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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >PLA-Based Triblock Copolymer Micelles Exhibiting Dual Acidic pH/Reduction Responses at Dual Core and Core/Corona Interface Locations
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PLA-Based Triblock Copolymer Micelles Exhibiting Dual Acidic pH/Reduction Responses at Dual Core and Core/Corona Interface Locations

机译:基于PLA的三嵌段共聚物胶束,在双核和核心/电晕接口位置具有双酸性pH /还原响应

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摘要

Polylactide (PLA)-based amphiphilic block copolymers and their nanoassemblies designed with stimuli-responsive degradation (SRD) hold great potential as promising candidates for tumor-targeting drug delivery. However, most of the smart PLA-based nanoassemblies are designed to respond to a single stimulus (typically reduction or acidic pH). Herein, a new strategy is reported to synthesize PLA-based block copolymer micelles exhibiting dual SRD at dual locations (DL-DSRD). The strategy utilizes a combination of ring opening polymerization, controlled radical polymerization, and facile coupling reactions to synthesize an ABA-type PLA-based triblock copolymer with a hydrophilic polymethacrylate (A) and PLA (B) blocks. Incorporation of an acidic pH-responsive ketal linkage in the center of PLA block and reductionresponsive disulfide linkages at PLA/hydrophilic polymethacrylate blocks ensure the formation of smart nanoassemblies featured with ketal linkages in the PLA cores and disulfide linkages at core/corona interfaces, thus attaining DL-DSRD. Such dual acidic pH/reduction-responses at dual locations lead to not only shedding of coronas at interfaces but also destabilization of cores, resulting in the synergistic and accelerated release of encapsulated model drugs, compared with the single stimulus systems. These results, along with lower cytotoxicity, suggest that DL-DSRD strategy can offer versatility in the development of tumor-targeting drug delivery nanocarriers.
机译:基于聚酰胺(PLA)的两亲嵌段共聚物及其具有刺激响应性降解(SRD)的纳米结合物具有巨大的潜力,作为肿瘤靶向药物递送的有希望的候选者。然而,大多数基于智能PLA的纳米组织设计用于响应单个刺激(通常还原或酸性pH)。在此,据报道,在双位置(DL-DSRD)下,据报道,据报道了一种在呈现双SRD的基于PLA的嵌段共聚物胶束。该策略利用环开口聚合,受控自由基聚合和容易偶联反应的组合,以合成与亲水的聚甲基丙烯酸甲酸酯(A)和PLA(B)嵌段合成ABA型PLA基三嵌段共聚物。掺入PLA /亲水性聚甲基丙烯酸酯嵌段的PLA块中心和ReaveRexedsive二硫键中的酸性pH-响应缩酮键,确保在PLA核心中的缩核键和核心/电晕界面的二硫键中形成智能纳米结合物的形成,从而实现DL-DSRD。与单一刺激系统相比,双地区的这种双酸性pH /还原响应在界面处而且导致核心的破坏,导致封装模型药物的协同和加速释放。这些结果以及细胞毒性降低,表明DL-DSRD策略可以在肿瘤靶向药物递送纳米载体的发育中提供多功能性。

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