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首页> 外文期刊>Pharmaceutical development and technology >The effect of self-assembly conditions on the size of di- and tri-block copolymer micelles: solicitation from response surface methodology
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The effect of self-assembly conditions on the size of di- and tri-block copolymer micelles: solicitation from response surface methodology

机译:自组装条件对二嵌段和三嵌段共聚物胶束尺寸的影响:响应面法的研究

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The objective of this study was to assess the application of Response Surface Methodology in defining the effect of self-assembly condition on the average diameter of polymeric micelles. Di- and tri-block copolymers of poly(ethylene oxide)-b-poly(alpha-benzylcarboxylate-epsilon-caprolactone) (PEO-PBCL) and PBCL-b-poly(ethylene glycol)-b-PBCL (PBCL-PEG-PBCL) were synthesized through ring opening polymerization of alpha-benzyl-epsilon-carboxylate using MePEO or dihydroxy PEG as initiator, respectively. Polymeric micelles were formed through solubilization of block copolymers in acetone followed by drop-wise addition of this solution to water. Polymer concentration was changed and the intensity mean diameter of self-assembled structures was measured by dynamic light scattering. The experimental data were fitted to a mathematical model. The experimental conditions leading to the production of micelles of certain size (30, 60 or 90nm for tri-block and 30nm for di-block copolymers) was predicted. A good match between predicted and experimental data was observed. The results showed it would be possible to obtain micelles of certain size using block copolymers of different molecular weights or obtain micelles of different size at a given block copolymer molecular weight, by manipulating the polymer concentration. These observations show reproducible micelles of defined average diameter can be prepared by co-solvent evaporation by controlling the used polymer concentration.
机译:这项研究的目的是评估响应表面方法在定义自组装条件对聚合物胶束平均直径的影响中的应用。聚(环氧乙烷)-b-聚(α-苄基羧酸酯-ε-己内酯)(PEO-PBCL)和PBCL-b-聚(乙二醇)-b-PBCL(PBCL-PEG-分别使用MePEO或二羟基PEG作为引发剂通过α-苄基-ε-羧酸盐的开环聚合反应合成PBCL)。通过将嵌段共聚物溶解在丙酮中,然后将该溶液滴加到水中来形成聚合物胶束。改变聚合物浓度,并通过动态光散射测量自组装结构的强度平均直径。实验数据拟合了数学模型。预测了导致一定大小胶束产生的实验条件(三嵌段共聚物为30、60或90nm,二嵌段共聚物为30nm)。观察到的预测和实验数据之间的良好匹配。结果表明,可以通过控制聚合物浓度,使用不同分子量的嵌段共聚物获得一定尺寸的胶束,或在给定的嵌段共聚物分子量下获得不同尺寸的胶束。这些观察结果表明,可以通过控制使用的聚合物浓度,通过共溶剂蒸发来制备具有确定的平均直径的可再现胶束。

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