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Controlled dual drug release by coaxial electrospun fibers - Impact of the core fluid on drug encapsulation and release

机译:通过同轴电纺纤维控制双药释放 - 核心流体对药物包封和释放的影响

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摘要

Controlled release of hydrophilic drugs from carriers is still faced with problems due to the poor compatibility of such substances with slowly degradable polymers leading to challenges regarding fabrication as well as undesired burst release of the encapsulated drugs. In this context, coaxial electrospinning being capable of simultaneously using two different solvent systems provides a promising strategy. However, the coaxial electrospinning process is extremely complex and numerous parameters might impact the incorporation as well as release kinetics of the drugs. To address this gap, we fabricated coaxial fibers for controlled co-delivery of two different drugs: bovine serum albumin as a model protein and acyclovir as a small molecule. Controlled release of both embedded drugs was achieved, and drug release profiles could be modulated through modifying spinning techniques as well as compositions and process parameters of the core fluid. Especially, the interactions of the co-incorporated drugs were found to be of key significance for affecting drug distribution within the fibers, and thus ultimately impacting drug release kinetics. Based on our findings, key factors for influencing drug encapsulation and release kinetics from coaxial fibers could be identified, providing a valuable guidance for rational development of coaxial fiber-based drug carriers.
机译:由于这种物质与缓慢可降解的聚合物的相容性差,导致载体的亲水药物的受控释放仍然面临着问题,这导致对制造的挑战以及包封的药物的不希望的爆裂释放。在这种情况下,使用两种不同的溶剂系统能够同时能够同时进行同轴电刺激提供了有希望的策略。然而,同轴静电纺丝过程非常复杂,并且许多参数可能影响着掺入的含量和药物的释放动力学。为了解决这种差距,我们制造了同轴纤维,用于控制两种不同的药物的控制共同递送:牛血清白蛋白作为模型蛋白和Acyclovir作为小分子。实现了两种嵌入药物的控释,并且可以通过修饰纺丝技术以及核心流体的组合物和工艺参数来调节药物释放曲线。特别是,发现共同掺入的药物的相互作用对影响纤维内的药物分布具有关键意义,从而最终影响药物释放动力学。基于我们的研究结果,可以鉴定用于影响药物封装和释放动力学的关键因素,可以识别同轴纤维的释放动力学,为同轴纤维的药物载体的合理发育提供了有价值的指导。

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