Capability of Bacterial Cellulose Membrane in Release of Doxycycline

M. Salehi, Masomeh Jahani Kadusarai, M. A. Dogolsar
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引用次数: 1

Abstract

Bacterial cellulose produced by Gluconacetobacter xylinus is an advantage bacterial product cause of its unique properties, could be used as an ideal dress. The aim of this study was to consider the capability of this biomaterial in release of doxycycline. Proving of this capability provided the outline for production of a dressing containing antibiotic. In this study, bacterial cellulose was synthesized by G.xylinus and loaded from doxycycline then release process was considered in dilute water and buffer phosphate saline. UV-visible spectrophotometry method was applied to measuring the concentration of released drug. Bacterial cellulose structure of chemical was confirmed by Fourier Transform Infrared spectroscopy. Release of doxycycline in dilute water and phosphate saline buffer reach to 73.25% and 94.9%, respectively. Because of more released in buffer solution, peer that process of releasing exhibit exactly results. Results of this study provided the ground for future research on supplying an ideal dressing from this microbial product.
细菌纤维素膜对强力霉素的释放能力
由木酸糖醋杆菌生产的细菌纤维素因其独特的性能而成为一种有利的细菌产物,可以作为一种理想的服装。本研究的目的是考虑这种生物材料释放强力霉素的能力。这种能力的证明为含有抗生素的敷料的生产提供了轮廓。本研究以g.c ylinus为原料合成细菌纤维素,以强力西环素为负载,在稀水中和缓冲磷酸盐盐中进行释放。采用紫外可见分光光度法测定释药浓度。利用傅里叶变换红外光谱法确定了细菌纤维素的化学结构。多西环素在稀释水和磷酸盐缓冲液中的释放度分别为73.25%和94.9%。由于缓冲液中释放量较多,对释放过程中所表现出的效果也比较准确。本研究结果为今后利用该微生物产物制备理想敷料奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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