溶液吹法制备载药超细聚合物纤维及其释药动力学

Karl Schuchard , Abhay Joijode , Vincent P. Willard , Bruce Anderson , Pierre Grondin , Behnam Pourdeyhimi , Rohan Shirwaiker
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引用次数: 3

摘要

生物相容性聚合物纤维因其独特的性能而引起了人们的极大兴趣。应用范围从吸收介质到组织工程和药物输送产品。许多制造工艺都能生产这种纤维,但在含有热稳定性添加剂(如药物)的纤维的高度可扩展工艺中存在空白。本研究调查了负载强力霉素的溶液吹制聚环氧乙烷纤维的初步过程-结构-功能关系,强力霉素是一种具有抗生素、抗炎和抗肿瘤特性的药物。经过参数筛选,通过析因实验绘制了多喷嘴装置的溶液吹制设计空间。用平均直径为552±200 nm的多西环素负载聚合物纤维制成厚度为1 mm的垫子。释放动力学研究表明,强力霉素在大约1分钟内释放具有显著的爆裂效应。本研究强调溶液吹制是一种可扩展的制造平台,用于制造装载这种有效药物的聚(环氧乙烷)纤维。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabrication of drug-loaded ultrafine polymer fibers via solution blowing and their drug release kinetics

Biocompatible polymer fibers have garnered significant interest due to their unique properties. Applications range from absorbent media to tissue engineering and drug delivery products. Many manufacturing processes produce such fibers, but a gap exists in highly scalable processes for fibers loaded with thermolabile additives like pharmaceuticals. This study investigates preliminary process-structure-function relationships of solution blown poly(ethylene oxide) fibers loaded with doxycycline, a drug that has demonstrated antibiotic, anti-inflammatory, and anti-tumoral properties. After parameter screening, a factorial experiment mapped the solution blowing design space with a multi-nozzle apparatus. A 1 mm-thick mat was fabricated comprising doxycycline loaded polymer fibers with a mean diameter of 552 ± 200 nm. Study of release kinetics showed the doxycycline released with a significant burst effect over approximately 1 minute. This study highlights solution blowing as a scalable manufacturing platform for fabricating poly(ethylene oxide) fibers loaded with this impactful drug.

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