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Preparation, Characterization, and In Vivo Pharmacokinetic Evaluation of Polyvinyl Alcohol and Polyvinyl Pyrrolidone Blended Hydrogels for Transdermal Delivery of Donepezil HCl

机译:聚乙烯醇和聚乙烯吡咯烷酮混合水凝胶的制备,表征和体内药代动力学评价,用于多奈哌齐HCl透皮递送的水凝胶

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Transdermal delivery systems are emerging platforms for the delivery of donepezil hydrochloride (DH) for treating Alzheimer’s disease. The primary aim of this study was to develop polyvinyl alcohol and polyvinyl pyrrolidone blended hydrogels and to evaluate their feasibility for delivering DH via a transdermal route. Physicochemical properties, such as gel fraction (%), swelling ratio (%), weight loss (%), mechanical strength, elongation at break, and Young’s modulus of the prepared hydrogels were evaluated. Furthermore, in vitro skin permeation and in vivo pharmacokinetic studies were performed. With an increased concentration of propylene glycol (PG), the gel fraction (%), maximum strength, and elongation at break decreased. However, the swelling ratio (%) and weight loss (%) of hydrogels increased with increased PG content. The 26% PG-hydrogel was superior, with an enhancement ratio of 12.9 (*** p 0.001). In addition, the 11% PG-hydrogel and 1% PG-hydrogel exhibited an enhancement ratio 6.30-fold (*** p 0.001) and 2.85-fold (* p 0.05) higher than that exhibited by control, respectively, indicating a promising effect of PG on skin permeation. In addition, in vivo pharmacokinetic studies on hairless rats assessed the expediency for transdermal delivery of DH. The transdermal delivery of optimized hydrogel-patches with two different doses of DH revealed that the maximum plasma concentration and area under the curve were dose dependent, and the time to reach the maximum concentration was 8 h. Thus, optimized hydrogels have the potential to enhance the transdermal delivery of DH and could be a novel clinical approach.
机译:透皮递送系统是用于盐酸多奈哌齐(DH)的新兴平台,用于治疗阿尔茨海默病。本研究的主要目的是开发聚乙烯醇和聚乙烯吡咯烷酮混合水凝胶,并评估它们通过透皮途径递送DH的可行性。评估了物理化学性质,例如凝胶级分(%),溶胀比(%),体重减轻(%),机械强度,断裂伸长,以及制备水凝胶的杨氏模量。此外,进行体外皮肤渗透和体内药代动力学研究。随着丙二醇(PG)的浓度增加,凝胶分数(%),最大强度和断裂处的伸长率降低。然而,水凝胶的溶胀比(%)和体重减轻(%)随着PG含量的增加而增加。 26%pg-hydrogel优异,增强比为12.9(*** p <0.001)。此外,11%pg-hydrogel和1%pg-hydrogel分别表现出比对照表现出的6.30倍(*** p <0.001)和2.85倍(* p <0.001)的增强比率,表明PG对皮肤渗透的有希望的影响。此外,在无毛老鼠的体内药代动力学研究中评估了DH透皮递送的权宜之计。具有两种不同剂量DH的优化水凝胶贴片的透皮递送显示,曲线下的最大血浆浓度和面积依赖于剂量,并且达到最大浓度的时间为8小时。因此,优化的水凝胶具有增强DH的透皮递送的可能性,并且可以是一种新的临床方法。

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