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Cellulose nanofiber–titania nanocomposites as potential drug delivery systems for dermal applications

机译:纤维素纳米纤维-二氧化钛纳米复合材料是潜在的皮肤应用药物递送系统

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摘要

In this work, new efficient drug delivery systems based on cellulose nanofiber–titania nanocomposites grafted with three different types of model drugs such as diclofenac sodium, penicillamine-D and phosphomycin were successfully synthesized and displayed distinctly different controlled long-term release profiles. Three different methods of medicine introduction were used to show that various interactions between TiO2 and drug molecules could be used to control the kinetics of long-term drug release. All synthesis reactions were carried out in aqueous media. The morphology, chemical structureudand properties of the obtained materials were characterized by SEM, TEM and AFM microscopy, nanoparticle tracking analysis, X-ray diffraction, and TGA analysis. According to FT-IR and UV-Vis spectroscopy data, the titania binds to cellulose nanofibers via formation of ester bonds and to drug molecules via formation of surface complexes. The drug release kinetics was studied in vitro for diclofenac sodium and penicillamine-D spectrophotometrically and for phosphomycin using a radiolabeling analysis with 33P-marked ATP as a model phosphate-anchored biomolecule. The results demonstrated that the obtained nanocomposites could potentially be applied in transdermal druguddelivery for anesthetics, analgesics and antibiotics.
机译:在这项工作中,成功合成了基于纤维素纳米纤维-二氧化钛纳米复合材料的新型高效药物递送系统,该系统嫁接了双氯芬酸钠,青霉素-D和磷霉素这三种不同类型的模型药物,并显示出明显不同的长期控制释放曲线。使用三种不同的药物引入方法表明,TiO2和药物分子之间的各种相互作用可用于控制长期药物释放的动力学。所有合成反应均在水性介质中进行。通过SEM,TEM和AFM显微镜,纳米粒子跟踪分析,X射线衍射和TGA分析,对所得材料的形貌,化学结构复旦性质进行了表征。根据FT-IR和UV-Vis光谱数据,二氧化钛通过形成酯键与纤维素纳米纤维结合,并通过形成表面复合物与药物分子结合。使用放射性标记分析法,以33P标记的ATP作为模型锚定的生物分子,通过分光光度法对双氯芬酸钠和青霉素-D以及磷霉素进行了体外药物释放动力学研究。结果表明,所获得的纳米复合材料可潜在地用于麻醉剂,止痛剂和抗生素的透皮给药。

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