首页> 外文期刊>Journal of liposome research >Solid lipid nanoparticles for transdermal delivery of avanafil: optimization, formulation, in-vitro and ex-vivo studies
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Solid lipid nanoparticles for transdermal delivery of avanafil: optimization, formulation, in-vitro and ex-vivo studies

机译:用于avanafil透皮递送的固体脂质纳米颗粒:优化,配制,体外和离体研究

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Context: Avanafil (AVA) is used in the treatment of erectile dysfunction, but is reported for its poor aqueous solubility. Solid lipid nanoparticles (SLNs) are lipid carriers that can greatly enhance drug solubility and bioavailability.Objective: This work was aimed to formulate and optimize AVA SLNs with subsequent loading into hydrogel films for AVA transdermal delivery.Materials and methods: AVA SLNs were prepared utilizing homogenization followed by ultra-sonication technique. The prepared SLNs were characterized for particle size, charge, surface morphology and drug content. The optimized SLNs formulation was incorporated into transdermal films prepared using HPMC and chitosan. Hydrogel films were evaluated for ex-vivo rat skin permeation using automated Franz diffusion cells. The permeation parameters and the release mechanism were evaluated. The transdermal permeation of the prepared AVA SLNs through the skin layers was studied using confocal laser scanning microscope.Results: Lipid concentration and % of oil in lipid had a pronounced effect on particle size while, entrapment efficiency was significantly affected by lipid concentration and % of cholesterol. The optimized AVA SLNs showed particle size and entrapment efficiency of 86nm and 85.01%, respectively. TEM images revealed spherecity of the particles. High permeation parameters were observed from HPMC films loaded with AVA SLNs. The release data were in favor of Higuchi diffusion model. The prepared AVA SLNs were able to penetrate deeper in skin layers.Conclusion: HPMC transdermal film-loaded AVA SLNs is an effective and alternative to per-oral drug administration.
机译:背景:Avanafil(AVA)用于治疗勃起功能障碍,但据报道其水溶性差。固体脂质纳米颗粒(SLN)是可以大大提高药物溶解度和生物利用度的脂质载体。目的:这项工作旨在配制和优化AVA SLN,随后将其装载到水凝胶膜中进行AVA透皮递送。材料和方法:AVA SLN是利用均质化后再进行超声处理。对制备的SLN进行了粒径,电荷,表面形态和药物含量的表征。将优化的SLNs配方掺入使用HPMC和壳聚糖制备的透皮薄膜中。使用自动Franz扩散池评估水凝胶膜对离体大鼠皮肤的渗透。评价了渗透参数和释放机理。使用共聚焦激光扫描显微镜研究了制备的AVA SLNs通过皮肤层的透皮渗透性。结果:脂质浓度和脂质中油脂的含量对粒径有显着影响,而脂质浓度和脂质的百分比显着影响包封率。胆固醇。优化的AVA SLNs的粒径和包封率分别为86nm和85.01%。 TEM图像显示出颗粒的球形度。从载有AVA SLN的HPMC膜中观察到高渗透参数。释放数据有利于Higuchi扩散模型。制备的AVA SLNs能够穿透皮肤深层。结论:HPMC透皮膜载AVA SLNs是一种有效的口服药物替代品。

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