首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Carbomer gel bearing methotrexate loaded lipid nanocontainers shows improved topical delivery intended for effective management of psoriasis
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Carbomer gel bearing methotrexate loaded lipid nanocontainers shows improved topical delivery intended for effective management of psoriasis

机译:含有甲氨蝶呤的Carbomer凝胶负载脂质纳米容器显示出改进的局部递送,用于有效管理牛皮癣

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The present investigation reports the evaluation of potential use of Carbomer gel bearing methotrexate loaded nanostructured lipid carriers for topical application of methotrexate for possible therapy of psoriasis in comparison to solid lipid nanopartides. These were evaluated for various parameters such as partide size, surface charge, entrapment efficiency, shape and surface morphology, thermal analysis, in-vitro drug release through skin (Franz diffusion cell) and drug deposition study, fluorescence microscopy, particle-skin interaction study, skin-irritation testing and storage stability. The formulation (NLC5) showed the best entrapment efficiency (62.72 +/- 0.94%) while SLN showed only 26.84 +/- 0.64% with particle size of 221 +/- 14nm and 212 +/- 11nm, respectively. Skin permeation study of MTX loaded SIN and NLC5 hydrogels showed prolonged drug release up to 24 h. The skin drug deposition study showed the greatest deposition of drug enriched NLC5 hydrogel (28.8%) when compared to plain drug enriched hydrogel (11.4%) and drug enriched SLN hydrogel (18.6%). Fluorescence microscopy suggested the localization effect of these lipid based systems to deeper skin region. The primary skin irritation studies indicated that MTX loaded SIN or NLC5 hydrogels resulted no erythema. It can be concluded that NLC represents a promising particulate carrier having prolonged drug release, improved skin permeation. (C) 2018 Elsevier B.V. All rights reserved.
机译:本研究报告说,评价含有甲氨蝶呤含有甲氨蝶呤纳米结构脂质载体的Carbomer凝胶的潜在用途,用于甲氨蝶呤的局部施加甲氨蝶呤,与固体脂质纳米粒子相比,牛皮癣可能治疗。这些评估了各种参数,例如伴随偏尺寸,表面电荷,夹带效率,形状和表面形态,热分析,通过皮肤(Franz扩散细胞)和药物沉积研究,荧光显微镜,粒子皮肤相互作用研究,皮肤刺激性测试和储存稳定性。制剂(NLC5)显示出最佳的夹带效率(62.72 +/- 0.94%),而SLN分别仅显示221 +/- 14nm和212 +/- 11nm的粒径为26.84 +/- 0.64%。 MTX的皮肤渗透研究载荷的SIN和NLC5水凝胶显示出长达24小时的延长药物释放。与普通药物富集的水凝胶(11.4%)和药物富集的SLN水凝胶(18.6%)相比,皮肤药物沉积研究表明,当普通药物富含水凝胶(11.4%)和药物富集的药物(11.4%)(18.6%)相比时,药物富集的NLC5水凝胶的最大沉积(28.8%)。荧光显微镜表明这些基于脂质的系统对更深的皮肤区域的定位效果。主要皮肤刺激性研究表明MTX负载SIN或NLC5水凝胶导致红斑。可以得出结论,NLC表示具有延长药物释放的有前途的颗粒载体,改善皮肤渗透。 (c)2018年elestvier b.v.保留所有权利。

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