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Analysis of structure and dynamics of superfine polyhydroxybutyrate fibers for targeted drug delivery

机译:针对靶向药物递送的超细多羟丁丁纤维的结构与动力学分析

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Creation of polymer matrix systems for targeted drug delivery into a living organism is a challenging problem of modern treatment of various diseases and injuries. Poly-3- hydroxybutyrate (PHB) is commonly used for development of therapeutic systems. The aim of this article is to examine the changes in structure and morphology of fibers in presence of dipyridamole (DPD) as model drug for controlled release. It was found that addition of dipyridamole led to disappearance of spindle-shaped nodules on fibers of PHB in comparison with pure PHB. The research of thermophysical parameters showed that specific melting enthalpy (and the degree of crystallinity) of PHB fibers increased with the addition of DPD. With the increasing of DPD content in PHB fibers, more perfect and equilibrium crystal structure was formed. According to analysis of intercrystalline regions of PHB fibers, it was found that as the crystallinity of PHB in intergranular regions rose, the corresponding decrease of radical rotation speed was observed. It was concluded that fibers of PHB can be used for creating therapeutic systems for targeted and prolonged drug delivery.
机译:用于靶向药物递送到生物体的聚合物基质系统的创建是一种挑战性的各种疾病和伤害的挑战性问题。聚-3-羟基丁酸酯(PHB)通常用于治疗系统的发展。本文的目的是检查在双嘧达莫(DPD)存在作为用于控制释放的模型药物的纤维结构和形态的变化。发现与纯PHB相比,添加了双吡吡盖导致PHB纤维上的主轴形状结节的消失。热物理参数的研究表明,通过添加DPD,PHB纤维的特定熔化焓(和结晶度)增加。随着PHB纤维中DPD含量的增加,形成更完美和平衡的晶体结构。根据PHB纤维的肾间区域的分析,发现随着晶间区域中的PHB的结晶度升高,观察到自由基转速的相应降低。得出结论,PHB的纤维可用于为有针对性和延长的药物递送产生治疗系统。

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