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Acid-Labile Core Cross-Linked Micelles for pH-Triggered Release of Antitumor Drugs

机译:酸不稳定的核心交联胶束,用于pH引发的抗肿瘤药物释放

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摘要

Micelles of a model amphiphilic block copolymer, poly(hydroxyethyl acrylate)-block-poly(n-butyl acrylate) (PHEA-b-PBA), synthesized via the RAFT polymerization were cross-linked by copolymerization of a degradable cross-linker from the living RAFT-end groups of PBA chains, yielding a cross-linked core without affecting significantly the original micelle size. The cross-linker incorporation into the micelles was evidenced via physicochemical analysis of the copolymer unimers formed upon acidic cleavage of the cross-linked micelles. High doxorubicin loading capacities (60 wt %) were obtained. Hydrolysis of less than half of the cross-links in the core was found to be sufficient to release doxorubicin faster at acidic pH compared to neutral pH. The system represents the first example of core-cross-linked micelles that can be destabilized (potentially both above and below CMC) by the pH-dependent cleavage of the cross-links and the subsequent polarity change in the core to enable the release of hydrophobic drugs entrapped inside the micelle.
机译:通过RAFT聚合合成的两亲性嵌段共聚物模型胶束(聚丙烯酸丙烯酸羟乙酯-嵌段-聚丙烯酸正丁酯)(PHEA-b-PBA)的胶束通过可降解交联剂的共聚反应而交联。活性的PBA链的RAFT端基,产生交联的核心,而不会明显影响原始胶束的大小。通过对在交联的胶束进行酸裂解后形成的共聚物单体进行物理化学分析,可以证明交联剂结合到胶束中。获得了高的阿霉素负载量(60 wt%)。与中性pH相比,在酸性pH下水解少于核心中一半的交联足以释放阿霉素。该系统代表了核心交联胶束的第一个例子,该交联胶束可通过pH依赖的交联裂解以及随后在核心中发生极性变化以使疏水性释放而不稳定(可能在CMC之上和之下)残留在胶束中的药物。

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