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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Polymeric micelles based on poly(ethylene oxide) and alpha-carbon substituted poly(epsilon-caprolactone): An in vitro study on the effect of core forming block on polymeric micellar stability, biocompatibility, and immunogenicity
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Polymeric micelles based on poly(ethylene oxide) and alpha-carbon substituted poly(epsilon-caprolactone): An in vitro study on the effect of core forming block on polymeric micellar stability, biocompatibility, and immunogenicity

机译:基于聚环氧乙烷和α-碳取代的聚ε-己内酯的聚合物胶束:核心形成嵌段对聚合物胶束稳定性,生物相容性和免疫原性影响的体外研究

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A series of block copolymers based on methoxy poly(ethylene oxide)-block-poly(epsilon-caprolactone) (PEO-b-PCL), PEO-b-PCL bearing side groups of benzyl carboxylate (PEO-b-PBCL), or free carboxyl (PEO-b-PCCL) on the PCL backbone with increasing degrees of polymerization of the PCL backbone were synthesized. Prepared block copolymers assembled to polymeric micelles by co-solvent evaporation. The physical stability of prepared micelles was assessed by measuring their tendency toward aggregation over time using dynamic light scattering (DLS). The resistance of micelles against dissociation in the presence of a micelle destabilizing agent, i.e., sodium dodecyl sulfate (SDS), was also investigated using DLS. The rate of micellar core degradation was determined using H-1 NMR for polymer molecular weight measurement upon incubation of micelles in PBS (pH = 7.4) at 37 degrees C followed by dialysis of the remaining polymer at different time intervals. The effect of pendent group chemistry in the micellar core on the adsorption of serum proteins to micellar structure was then evaluated using Bradford Protein assay kit. Finally, the effect of micellar core structure on the induction of bone marrow derived dendritic cell (BMDC) maturation and secretion of IL-12 was studied as a measure of micellar immunogenicity. The results showed micelle structures from polymers with higher degree of polymerization in the hydrophobic block and/or those with more hydrophobic substituents on the core-forming block, to be more stable. This was reflected by a decreased tendency for micellar aggregation, reduced dissociation of micelles in the presence of SDS, and diminished core degradation. All micelles were shown to have insignificant adsorption of serum protein suggesting that the hydrophilic PEO shell provided sufficient protection of the core. However, the protein adsorption increased with increase in the hydrophobicity and molecular weight of the core-forming block. Irrespective of the micellar core structure, all tested micelles were found to be non-immunogenic in BMDCs. (c) 2015 Elsevier B.V. All rights reserved.
机译:基于甲氧基聚(环氧乙烷)-嵌段-聚(ε-己内酯)(PEO-b-PCL),带有羧酸苄酯侧基的PEO-b-PCL(PEO-b-PBCL)的一系列嵌段共聚物,或随着PCL骨架的聚合度的增加,在PCL骨架上的游离羧基(PEO-b-PCCL)被合成。通过共溶剂蒸发将制备的嵌段共聚物组装成聚合物胶束。使用动态光散射(DLS)通过测量胶束随时间的聚集趋势来评估所制备胶束的物理稳定性。还使用DLS研究了在胶束去稳定剂即十二烷基硫酸钠(SDS)存在下胶束对解离的抗性。胶束核心降解速率是使用H-1 NMR测定的,通过将胶束在PBS(pH = 7.4)中于37℃下孵育,然后在不同的时间间隔透析剩余的聚合物,来测量聚合物的分子量。然后使用Bradford Protein检测试剂盒评估了胶束核心侧基化学对血清蛋白向胶束结构吸附的影响。最后,研究了胶束核心结构对诱导骨髓源性树突状细胞(BMDC)成熟和分泌IL-12的影响,以此作为胶束免疫原性的量度。结果表明,疏水嵌段中具有较高聚合度的聚合物和/或芯形成嵌段中具有更多疏水取代基的聚合物的胶束结构更加稳定。这通过胶束聚集趋势的降低,在SDS存在下胶束的解离减少以及核心降解减少来反映。显示所有胶束对血清蛋白的吸附均微不足道,这表明亲水性PEO壳层可为核心提供足够的保护。然而,随着核心形成嵌段的疏水性和分子量的增加,蛋白质吸附增加。无论胶束核心结构如何,都发现所有测试的胶束在BMDC中都是非免疫原性的。 (c)2015 Elsevier B.V.保留所有权利。

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