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Release of doxycycline through cellulose acetate symmetric and asymmetric membranes produced from recycled agroindustrial residue: sugarcane bagasse.

机译:多西环素通过回收的农用工业残渣:甘蔗渣产生的醋酸纤维素对称和不对称膜释放。

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Cellulose acetate is one of the components employed in drug controlled-release systems in the form of membranes. The aim of this study was to examine the controlled-release of doxycycline employing cellulose acetate symmetric and asymmetric membranes as matrices. The cellulose triacetate was produced from sugarcane bagasse through a homogeneous acetylation reaction, using acetic acid as the solvent, acetic anhydride as the acetylating agent and sulfuric acid as the catalyst. The viscosity average molecular weight of the cellulose acetate produced was 39,000 g mol-1. The symmetric membranes were produced using a system solvent of dichloromethane/ethanol (9:1, v/v) and the asymmetric membranes were produced from the same solvent system and 10% of water. For the formulation of both, 5% of doxycycline was used. The membranes were characterized by thermal analysis (DSC and TGA) and scanning electron microscopy SEM. The release of doxycycline through cellulose triacetate matrices was examined using spectrophotometric analysis in the ultraviolet-visible region, at 275 nm. The results revealed that asymmetric membranes release 80% of the drug in 100 min, while symmetric membranes release 14% of the drug during the same time interval.
机译:乙酸纤维素是以膜形式用于药物控释系统中的成分之一。这项研究的目的是使用醋酸纤维素对称和不对称膜作为基质,检查多西环素的控释。使用乙酸作为溶剂,乙酸酐作为乙酰化剂,硫酸作为催化剂,通过均一的乙酰化反应从甘蔗渣中制得三乙酸纤维素。产生的乙酸纤维素的粘均分子量为39,000g mol -1 。使用二氯甲烷/乙醇(9:1,v / v)的系统溶剂生产对称膜,并使用相同的溶剂系统和10%的水生产不对称膜。对于两种制剂,都使用5%的强力霉素。通过热分析(DSC和TGA)和扫描电子显微镜SEM对膜进行表征。使用分光光度分析法在275 nm的紫外线可见区域检查了强力霉素通过三乙酸纤维素基质的释放。结果表明,在同一时间间隔内,不对称膜释放80%的药物,而对称膜释放14%的药物。

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