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A Study on Electrospun Nanofibrous Mats for Local Antibiotic Delivery

机译:局部抗生素递送的Electrome纳米纤维垫研究

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The demand for novel antibiotic-loaded electrospun nanofibrous structures has increased extremely in the recent years and has engaged the interests of scientists and engineers into a blend configuration of antibiotic drug and biocompatible polymers due to their unique applications in future of better therapeutic effect, reduced toxicity and sustained local antibiotic release over a period of time. One method to produce these antibiotic-loaded networks is by electrospinning process. However, it is very important to know structural characteristics and morphology of nanofibers for controlling the performance of the yields. In this paper, fabrication of electrospun nanofibers suited for antibiotic delivery system is investigated based on tetracycline hydrochloride as the antibiotic drug and poly(lactic-co-glycolic acid) as the biodegradable polymeric matrix. Furthermore, the effect of material and process parameters on morphology and release behavior of produced nonwovens is investigated. The efficacy of the medicated scaffolds using a static system for bacterial growth on agar plates was also proved.
机译:近年来,对新型抗生素负载型电纺纳面纤维纳面纤维结构的需求增加了,由于其独特的应用,将科学家和工程师的利益与科学家和工程师的利益融入抗生素药物和生物相容性聚合物的混合配置,这是由于它们的独特应用,减少毒性在一段时间内持续的局部抗生素释放。一种生产这些抗生素负载网络的方法是通过静电纺丝过程。然而,了解纳米纤维的结构特征和形态来控制产量的性能非常重要。本文研究了适用于抗生素递送系统的电纺纳米纤维的制备,其基于盐酸四环素作为抗生素药物和聚(乳酸 - 共乙醇酸)作为可生物降解的聚合物基质。此外,研究了材料和工艺参数对产生非织造织物的形态和释放行为的影响。还证明了药物支架使用静态系统进行琼脂平板上的细菌生长的疗效。

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