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Green Tea Catechin-Based Complex Micelles Combined with Doxorubicin to Overcome Cardiotoxicity and Multidrug Resistance

机译:基于绿茶儿茶素的复杂胶束与阿霉素相结合可克服心脏毒性和多药耐药性

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摘要

Chemotherapy for cancer treatment has been demonstrated to cause some side effects on healthy tissues and multidrug resistance of the tumor cells, which greatly limits therapeutic efficacy. To address these limitations and achieve better therapeutic efficacy, combination therapy based on nanoparticle platforms provides a promising approach through delivering different agents simultaneously to the same destination with synergistic effect. In this study, a novel green tea catechin-based polyion complex (PIC) micelle loaded with doxorubicin (DOX) and (-)-Epigallocatechin-3-O-gallate (EGCG) was constructed through electrostatic interaction and phenylboronic acid-catechol interaction between poly(ethylene glycol)-block-poly(lysine-co-lysine-phenylboronic acid) (PEG-PLys/PBA) and EGCG. DOX was co-loaded in the PIC micelles through π-π stacking interaction with EGCG. The phenylboronic acid-catechol interaction endowed the PIC micelles with high stability under physiological condition. Moreover, acid cleavability of phenylboronic acid-catechol interaction in the micelle core has significant benefits for delivering EGCG and DOX to same destination with synergistic effects. In addition, benefiting from the oxygen free radicals scavenging activity of EGCG, combination therapy with EGCG and DOX in the micelle core could protect the cardiomyocytes from DOX-mediated cardiotoxicity according to the histopathologic analysis of hearts. Attributed to modulation of EGCG on P-glycoprotein (P-gp) activity, this kind of PIC micelles could effectively reverse multidrug resistance of cancer cells. These results suggested that EGCG based PIC micelles could effectively overcome DOX induced cardiotoxicity and multidrug resistance.
机译:已经证明用于癌症治疗的化学疗法对健康组织和肿瘤细胞的多药耐药性产生一些副作用,这极大地限制了治疗功效。为了解决这些局限性并获得更好的治疗效果,基于纳米颗粒平台的联合疗法通过将不同的药物同时递送至同一目的地并产生协同效应,提供了一种有前途的方法。在这项研究中,通过静电相互作用和苯硼酸-儿茶酚之间的相互作用,构建了一种新型的基于儿茶素的基于茶儿茶素的聚离子复合物(PIC)胶束,其中装有阿霉素(DOX)和(-)-表没食子儿茶素-3-O-没食子酸酯(EGCG)聚(乙二醇)-嵌段-聚(赖氨酸-共赖氨酸-苯基硼酸)(PEG-PLys / PBA)和EGCG。通过与EGCG的π-π堆积相互作用,将DOX共装载在PIC胶束中。苯硼酸-邻苯二酚的相互作用使PIC胶束在生理条件下具有很高的稳定性。此外,胶束核心中苯硼酸-邻苯二酚相互作用的酸可裂解性对于将EGCG和DOX传递至相同目的地具有协同作用具有显着优势。此外,根据心脏的组织病理学分析,得益于EGCG的氧自由基清除活性,EGCG和DOX在胶束核心中的联合治疗可保护心肌细胞免受DOX介导的心脏毒性作用。归因于EGCG对P-糖蛋白(P-gp)活性的调节,这种PIC胶束可有效逆转癌细胞的多药耐药性。这些结果表明,基于EGCG的PIC胶束可以有效克服DOX诱导的心脏毒性和多药耐药性。

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