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嵌段共聚物前药:合成、自组装及其在癌症治疗中的应用。

Block copolymer prodrugs: Synthesis, self-assembly, and applications for cancer therapy.

机构信息

CAS Key Laboratory of Soft Matter Chemistry, Department of Polymer Science and Engineering, University of Science and Technology of China, Hefei, China.

Neurocritical Care Unit, The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei, China.

出版信息

Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2020 Jan;12(1):e1585. doi: 10.1002/wnan.1585. Epub 2019 Aug 26.

Abstract

Block copolymer prodrugs (BCPs) have emerged as one of the most promising anticancer drug delivery strategies, which can self-assemble into nanoparticles with optimal physicochemical properties including sizes, morphologies, surface properties, and integration of multifunction for improved in vivo applications. Moreover, the utility of stimuli-responsive linkages to conjugate drugs onto the polymer backbones can achieve efficient and targeting drug release. Several BCP micellar delivery systems have been pushed ahead into the clinical trials, which showed great promising potentials for cancer therapy. In recent years, various novel and more efficient BCP systems have been developed for better in vivo performance. In this focus article, we focus on the recent advances of BCPs including the synthesis, self-assembly, and applications for cancer therapy. The synthetic methods are first introduced, and the self-assembly of BCPs for in vivo anticancer applications is discussed along the line of varying endogenous stimuli-responsive linkages including amide or ester bonds, pH, reduction, and oxidation-responsive linkages. Finally, conclusions along with the brief future perspectives are presented. This article is categorized under: Therapeutic Approaches and Drug Discovery > Nanomedicine for Oncologic Disease Nanotechnology Approaches to Biology > Nanoscale Systems in Biology.

摘要

嵌段共聚物前药(BCPs)已成为最有前途的抗癌药物输送策略之一,它们可以自组装成具有最佳物理化学性质的纳米粒子,包括大小、形态、表面性质和多功能集成,以改善体内应用。此外,利用刺激响应性键将药物连接到聚合物主链上,可以实现高效和靶向的药物释放。几种 BCP 胶束递药系统已推进到临床试验阶段,为癌症治疗展示了巨大的潜力。近年来,已经开发出各种新型和更有效的 BCP 系统,以提高体内性能。在这篇重点文章中,我们关注 BCP 的最新进展,包括合成、自组装和癌症治疗应用。首先介绍了合成方法,并沿着酰胺或酯键、pH 值、还原和氧化响应性键等不同内源性刺激响应性键的变化讨论了 BCP 用于体内抗癌应用的自组装。最后提出了结论和简要的未来展望。本文属于以下类别: 治疗方法和药物发现 > 肿瘤疾病的纳米医学 纳米技术在生物学中的应用 > 生物学中的纳米级系统

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