Guangxi Colleges and Universities Key Laboratory of Applied Chemistry Technology and Resource Development, School of Chemistry and Chemical Engineering, Guangxi University, 530004, Nanning, China.
Guangxi Institute of Chinese Traditional Medical & Pharmaceutical Science and Guangxi Key Laboratory of Traditional Chinese Medicine Quality Standards, Nanning, China.
Chemistry. 2024 Aug 22;30(47):e202401589. doi: 10.1002/chem.202401589. Epub 2024 Jul 30.
Chemotherapy is one of the most employed strategies in clinical treatment of cancer. However, reducing medication adverse effects and improving the biological activity remains a significant issue for chemotherapy. We developed a pH and Ca-responsive pillar[5]arene-based supramolecular nanodrug delivery system (NDDS) WP5⊃EV@DOX to address the aforementioned challenges. The formation of this NDDS began with the spontaneous formation of supramolecular nanodrug carrier WP5⊃EV in water from PEG-modified pillar[5]arene and the bipyridilium salt derivative EV through simple host-guest interaction. Then the antitumor drug doxorubicin DOX was efficiently loaded with a high encapsulation rate of 84.6 %. Cytotoxicity results indicated that the constructed nanoplatform not only reduced DOX toxicity and side effects on normal cell (293T), but also significantly enhanced the antitumor activity on cancer cell (HepG2). Moreover, in vivo experiments showed that WP5⊃EV@DOX had a longer half-life and higher bioavailability in the blood of mice compared to the nake drug DOX, with increases to 212 % and 179 %, respectively. Therefore, WP5⊃EV@DOX has great potential in tumor therapy and provides a new idea for host-guest drug delivery system.
化疗是癌症临床治疗中最常用的策略之一。然而,减少药物的不良反应并提高生物活性仍然是化疗的一个重大问题。我们开发了一种 pH 和 Ca 响应的柱[5]芳烃基超分子纳米药物递送系统 (NDDS) WP5⊃EV@DOX,以解决上述挑战。该 NDDS 的形成始于通过简单的主客体相互作用,将聚乙二醇修饰的柱[5]芳烃和双吡啶盐衍生物 EV 自组装成超分子纳米药物载体 WP5⊃EV,然后将抗癌药物阿霉素 DOX 高效装载,包封率高达 84.6%。细胞毒性结果表明,所构建的纳米平台不仅降低了 DOX 对正常细胞(293T)的毒性和副作用,而且显著增强了对癌细胞(HepG2)的抗肿瘤活性。此外,体内实验表明,与游离药物 DOX 相比,WP5⊃EV@DOX 在小鼠血液中的半衰期更长,生物利用度更高,分别增加了 212%和 179%。因此,WP5⊃EV@DOX 在肿瘤治疗中具有很大的潜力,为主体客体药物递送系统提供了新的思路。