain represent a crucial frontier in neuroscience, with far-reaching implications for drug detoxification, cellular metabolism, and the progression of neurodegenerative diseases. The brain's complex architecture, composed of interconnected cell types and receptors, drives unique neuronal signaling pathways, modulates enzyme functions, and leads to distinct CYP gene expression and regulation patterns compared to the liver. Despite their relatively low levels of expression, brain CYPs exert significant influence on drug responses, neurotoxin susceptibility, behavior, and neurological disease risk. These enzymes are essential for maintaining brain homeostasis, mediating cholesterol turnover, and synthesizing and metabolizing neurochemicals, neurosteroids, and neurotransmitters. Moreover, they are key participants in oxidative stress responses, neuroprotection, and the regulation of inflammation. In addition to their roles in metabolizing psychotropic drugs, substances of abuse, and endogenous compounds, brain CYPs impact drug efficacy, safety, and resistance, underscoring their importance beyond traditional drug metabolism. Their involvement in critical physiological processes also links them to neuroprotection, with significant implications for the onset and progression of neurodegenerative diseases. Understanding the roles of cerebral CYP enzymes is vital for advancing neuroprotective strategies, personalizing treatments for brain disorders, and developing CNS-targeting therapeutics. This review explores the emerging roles of CYP enzymes, particularly those within the CYP1-3 and CYP46 families, highlighting their functional diversity and the pathological consequences of their dysregulation on neurological health. It also examines the potential of cerebral CYP-based biomarkers to improve the diagnosis and treatment of neurodegenerative disorders, offering new avenues for therapeutic innovation.

摘要

大脑中的人类细胞色素P450(CYP)酶是神经科学中的一个关键前沿领域,对药物解毒、细胞代谢以及神经退行性疾病的进展具有深远影响。大脑由相互连接的细胞类型和受体组成的复杂结构,驱动着独特的神经元信号通路,调节酶的功能,并导致与肝脏相比不同的CYP基因表达和调控模式。尽管大脑CYP的表达水平相对较低,但它们对药物反应、神经毒素易感性、行为和神经疾病风险具有重大影响。这些酶对于维持大脑稳态、介导胆固醇周转以及合成和代谢神经化学物质、神经甾体和神经递质至关重要。此外,它们是氧化应激反应、神经保护和炎症调节的关键参与者。除了在代谢精神药物、滥用物质和内源性化合物方面的作用外,大脑CYP还影响药物疗效、安全性和耐药性,凸显了它们在传统药物代谢之外的重要性。它们参与关键生理过程也将它们与神经保护联系起来,对神经退行性疾病的发生和进展具有重大影响。了解脑CYP酶的作用对于推进神经保护策略、个性化脑部疾病治疗以及开发中枢神经系统靶向治疗药物至关重要。本综述探讨了CYP酶的新出现的作用,特别是CYP1 - 3和CYP46家族中的那些酶,强调了它们的功能多样性以及它们失调对神经健康的病理后果。它还研究了基于脑CYP的生物标志物改善神经退行性疾病诊断和治疗的潜力,为治疗创新提供了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b827/11932283/f3381e75e145/jox-15-00044-g001.jpg

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