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In-vitro release study of hydrophobic drug using electrospun cross-linked gelatin nanofibers

机译:使用电纺交联明胶纳米纤维的疏水性药物体外释放研究

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摘要

Delivering hydrophobic drug within hydrophilic polymer matrix as carrier is usually a challenge. Here we report the synthesis of gelatin nanofibers by electrospinning, followed by testing them as a potential carrier for oral drug delivery system for a model hydrophobic drug, piperine. Electrospun gelatin nanofibers were crosslinked by exposing to saturated glutaraldehyde (GTA) vapor, to improve their water resistive properties. An exposure of only 6 min was not only adequate to control the early degradation with intact fiber morphology, but also significantly marginalized any adverse effects associated with the use of GTA. Scanning electron microscopy imaging, Fourier transform infrared spectroscopy and thermogravimetric analysis were done to study nanofiber morphology, stability of drug and effect of crosslinking. The pH of release medium was also varied as per the gastrointestinal tract for in-vitro drug release study. Results illustrate good compatibility of hydrophobic drug in gelatin nanofibers with promising controlled drug release patterns by varying crosslinking time and pH of release medium.
机译:在亲水性聚合物基质中作为载体递送疏水性药物通常是一个挑战。在这里,我们报告通过电纺合成明胶纳米纤维,然后测试它们作为模型疏水性药物胡椒碱的口服药物递送系统的潜在载体。通过将静电纺丝明胶纳米纤维暴露于饱和戊二醛(GTA)蒸汽中进行交联,以提高其耐水性。仅暴露6分钟,不仅足以控制完整纤维形态的早期降解,而且还显着边缘化了与使用GTA相关的任何不良影响。进行了扫描电子显微镜成像,傅里叶变换红外光谱和热重分析,以研究纳米纤维的形态,药物的稳定性和交联作用。对于体外药物释放研究,释放介质的pH也根据胃肠道而变化。结果表明,通过改变交联时间和释放介质的pH值,明胶纳米纤维中疏水性药物与可控的药物释放模式具有良好的相容性。

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