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A Versatile Polymer Micelle Drug Delivery System for Encapsulation and In Vivo Stabilization of Hydrophobic Anticancer Drugs

机译:用于疏水性抗癌药物封装和体内稳定的多功能聚合物胶束药物递送系统

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摘要

Chemotherapeutic drugs are widely used for the treatment of cancer; however, use of these drugs is often associated with patient toxicity and poor tumor delivery. Micellar drug carriers offer a promising approach for formulating and achieving improved delivery of hydrophobic chemotherapeutic drugs; however, conventional micelles do not have long-term stability in complex biological environments such as plasma. To address this problem, a novel triblock copolymer has been developed to encapsulate several different hydrophobic drugs into stable polymer micelles. These micelles have been engineered to be stable at low concentrations even in complex biological fluids, and to release cargo in response to low pH environments, such as in the tumor microenvironment or in tumor cell endosomes. The particle sizes of drugs encapsulated ranged between 30–80 nm, with no relationship to the hydrophobicity of the drug. Stabilization of the micelles below the critical micelle concentration was demonstrated using a pH-reversible crosslinking mechanism, with proof-of-concept demonstrated in both in vitro and in vivo models. Described herein is polymer micelle drug delivery system that enables encapsulation and stabilization of a wide variety of chemotherapeutic drugs in a single platform.
机译:化学治疗药物被广泛用于治疗癌症。然而,使用这些药物通常与患者毒性和不良的肿瘤传递有关。胶束药物载体为配制和实现疏水性化疗药物的改善递送提供了一种有前途的方法。然而,常规的胶束在复杂的生物环境(例如血浆)中没有长期稳定性。为了解决这个问题,已经开发了一种新颖的三嵌段共聚物以将几种不同的疏水性药物包封到稳定的聚合物胶束中。这些胶束经过精心设计,即使在复杂的生物流体中也能在低浓度下保持稳定,并响应低pH环境(例如在肿瘤微环境或肿瘤细胞内体中)释放货物。包封的药物的粒径在30-80 nm之间,与药物的疏水性无关。使用pH可逆交联机理证明胶束稳定在临界胶束浓度以下,并在体外和体内模型中均证实了概念验证。本文描述的是聚合物胶束药物递送系统,其能够在单个平台中封装和稳定多种化疗药物。

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