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首页> 外文期刊>Biomacromolecules >Y-Shaped mPEG-PLA Cabazitaxel Conjugates: Well-Controlled Synthesis by Organocatalytic Approach and Self-Assembly into Interface Drug-Loaded Core-Corona Nanoparticles
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Y-Shaped mPEG-PLA Cabazitaxel Conjugates: Well-Controlled Synthesis by Organocatalytic Approach and Self-Assembly into Interface Drug-Loaded Core-Corona Nanoparticles

机译:Y形mPEG-PLA紫杉醇共轭物:通过有机催化方法和自组装成界面药物的核心电晕纳米粒子自组装,可控合成良好。

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摘要

A well-defined polyethylene glycol) methyl ether-b-poly(lactic acid) copolymer (mPEG-PLA) featuring a new, Y-shaped, architecture with a hydroxyl functional group between the two blocks has been prepared and thoroughly characterized. The functional copolymer was then readily coupled to diglycolyl-cabazitaxel. The resulting copolymer conjugates assembled into stable and monodisperse nanoparticles (NPs) in aqueous suspension. The architecture of the copolymer conjugate is shown to impact the spatial distribution of the drug within the nanoparticles. With the Y-shaped architecture, cabazitaxel was found localized at the interface of the hydrophobic PLA core and the hydrophilic mPEG corona of the NPs, as substantiated by variable temperature NMR analysis of the nanoparticles in D2O. Preliminary in vitro release studies reveal dependence on the architecture of the copolymer conjugate. This new approach offers promising perspectives to finely tune the position of the active ingredient in polymeric nanoparticles.
机译:制备并充分表征了一种轮廓分明的聚乙二醇)甲基醚-b-聚乳酸共聚物(mPEG-PLA),该共聚物具有新型的Y形结构,在两个嵌段之间具有羟基官能团。然后将功能性共聚物容易地偶联至二甘醇酰基-卡巴他赛。所得共聚物共轭物在水性悬浮液中组装成稳定且单分散的纳米颗粒(NPs)。共聚物共轭物的结构显示出影响药物在纳米颗粒内的空间分布。通过Y形结构,发现卡巴他赛位于疏水性PLA核和NPs的亲水性mPEG电晕的界面,这通过对D2O中纳米粒子的可变温度NMR分析证实。初步的体外释放研究表明对共聚物结合物结构的依赖性。这种新方法为微调活性成分在聚合物纳米颗粒中的位置提供了广阔的前景。

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