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Single-Emulsion P(HB-HV) Microsphere Preparation Tuned by Copolymer Molar Mass and Additive Interaction

机译:共聚物摩尔质量与加成相互作用调节单乳液P(HB-HV)微球制备

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Herein, we describe the production of poly(hydroxybutyrate-co-hydroxyvalerate) [P(HB-HV)]-based microspheres containing coumarin-6 (C6) or pyrene (Py) fluorophores as additives and models for hydrophobic and hydrophilic drug encapsulation. Their photophysical and morphological properties, as well as encapsulation efficiencies, are studied as this work aims to describe the influence of additive hydrophobicity/hydrophilicity on microparticle formation. These properties were studied by scanning electron microscopy, fluorescence confocal laser scanning microscopy (FCLSM), and steady-state fluorescence spectroscopy. The results show that the surfactant concentration, polymer molar mass, emulsification stirring rate, and the presence of the fluorophore and its nature are determinants of the P(HB-HV) microsphere properties. Also, encapsulation efficiency is shown to be governed by synergic effects of these parameters on the formation of microspheres. Moreover, size distribution is proved to be strongly influenced by the surfactant poly(vinyl alcohol) content. FCLSM showed that the fluorophores were efficiently encapsulated in P(HB-HV) microspheres at distinct distributions within the copolymer matrix. Surprisingly, nanospheres were observed in the microsphere surface, suggesting that microspheres are formed from nanosphere coalescence.
机译:在这里,我们描述了含有香豆素6(C6)或pyr(Py)荧光团作为添加剂和疏水和亲水性药物封装模型的聚羟基丁酸酯-共羟基戊酸酯[P(HB-HV)]基微球的生产。研究了它们的光物理和形态学性质以及包封效率,因为这项工作旨在描述添加剂疏水性/亲水性对微粒形成的影响。通过扫描电子显微镜,荧光共聚焦激光扫描显微镜(FCLSM)和稳态荧光光谱研究了这些性质。结果表明,表面活性剂浓度,聚合物摩尔质量,乳化搅拌速率,荧光团的存在及其性质是P(HB-HV)微球性能的决定因素。同样,包封效率显示受这些参数对微球形成的协同作用支配。此外,事实证明,尺寸分布受到表面活性剂聚乙烯醇含量的强烈影响。 FCLSM表明,荧光团被有效地封装在P(HB-HV)微球中,在共聚物基质中的分布不同。出乎意料的是,在微球表面观察到纳米球,表明微球是由纳米球聚结形成的。

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