Xie Yunyu, Shen Xuelian, Xu Funeng, Liang Xiaoxia
Natural Medicine Research Center, College of Veterinary Medicine, Sichuan Agricultural University, Chengdu, People's Republic of China.
Key Laboratory of Agricultural Bioinformatics, Ministry of Education, Sichuan Agricultural University, Chengdu, People's Republic of China.
Phytochem Anal. 2024 Jun 3. doi: 10.1002/pca.3381.
Traditional Chinese medicine (TCM) has been used for thousands of years in China, characterizing with novel pharmacological mechanisms, low toxicity, and limited side effects. However, the application of TCM active ingredients is often hindered by their physical and chemical properties, including poor solubility, low bioavailability, short half-life, toxic side effects within therapeutic doses, and instability in biological environments. Consequently, an increasing number of researchers are directing their attention towards the discovery of nano-delivery systems for TCM to overcome these clinical challenges.
This review aims to provide the latest knowledge and results concerning the studies on the nano-delivery systems for the active ingredients from TCM.
Recent literature relating to nano-delivery systems for the active ingredients from TCM is summarized to provide a fundamental understanding of how such systems can enhance the application of phytochemicals.
The nano-delivery systems of six types of TCM monomers are summarized and categorized based on the skeletal structure of the natural compounds. These categories include terpenoids, flavonoids, alkaloids, quinones, polyphenols, and polysaccharides. The paper analyzes the characteristics, types, materials used, and the efficacy achieved by TCM-nano systems. Additionally, the advantages and disadvantages of nano-drug delivery systems for TCM are summarized in this paper.
Nano-delivery systems represent a promising approach to overcoming clinical obstacles stemming from the physical and chemical properties of TCM active ingredients, thereby enhancing their clinical efficacy.
中药在中国已使用了数千年,具有新颖的药理机制、低毒性和有限的副作用。然而,中药活性成分的应用常常受到其物理和化学性质的阻碍,包括溶解度差、生物利用度低、半衰期短、治疗剂量内的毒副作用以及在生物环境中的不稳定性。因此,越来越多的研究人员将注意力转向发现用于中药的纳米递送系统,以克服这些临床挑战。
本综述旨在提供有关中药活性成分纳米递送系统研究的最新知识和成果。
总结了与中药活性成分纳米递送系统相关的近期文献,以对这些系统如何增强植物化学物质的应用有基本的了解。
根据天然化合物的骨架结构,对六种类型的中药单体的纳米递送系统进行了总结和分类。这些类别包括萜类、黄酮类、生物碱类、醌类、多酚类和多糖类。本文分析了中药纳米系统的特点、类型、所用材料以及所取得的功效。此外,本文还总结了中药纳米药物递送系统的优缺点。
纳米递送系统是克服因中药活性成分的物理和化学性质而产生的临床障碍、从而提高其临床疗效的一种有前景的方法。