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Polymeric Micelles of Biodegradable Diblock Copolymers: Enhanced Encapsulation of Hydrophobic Drugs

机译:可生物降解二嵌段共聚物的聚合物胶束:增强疏水药物的包封

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摘要

Polymeric micelles are potentially efficient in encapsulating and performing the controlled release of various hydrophobic drug molecules. Understanding the fundamental physicochemical properties behind drug–polymer systems in terms of interaction strength and compatibility, drug partition coefficient (preferential solubilization), micelle size, morphology, etc., encourages the formulation of polymeric nanocarriers with enhanced drug encapsulating capacity, prolonged circulation time, and stability in the human body. In this review, we systematically address some open issues which are considered to be obstacles inhibiting the commercial availability of polymer-based therapeutics, such as the enhancement of encapsulation capacity by finding better drug–polymer compatibility, the drug-release kinetics and mechanisms under chemical and mechanical conditions simulating to physiological conditions, and the role of preparation methods and solvents on the overall performance of micelles.
机译:聚合物胶束在封装和执行各种疏水药物分子的控释和进行的潜在有效。理解药物聚合物系统背后的基本物理化学特性,在相互作用和相容性方面,药物分配系数(优先溶解),胶束尺寸,形态等,促进聚合物纳米载体的配制,具有增强的药物包封能力,延长循环时间,和人体中的稳定性。在本文中,我们系统地解决了一些开放问题,被认为是抑制基于聚合物的治疗剂的商业可用性的障碍,例如通过找到更好的药物 - 聚合物相容性,药物释放动力学和化学机制来增强封装能力的障碍。模拟生理条件的机械条件,以及制备方法和溶剂对胶束整体性能的作用。

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