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Release of quercetin from micellar nanoparticles with saturated and unsaturated core forming polyesters - A combined computational and experimental study

机译:槲皮素从具有饱和和不饱和核形成聚酯的胶束纳米颗粒中释放-联合计算和实验研究

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摘要

Computational and experimental studies were combined to obtain new insight into the widely reported anomalous release mechanism of hydrophobic drug (quercetin) from polymeric micellar nanoparticles. Saturated and unsaturated amphiphilic triblock copolymers from monomethoxy polyethylene glycol (mPEG), poly(butylene adipate) (PBA) and poly(cis-2-butene adipate) (PCBA) (mPEG-PBA-mPEG and mPEG-PCBA-mPEG) were utilized as model polymers to specify the contribution of polymer-micelle degradation and polymer-drug interactions on the observed differences in the release rates by applicable computational investigation and experimental evaluations. Monitoring the size of the micelles through the releasing process together with hydrolytic degradation studies of the core forming polymers proved that the contribution of polymer hydrolysis and micelle degradation on the observed differences in the release rates during the release time window was minimal. The compatibility between quercetin and the core forming polymer is another factor influencing the drug encapsulation and the relative release rate and it was therefore investigated theoretically (using density functional theory (DFT) at B3LYP/6-311~(++)G level of theory) and experimentally (FT-IR imaging). The drug-polymer interactions in the core were shown to be much more important than the polymer and/or micelle swelling-dissociation-degradation processes under the studied conditions.
机译:计算和实验研究相结合,以获得对聚合物胶束纳米颗粒中疏水药物(槲皮素)异常释放机理的广泛报道的新见识。使用了由单甲氧基聚乙二醇(mPEG),聚己二酸丁二酯(PBA)和聚顺丁二酸二丁烯酯(PCBA)(mPEG-PBA-mPEG和mPEG-PCBA-mPEG)制成的饱和和不饱和两亲三嵌段共聚物作为模型聚合物,可通过适用的计算研究和实验评估来说明聚合物胶束降解和聚合物-药物相互作用对释放速率差异的贡献。通过释放过程监测胶束的大小以及对形成芯的聚合物的水解降解研究表明,在释放时间窗口内,聚合物水解和胶束降解对释放速率差异的贡献最小。槲皮素与形成核心的聚合物之间的相容性是影响药物包封和相对释放速率的另一个因素,因此进行了理论研究(使用B3LYP / 6-311〜(++)G理论水平的密度泛函理论(DFT) )和实验(FT-IR成像)。在所研究的条件下,核心中的药物-聚合物相互作用显示出比聚合物和/或胶束溶胀-解离-降解过程重要得多。

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