Lu Zenghui, Yuan Yue, Han Qiang, Wang Yu, Liang Qionglin
Institute of Traditional Chinese Medicine-X, State Administration of Traditional Chinese Medicine Third-Level Laboratory of Traditional Chinese Medicine Chemistry, Modern Research Center for Traditional Chinese Medicine, Tsinghua University, Beijing, 100084, China.
Beijing Key Laboratory of TCM Pharmacology, Xiyuan Hospital, China Academy of Chinese Medical Sciences, Beijing, 100730, China.
Chin Med. 2024 Jun 9;19(1):80. doi: 10.1186/s13020-024-00956-4.
Benefiting from the complex system composed of various constituents, medicament portions, species, and places of origin, traditional Chinese medicine (TCM) possesses numerous customizable and adaptable efficacies in clinical practice guided by its theories. However, these unique features are also present challenges in areas such as quality control, screening active ingredients, studying cell and organ pharmacology, and characterizing the compatibility between different Chinese medicines. Drawing inspiration from the holistic concept, an integrated strategy and pattern more aligned with TCM research emerges, necessitating the integration of novel technology into TCM modernization. The microfluidic chip serves as a powerful platform for integrating technologies in chemistry, biology, and biophysics. Microfluidics has given rise to innovative patterns like lab-on-a-chip and organoids-on-a-chip, effectively challenging the conventional research paradigms of TCM. This review provides a systematic summary of the nature and advanced utilization of microfluidic chips in TCM, focusing on quality control, active ingredient screening/separation, pharmaceutical analysis, and pharmacological/toxicological assays. Drawing on these remarkable references, the challenges, opportunities, and future trends of microfluidic chips in TCM are also comprehensively discussed, providing valuable insights into the development of TCM.
得益于由各种成分、药物部位、种类和产地组成的复杂体系,中药在其理论指导的临床实践中具有众多可定制和适应性强的功效。然而,这些独特特性在质量控制、筛选活性成分、研究细胞和器官药理学以及表征不同中药之间的配伍性等方面也带来了挑战。从整体观念中获得启发,一种更符合中药研究的综合策略和模式应运而生,这就需要将新技术融入中药现代化进程。微流控芯片是整合化学、生物学和生物物理学技术的强大平台。微流控技术催生了诸如芯片实验室和芯片类器官等创新模式,有效地挑战了中药传统的研究范式。本综述系统总结了微流控芯片在中药中的性质和先进应用,重点关注质量控制、活性成分筛选/分离、药物分析以及药理/毒理学检测。借鉴这些显著的参考文献,还全面讨论了微流控芯片在中药领域面临的挑战、机遇和未来趋势,为中药的发展提供了有价值的见解。