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Synthèse et caractérisation de copolymères amphiphiles à base de poly(acide lactique) et de poly(éthylène glycol) pour la délivrance de principes actifs

机译:基于聚乳酸和聚乙二醇的两亲共聚物的合成与表征

摘要

The objective of this work was to synthesize and characterize amphiphilic copolymers based on poly(ethylene glycol) (PEG) and poly(lactic acid) (PLA) intended for drug delivery applications. The polymers were chosen regarding to their biocompatibility and bioresorbability. Different architectures of amphiphilic copolymers were prepared, and their behavior in aqueous media, as well as their abilities to encapsulate drugs were studied. First, a graft copolymer was synthesized through copolymerization of a functional monomer, monopropargylated glycolide, with L-lactide to yield a functionalized polyester backbone. The latter was then grafted with different densities of hydrophilic branches of PEG. Then, a brush-like triblock copolymer was synthesized through ROP and ATRP. To this end, chain ends of a telechelic block of PLA were modified to yield a macroinitiator able to initiate oligo(ethylene glycol) methacrylate polymerization with variable substitution degrees. Self-assembly and drug loading studies revealed that architecture and hydrophobic/hydrophilic balance played a major role on the nature of the formed objects and on their encapsulation potential. Finally, to modulate and increase the efficacy of encapsulated drugs, functionalization strategies were realized. This is illustrated by the linking of a fluorescent model molecule on a triblock brush-like copolymer and, in a collaboration project, the linking of an immunostimulant peptide on an amphiphilic diblock system. Comparison with other formulations revealed that the conjugate allowed modulating and reinforcing the drug's efficacy.
机译:这项工作的目的是合成和表征基于聚(乙二醇)(PEG)和聚(乳酸)(PLA)的两亲共聚物,用于药物输送应用。选择聚合物时要考虑它们的生物相容性和生物吸收性。制备了不同结构的两亲共聚物,并研究了它们在水性介质中的行为以及其封装药物的能力。首先,通过功能性单体单炔丙基化乙交酯与L-丙交酯的共聚反应合成接枝共聚物,以生成功能化的聚酯主链。然后将后者接枝有不同密度的PEG亲水支链。然后,通过ROP和ATRP合成刷状三嵌段共聚物。为此,修饰了PLA的远螯嵌段的链端,以产生能够引发具有可变取代度的低聚(乙二醇)甲基丙烯酸甲酯聚合的大分子引发剂。自组装和载药研究表明,结构和疏水/亲水平衡对所形成物体的性质及其封装潜力起着重要作用。最后,为了调节和提高封装药物的功效,实现了功能化策略。通过三嵌段刷状共聚物上的荧光模型分子的连接以及在一个合作项目中两亲二嵌段系统上的免疫刺激肽的连接来说明这一点。与其他制剂的比较表明,该缀合物可以调节和增强药物的功效。

著录项

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    Coumes Fanny;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 fr
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