Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences & Peking Union Medical College, No. 151 Malianwa North Road, Haidian District, Beijing 100193, China.
Key Laboratory of Bioactive Substances and Resources Utilization of Chinese Herbal Medicine, Ministry of Education, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing 100093, China.
Molecules. 2022 Dec 21;28(1):69. doi: 10.3390/molecules28010069.
Oligoethylene glycol dendron (G2) has been used in drug delivery due to its unique dendritic structure and excellent properties. In order to investigate the effects of lipophilic chains on drug delivery, the amphiphilic hybrid compound G2-C18 is synthesized, and celastrol (CSL) is selected to prepare "core-shell" structured CSL-G2-C18 nanoparticles (NPs) via the antisolvent precipitation method. Meanwhile, CSL-G2 NPs are prepared as the control. The two NPs show similar particle sizes and polydispersity indexes, while their morphologies exhibit dramatic differences. CSL-G2 NPs are solid spherical particles, while G2-C18 NPs are vesicles. The two NPs present ideal stability and similar release tendencies. The in vitro toxicity results show that the cell inhibition effect of CSL-loaded NPs is significantly enhanced when compared with free CSL, and the antitumor effect of CSL-G2-C18 NPs is stronger than that of CSL-G2 NPs. The IC value of CSL-G2 NPs and CSL-G2-C18 NPs is enhanced about 2.8-fold and 5-fold when compared with free CSL, respectively. The above results show that lipophilic chain-linking dendritic hybrid nanocarriers promote antitumor activity by affecting the morphology of NPs, which may aid in the selection of carrier designs.
聚乙二醇树枝状大分子(G2)因其独特的树枝状结构和优异的性能而被用于药物传递。为了研究亲脂链对药物传递的影响,合成了两亲性杂化化合物 G2-C18,并通过抗溶剂沉淀法选择了雷公藤红素(CSL)制备了“核壳”结构的 CSL-G2-C18 纳米颗粒(NPs)。同时,制备了 CSL-G2 NPs 作为对照。这两种 NPs 具有相似的粒径和多分散指数,但形态差异显著。CSL-G2 NPs 为实心球形颗粒,而 G2-C18 NPs 为囊泡。两种 NPs 均表现出理想的稳定性和相似的释放趋势。体外毒性结果表明,与游离 CSL 相比,载药 NPs 的细胞抑制作用显著增强,CSL-G2-C18 NPs 的抗肿瘤效果强于 CSL-G2 NPs。与游离 CSL 相比,CSL-G2 NPs 和 CSL-G2-C18 NPs 的 IC 值分别提高了约 2.8 倍和 5 倍。上述结果表明,亲脂链连接树枝状杂化纳米载体通过影响 NPs 的形态来促进抗肿瘤活性,这可能有助于选择载体设计。