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首页> 外文期刊>Quimica nova >DEVELOPMENT OF ORAL NIFEDIPINE-LOADED POLYMERIC NANOCAPSULES: PHYSICOCHEMICAL CHARACTERISATION, PHOTOSTABILITY STUDIES, italicIN VITRO/italic AND italicIN VIVO/italic EVALUATION
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DEVELOPMENT OF ORAL NIFEDIPINE-LOADED POLYMERIC NANOCAPSULES: PHYSICOCHEMICAL CHARACTERISATION, PHOTOSTABILITY STUDIES, italicIN VITRO/italic AND italicIN VIVO/italic EVALUATION

机译:口服二甲双胍的聚合物纳米胶囊的开发:物理化学特性,光稳定性研究,体外体内评估

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In this study, nifedipine (NFP)-loaded polymeric nanocapsules were prepared and characterised with a view to protect the drug from degradation. Nanocapsule suspensions were prepared using two different surfactants (pluronic F68 and polyvinyl alcohol). Physicochemical stability and in vivoantihypertensive effect were evaluated. The particle size, zeta potential and entrapment efficiency remained constant during a period of 28 days of exposure under light irradiation. A smaller particle size and a higher zeta potential were obtained for the nanocapsules prepared with Pluronic F68 as surfactant. The solid drug and the nanocapsules were submitted to light exposure for 28 days. After this period of time, the percentage of drug remaining in the PF68NFP and PVANFP nanocapsules was 28.1% and 21.3%, respectively. In contrast, the solid drug was completely degraded after 4 days, suggesting that the nanocapsule suspensions promoted significant protection of the drug against light exposure. In addition, in vivo studies were carried out, which demonstrated that the formulations with polyvinyl alcohol exhibited a very rapid onset of action after oral administration in rats and led to faster drug release. The nanoparticles developed can be considered as an alternative for improving NFP stability in liquid formulations.
机译:在这项研究中,制备并装载了硝苯地平(NFP)的聚合物纳米胶囊,并进行了表征,目的是防止药物降解。使用两种不同的表面活性剂(Pluronic F68和聚乙烯醇)制备了纳米胶囊悬浮液。评价了理化稳定性和体内降压作用。在光照射下暴露28天期间,粒度,ζ电势和包封效率保持恒定。用Pluronic F68作为表面活性剂制备的纳米胶囊具有较小的粒径和较高的ζ电位。将固体药物和纳米胶囊暴露于光下28天。在这段时间之后,PF68NFP和PVANFP纳米胶囊中残留的药物百分比分别为28.1%和21.3%。相比之下,固体药物在4天后完全降解,表明纳米胶囊悬浮液可显着保护药物免受光线照射。另外,进行了体内研究,其表明具有聚乙烯醇的制剂在大鼠口服给药后表现出非常迅速的起效并导致更快的药物释放。可以将开发的纳米颗粒视为改善液体制剂中NFP稳定性的替代方法。

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