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中枢神经系统丝氨酸的研究进展与挑战:物理化学、生理学和药理学。

Advances and challenges in serine in the central nervous system: physicochemistry, physiology, and pharmacology.

机构信息

National Institute for Nutrition and Health, Chinese Center for Disease Control and Prevention, 27 Nanwei Road, Beijing, 100050, China.

出版信息

Metab Brain Dis. 2024 Dec;39(8):1637-1647. doi: 10.1007/s11011-024-01418-4. Epub 2024 Aug 26.

Abstract

Neurological disorders are the primary cause of human disability and mortality globally, however, current medications slightly alleviate some symptoms of degenerative diseases. Serine is an important amino acid for the brain function and involved in a variety of biosynthetic pathways and signal transduction processes. The imbalance of serine metabolism is associated with neurodegeneration, including neuroinflammation, oxidative stress and apoptosis. Altered activities of serine metabolizing enzymes and accumulation of serine metabolites affect the survival and function of nerve cells. Abnormal serine levels are observed in animal models with neurological diseases, but not all human studies, therefore, the maintenance of serine homeostasis is a potentially therapeutic strategy for neurological disorders. To date, physiological and pharmacological roles of serine in neurological diseases have not been systemically recapitulated, and the association between serine and neurological diseases is controversial. In this review, we summarize physicochemical properties of serine, biological processes of serine in the brain (source, biotransformation, and transport), and the application of serine in neurological diseases including Alzheimer's disease, schizophrenia, and depression. Here, we highlight physicochemistry, physiology, pharmacology, and therapeutic potentials of serine in the prevention and treatment of neurological dysfunction. Our work provides valuable hints for future investigation that will lead to a comprehensive understanding of serine and its metabolism in cellular physiology and pharmacology. Although broad by necessity, the review helps researchers to understand great potentials of serine in the prevention and treatment of neurological dysfunction.

摘要

神经系统疾病是全球范围内导致人类残疾和死亡的主要原因,但目前的药物只能稍微缓解一些退行性疾病的症状。丝氨酸是大脑功能的重要氨基酸,参与多种生物合成途径和信号转导过程。丝氨酸代谢失衡与神经退行性变有关,包括神经炎症、氧化应激和细胞凋亡。丝氨酸代谢酶活性的改变和丝氨酸代谢物的积累会影响神经细胞的存活和功能。在患有神经疾病的动物模型中观察到异常的丝氨酸水平,但并非所有人类研究都如此,因此,维持丝氨酸的体内平衡是治疗神经疾病的一种潜在策略。迄今为止,丝氨酸在神经疾病中的生理和药理作用尚未得到系统总结,丝氨酸与神经疾病之间的关联存在争议。在这篇综述中,我们总结了丝氨酸的物理化学性质、丝氨酸在大脑中的生物过程(来源、生物转化和运输),以及丝氨酸在包括阿尔茨海默病、精神分裂症和抑郁症在内的神经疾病中的应用。我们强调了丝氨酸在预防和治疗神经功能障碍方面的物理化学、生理学、药理学和治疗潜力。我们的工作为未来的研究提供了有价值的启示,有助于全面了解丝氨酸及其在细胞生理学和药理学中的代谢。尽管有必要广泛地讨论,但综述有助于研究人员了解丝氨酸在预防和治疗神经功能障碍方面的巨大潜力。

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