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首页> 外文期刊>Journal of Macromolecular Science. Pure and Applied Chemistry >Design and biocatalytic synthesis of pluronics-based nanomicellar self-assembly systems for drug encapsulation applications
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Design and biocatalytic synthesis of pluronics-based nanomicellar self-assembly systems for drug encapsulation applications

机译:基于普卢尼克斯的纳米胶束自组装系统的设计和生物催化合成,用于药物封装应用

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摘要

Nano medicine is an emerging branch of pharmaceuticals, which is gaining considerable attention mainly due to its new and effective way of drug delivery. Various modes of drug delivery are still in their adolescent stage, polymer-based drug delivery system is one among these. In order to develop a novel and biocompatible nano-carrier for drug delivery through a "green" and, environmentally benign approach, herein, we report the design, synthesis and characterization of four novel pluronic-based amphiphilic copolymers. Candida antartica lipase was used to catalyze polymerization in the presence of molecular sieves under solventless conditions. The resulting copolymers were also investigated for their supramolecular organization and drug encapsulation capacity for biomedical applications.
机译:纳米药物是药物的新兴分支,由于其新颖而有效的药物递送方式而受到广泛关注。各种形式的药物输送仍处于青春期,基于聚合物的药物输送系统就是其中之一。为了开发通过“绿色”且环境友好的方法用于药物递送的新颖且生物相容的纳米载体,在本文中,我们报道了四种新颖的基于普卢尼克的两亲共聚物的设计,合成和表征。在无溶剂条件下,在分子筛存在下,南极假丝酵母脂肪酶用于催化聚合反应。还研究了所得共聚物在生物医学应用中的超分子组织和药物封装能力。

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