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Photo Irradiation-Induced Core Crosslinked Poly(ethylene glycol)-block-poly(aspartic acid) Micelles: Optimization of Block Copolymer Synthesis and Characterization of Core Crosslinked Micelles

机译:光辐照诱导芯交联的聚(乙二醇)-嵌段-聚(天冬氨酸)胶束:嵌段共聚物的合成优化和芯交联的胶束的表征

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摘要

We used photo irradiation to design core crosslinked polymeric micelles whose only significant physico-chemical change was in their physico-chemical stability, which helps elucidate poly(ethylene glycol) (PEG)-related immunogenicity. Synthetic routes and compositions of PEG-b-poly(aspartic acid) block copolymers were optimized with the control of n-alkyl chain length and photo-sensitive chalcone moieties. The conjugation ratio between n-alkyl chain and the chalcone moieties was controlled, and upon the mild photo irradiation of polymeric micelles, permanent crosslink proceeded in the micelle cores. In the optimized condition, the core crosslinked (CCL) micelles exhibited no dissociation while the non-CCL micelles exhibited dissociation. These results indicate that the photo-crosslinking reactions in the inner core were successful. A gel-permeation chromatography (GPC) measurement revealed a difference between the micellar-formation stability of CCL micelles and that of the non-CCL micelles. GPC experiments revealed that the CCL micelles were more stable than the non-CCL micelles. Our research also revealed that photo-crosslinking reactions did not change the core property for drug encapsulation. In conclusion, the prepared CCL micelles exhibited the same diameter, the same formula, and the same inner-core properties for drug encapsulation as did the non-CCL micelles. Moreover, the CCL micelles exhibited non-dissociable micelle formation, while the non-CCL micelles exhibited dissociation into single block copolymers.
机译:我们使用光辐射设计了核心交联的聚合物胶束,其唯一的显着物理化学变化在于其物理化学稳定性,这有助于阐明与聚乙二醇(PEG)相关的免疫原性。 PEG-b-聚(天冬氨酸)嵌段共聚物的合成路线和组成是通过控制正烷基链长和光敏查尔酮部分来优化的。控制正烷基链与查耳酮部分之间的共轭比,并在聚合物胶束的轻度光照射下,在胶束芯中进行永久性交联。在优化的条件下,核心交联(CCL)胶束不显示解离,而非CCL胶束显示不解离。这些结果表明内芯中的光交联反应是成功的。凝胶渗透色谱(GPC)测量显示,CCL胶束的胶束形成稳定性与非CCL胶束的胶束形成稳定性之间存在差异。 GPC实验表明,CCL胶束比非CCL胶束更稳定。我们的研究还显示,光交联反应不会改变药物封装的核心特性。总之,所制备的CCL胶束与非CCL胶束表现出相同的直径,相同的配方和相同的药物封装内芯特性。此外,CCL胶束表现出不可离解的胶束形成,而非CCL胶束表现出离解成单嵌段共聚物。

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