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用于可控和位点特异性药物递送的智能合成聚合物纳米载体。

Smart synthetic polymer nanocarriers for controlled and site-specific drug delivery.

作者信息

Balaure Paul Catalin, Grumezescu Alexandru Mihai

机构信息

University "Politehnica" of Bucharest, Faculty of Applied Chemistry and Material Science, "Costin Nenitzescu" Department of Organic Chemistry, G. Polizu Street 1-7, 011061, Bucharest, Romania.

出版信息

Curr Top Med Chem. 2015;15(15):1424-90. doi: 10.2174/1568026615666150414115852.

Abstract

The article is an up-to-date review of the state-of-the art in the challenging field of smart synthetic polymer nanocarriers, presenting the most relevant achievements in the area, with a special emphasis on the outstanding potential of these nanovehicles to be used as multifunctional devices capable to deliver their cargo to a specific targeted area in the human body and to release it in a well controlled fashion. Stimuli-responsive nano drug delivery systems are presented according to a classification that takes into account the endogenous or exogenous nature of the stimuli. Each category is amply illustrated by carefully selected examples of the most impressive achievements. The endogenous stimuli category is fully described by presentation of pH, redox potential, and enzyme-responsive nanocarriers. From the category of exogenous stimuli-responsive nanomaterials, we focused our attention on temperature, light and magnetic sensitive nanocarriers.

摘要

本文是对智能合成聚合物纳米载体这一具有挑战性领域的最新技术综述,介绍了该领域最相关的成果,特别强调了这些纳米载体作为多功能装置的巨大潜力,它们能够将所载药物输送到人体的特定目标区域,并以可控方式释放。根据刺激的内源性或外源性对刺激响应纳米药物递送系统进行了分类。每个类别都通过精心挑选的最令人印象深刻的成果实例进行了充分说明。通过介绍pH值、氧化还原电位和酶响应纳米载体,对内源性刺激类别进行了全面描述。在外源性刺激响应纳米材料类别中,我们将注意力集中在温度、光和磁敏感纳米载体上。

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