质量(理念)
计算机科学
人工智能
鉴定(生物学)
风险分析(工程)
控制(管理)
深度学习
数据科学
中医药
机器学习
实证研究
钥匙(锁)
人工智能应用
管理科学
大数据
设计质量
作者
Meiyu Li,Junqing Zhu,Xiaonan L. Liu,Mengyue Wu,Kun Dong,Xiaoyan Li,Peng Gao,Zhihui Jiang
标识
DOI:10.3389/fphar.2025.1687681
摘要
The clinical safety and therapeutic performance of Traditional Chinese Medicine (TCM) are closely tied to its quality. However, with the rapid expansion of the TCM industry, conventional quality control approaches based on empirical observations and single-metabolite quantification have become increasingly inadequate for addressing the complex and variable requirements of quality assessment. In recent years, artificial intelligence (AI)-with strong capabilities in data processing and pattern recognition-has emerged as a promising tool for establishing predictive models to efficiently handle heterogeneous, multi-source datasets (such as spectra, chromatograms, images, and textual information). This enables intelligent prediction of quality indicators and anomaly detection, and offering novel strategies for modernizing TCM quality control. This review provides a comprehensive synthesis of commonly applied machine learning and deep learning algorithms, systematically outlining recent advances in AI-enabled sensing applications such as image recognition, odor analysis, authenticity verification, origin tracing, quality grading, and storage-age determination. It further emphasizes the integration of AI with multi-omics and bioinformatics approaches for efficacy-oriented evaluation and safety assessment, including identification of Q-markers, elucidation of pharmacodynamic mechanisms, and predictive modeling of both endogenous and exogenous toxic metabolites. It also identifies key challenges and technical bottlenecks, and outlines priorities for building scalable, regulation-aware, data-driven quality-control systems that support the sustainable, high-quality development of the TCM industry.
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