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Recent advances in stimuli-responsive degradable block copolymer micelles: synthesis and controlled drug delivery applications

机译:刺激响应性可降解嵌段共聚物胶束的最新进展:合成和药物控制应用

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摘要

(Bio)degradation in response to external stimuli (stimuli-responsive degradation, SRD) is a desired property in constructing novel nanostructured materials. For polymer-based multifunctional drug delivery applications, the degradation enables fast and controlled release of encapsulated therapeutic drugs from delivery vehicles in targeted cells. It also ensures the clearance of the empty device after drugs are delivered to the body. This review summarizes recent development of various strategies to the design and synthesis of self-assembled micellar aggregates based on novel amphiphilic block copolymers having different numbers of stimuli-responsive cleavable elements at various locations. These cleavable linkages including disulfide, acid-labile, and photo-cleavable linkages are incorporated into micelles, and then are cleaved in response to cellular triggers such as reductive reaction, light, and low acid. The well-designed SRD micelles have been explored as controlled/enhanced delivery vehicles of drugs and genes. For future design and development of effective stimuli-responsive degradable micelles toward tumor-targeting delivery applications in vivo, a high degree of control over degradation for tunable release of encapsulated anticancer drugs as well as bioconjugation for active tumor-targeting is required.
机译:响应外部刺激的(生物)降解(刺激响应性降解,SRD)是构建新型纳米结构材料的理想特性。对于基于聚合物的多功能药物递送应用,降解可从目标细胞中的递送载体中快速且受控地释放封装的治疗药物。它还可以确保将药物输送到体内后清空设备。这篇综述总结了基于新颖的两亲性嵌段共聚物的设计和合成自组装胶束聚集体的各种策略的最新进展,该两亲性嵌段共聚物在不同位置具有不同数量的刺激响应性可裂解元素。这些可裂解的键包括二硫键,对酸不稳定的键和可光裂解的键,被并入胶束中,然后响应细胞触发因素如还原反应,光和低酸而被裂解。设计良好的SRD胶束已被用作药物和基因的受控/增强递送载体。为了在体内针对肿瘤靶向递送应用的有效刺激响应可降解胶束的未来设计和开发中,需要高度控制降解的程度以可调节释放包封的抗癌药以及生物缀合以有效靶向肿瘤。

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  • 来源
    《Chemical Communications》 |2012年第61期|p.7542-7552|共11页
  • 作者单位

    Department of Chemistry and Biochemistry and Center for Nanoscience Research (CENR), Concordia University,7141 Sherbrooke St. W., Montreal, Quebec, Canada H4B 1R6;

    Department of Chemistry and Biochemistry and Center for Nanoscience Research (CENR), Concordia University,7141 Sherbrooke St. W., Montreal, Quebec, Canada H4B 1R6;

    Department of Chemistry and Biochemistry and Center for Nanoscience Research (CENR), Concordia University,7141 Sherbrooke St. W., Montreal, Quebec, Canada H4B 1R6;

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  • 入库时间 2022-08-17 13:20:57

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