通过水蒸气渗透性分析负载水凝胶的固体脂质纳米颗粒的体外闭塞研究

G. Tripathi, B. Dubey
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引用次数: 5

摘要

固体脂质纳米颗粒(SLN)可以将药物持续释放到皮肤中,并在表皮空间内作为药物库。这一固有特性被广泛应用于几种药物的局部应用。各种药物和化妆品的皮肤渗透取决于皮肤的水合作用。经表皮水分流失导致皮肤干燥,从而使角质层对大多数外用药物更不渗透。固体脂质纳米颗粒尺寸较小,为水蒸发提供了较少的颗粒间空间。因此,有必要通过一些参数来评价其遮挡效果。本研究以三硬脂脂为脂质基质制备了负载二糖醇的固体脂质纳米颗粒。体外闭塞研究采用水蒸气渗透性评估。方法简单、经济。研究表明,与普通配方相比,SLN减少了14.89%的表皮水分流失。扫描电镜和粒度分布研究也进行了。我们的方法生产的SLN尺寸为332 nm,具有非常少的多分散性和良好的球形。因此,SLN载体可以作为外用药物和化妆品的有利选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IN-VITRO OCCLUSION STUDIES OF SOLID LIPID NANOPARTICLES LOADED HYDROGEL BY WATER VAPOUR PERMEABILITY ANALYSIS
Solid lipid nanoparticles (SLN) offer sustained release of drug into skin and work as drug depot within epidermal space. This inherent property is greatly employed for topical application of several drugs. Skin penetration of various drugs as well as cosmetic products depends upon skin hydration. Trans-epidermal water loss causes drying of skin thereby making stratum corneum more impermeable to most topical drugs. Solid lipid nanoparticles being smaller in size offer less inter-particles space for water evaporation. It is therefore necessary to evaluate its occlusive effect by some parameters. In the present study we prepared dithranol loaded solid lipid nanoparticles by using tristearin as lipid matrix. In-vitro occlusive studies were performed using water-vapour permeability evaluation. Method is simple and economic. Studies revealed that SLN reduced 14.89 % trans-epidermal water loss when compared to normal formulations. Scanning electron microscopy and particle size distribution studies were also performed. Our method produced SLN having 332 nm sizes with very less polydispersity and good spherical shapes. It can therefore be concluded that SLN carrier can be an advantageous choice for topical drug application as well as cosmetics.
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