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Cellulose nanofiber aerogel as a promising biomaterial for customized oral drug delivery

机译:纤维素纳米纤维气凝胶可作为定制口服药物的有前途的生物材料

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摘要

Cellulose nanofiber (CNF) aerogels with favorable floatability and mucoadhesive properties prepared by the freeze-drying method have been introduced as new possible carriers for oral controlled drug delivery system. Bendamustine hydrochloride is considered as the model drug. Drug loading was carried out by the physical adsorption method, and optimization of drug-loaded formulation was done using central composite design. A very lightweight-aerogel-with-matrix system was produced with drug loading of 18.98%±1.57%. The produced aerogel was characterized for morphology, tensile strength, swelling tendency in media with different pH values, floating behavior, mucoadhesive detachment force and drug release profiles under different pH conditions. The results showed that the type of matrix was porous and woven with excellent mechanical properties. The drug release was assessed by dialysis, which was fitted with suitable mathematical models. Approximately 69.205%±2.5% of the drug was released in 24 hours in medium of pH 1.2, whereas ~78%±2.28% of drug was released in medium of pH 7.4, with floating behavior for ~7.5 hours. The results of in vivo study showed a 3.25-fold increase in bioavailability. Thus, we concluded that CNF aerogels offer a great possibility for a gastroretentive drug delivery system with improved bioavailability.
机译:通过冷冻干燥法制备的具有良好的漂浮性和粘膜粘附特性​​的纤维素纳米纤维(CNF)气凝胶已被引入作为口服控制药物输送系统的新载体。盐酸苯达莫司汀被认为是模型药物。通过物理吸附法进行载药,并采用中心复合设计优化载药配方。产生了非常轻巧的带有基质的气凝胶系统,载药量为18.98%±1.57%。所生产的气凝胶的特征在于在不同pH值下具有不同pH值的介质的形态,拉伸强度,溶胀趋势,漂浮行为,粘膜粘附剥离力和药物释放曲线。结果表明,基质类型是多孔的且编织的,具有优异的机械性能。通过透析评估药物释放,该透析装有合适的数学模型。在pH 1.2的介质中,约有69.205%±2.5%的药物在24小时内释放,而在pH 7.4的介质中,约有78%±2.28%的药物被释放,并有约7.5小时的漂浮性。体内研究的结果表明生物利用度提高了3.25倍。因此,我们得出结论,CNF气凝胶为具有更高生物利用度的胃滞留药物输送系统提供了极大的可能性。

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