神经药理学
精密医学
神经科学
个性化医疗
医学
限制
仿形(计算机编程)
生物标志物
神经递质系统
转化研究
药物开发
转化医学
鉴定(生物学)
生物信息学
药物发现
计算生物学
药品
桥接(联网)
神经递质
计算机科学
生物标志物发现
标识
DOI:10.2174/011570159x478420260805095437
摘要
Neuropsychiatric and neurodegenerative disorders show wide variability in treatment response, thus limiting the effectiveness of traditional symptom-based neuropharmacology. Precision medicine offers a more targeted approach by combining pharmacogenomics, multi-omics data, and artificial intelligence to guide individualized therapy. It's a rapidly evolving field with demonstrable promise, but its broader clinical integration still depends on stronger biomarker validation, reproducibility across populations, equitable implementation, regulatory maturity, and prospective clinical utility studies. Genetic markers could predict drug metabolism, while multi-omics profiling enables the identification of disease-specific molecular patterns; in parallel, AI tools improve treatment prediction, integrate complex datasets, and accelerate drug discovery. Although some of these approaches are already used in clinical practice, most remain under development. This review presents a multi-layered approach that includes neurotransmitter pathways, pharmacogenomics, multi-omics analysis, artificial intelligence, and translational science, providing a more holistic insight and bridging the gap between synaptic mechanisms and personalized treatments.
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