Experimental Centre, Shandong University of Traditional Chinese Medicine, Jinan 250355, P. R. China.
Innovative Institute of Chinese Medicine and Pharmacy, Shandong University of Traditional Chinese Medicine, Jinan 250355, P. R. China.
Biomater Sci. 2024 Mar 26;12(7):1662-1692. doi: 10.1039/d3bm01451g.
Traditional Chinese medicine (TCM) is a combination of raw herbs and herbal extracts with a plethora of documented beneficial bioactivities, which has unique advantages in anti-tumor therapy, and many of its major bioactive molecules have been identified in recent years due to advances in chemical separation and structural analysis. However, the major chemical classes of plant-derived bioactive compounds frequently possess chemical properties, including poor water solubility, stability, and bioavailability, that limit their therapeutic application. Alternatively, natural small molecules (NSMs) containing these components possess modifiable groups, multiple action sites, hydrophobic side chains, and a rigid skeleton with self-assembly properties that can be exploited to construct self-assembled nanoparticles with therapeutic effects superior to their individual constituents. For instance, the construction of a self-assembled nanodrug delivery system can effectively overcome the strong hydrophobicity and poor stability of NSMs, thereby greatly improving their bioavailability and enhancing their anti-tumor efficacy. This review summarizes the self-assembly methods, mechanisms, and applications of a variety of NSMs, including terpenoids, flavonoids, alkaloids, polyphenols, and saponins, providing a theoretical basis for the subsequent research on NSMs and the development of SANDDS.
中药(TCM)是由草药和草药提取物组成的,具有丰富的文献记载的有益生物活性,在抗肿瘤治疗方面具有独特的优势,近年来由于化学分离和结构分析的进步,其许多主要生物活性分子已经被确定。然而,植物来源的生物活性化合物的主要化学类群经常具有化学性质,包括差的水溶性、稳定性和生物利用度,限制了它们的治疗应用。相比之下,含有这些成分的天然小分子(NSMs)具有可修饰的基团、多个作用位点、疏水性侧链和刚性骨架,具有自组装特性,可以用来构建具有优于其单个成分的治疗效果的自组装纳米颗粒。例如,构建自组装纳米药物递送系统可以有效地克服 NSMs 的强疏水性和较差的稳定性,从而大大提高其生物利用度并增强其抗肿瘤功效。本综述总结了萜类、黄酮类、生物碱类、多酚类和皂苷类等多种 NSMs 的自组装方法、机制和应用,为后续 NSMs 的研究和 SANDDS 的发展提供了理论基础。