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Development of polymeric micelles for targeting intractable cancers

机译:高分子胶束靶向难治性癌症的开发

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摘要

In relation to recent advances in nanobiotechnologies, cancer‐targeted therapy using nano‐scaled drug carriers (nanocarriers) has been attracting enormous attention with success in clinical studies. Polymeric micelles, core–shell‐type nanoparticles formed through the self‐assembly of block copolymers, are one of the most promising nanocarrier, because their critical features such as size, stability, and drug incorporation efficiency and release rate can be modulated by designing the constituent block copolymers. The utilities of polymeric micelles have been reported not only in experimental tumor models in mice but also in clinical studies. In this article, we aim to explain the rationale of designing polymeric micelles for targeting intractable cancers such as pancreatic cancer, glioblastoma, and metastases. Also, we review recent progress in clinical studies on polymeric micelles incorporating anticancer drugs. In addition, we introduce the next generation of polymeric micelles as the platform integrated with smart functionalities such as targetability, environmental sensitivity, and imaging properties. Thus, polymeric micelles can realize safe and effective cancer therapy, and offer tailor‐made medicines for individual patients.
机译:关于纳米生物技术的最新进展,使用纳米级药物载体(纳米载体)的针对癌症的疗法在临床研究中获得了极大的关注。高分子胶束是通过嵌段共聚物的自组装形成的核-壳型纳米颗粒,是最有前途的纳米载体之一,因为它们的关键特征(例如大小,稳定性,药物掺入效率和释放速率)可以通过设计组成嵌段共聚物。不仅在小鼠的实验肿瘤模型中而且在临床研究中都已经报道了聚合物胶束的效用。在本文中,我们旨在解释设计用于靶向难治性癌症(例如胰腺癌,胶质母细胞瘤和转移瘤)的高分子胶束的原理。此外,我们回顾了结合抗癌药物的聚合物胶束的临床研究的最新进展。此外,我们还引入了下一代聚合胶束作为与智能功能(如可定位性,环境敏感性和成像特性)集成的平台。因此,高分子胶束可以实现安全有效的癌症治疗,并为个别患者提供量身定制的药物。

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