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Skin permeation mechanism of aceclofenac using novel nanoemulsion formulation.

机译:使用新型纳米乳剂配方对醋氯芬酸的皮肤渗透机制。

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The aim of the present study was to investigate the skin permeation mechanism of aceclofenac using a novel nanoemulsion formulation. An optimized oil-in-water nanoemulsion of aceclofenac was prepared by the spontaneous emulsification method. The optimized nanoemulsion contained 2% w/w aceclofenac, 10% w/w Labrafil, 5% w/w Triacetin, 35.33% w/w Tween 80, 17.66% w/w Transcutol P and 32% w/w distilled water. The skin permeation mechanism was evaluated by FTIR spectroscopy, DSC thermography, activation energy measurement and histopathological examination. FTIR spectra of skin treated with the nanoemulsion formulation indicated breaking of the hydrogen bond network at the head of ceramides. DSC thermograms indicated that intracellular transport could be a possible mechanism of permeation enhancement and that permeation occurred due to the extraction of SC lipids by the nanoemulsion. The significant decrease in activation energy for aceclofenac permeation across rat skin indicated that the SC lipid bilayers were significantly disrupted (p < 0.05). Photomicrography of skin showed disruption and extraction of lipid bilayers as distinct voids and empty spaces visible in the epidermal region. Overall these findings indicated that nanoemulsions can be successfully used to enhance skin permeation of drugs.
机译:本研究的目的是使用新型纳米乳剂配方研究醋氯芬酸的皮肤渗透机制。通过自发乳化法制备了优化的醋氯芬酸水包油纳米乳剂。优化的纳米乳液包含2%w / w醋氯芬酸,10%w / w Labrafil,5%w / w三醋精,35.33%w / w吐温80、17.66%w / w Transcutol P和32%w / w蒸馏水。通过FTIR光谱,DSC热成像,活化能测量和组织病理学检查评估皮肤渗透机制。纳米乳液配方处理的皮肤的FTIR光谱表明,神经酰胺头部的氢键网络断裂。 DSC热分析图表明,细胞内转运可能是渗透增强的可能机制,并且渗透是由于纳米乳液提取SC脂质而发生的。醋氯芬酸在大鼠皮肤中渗透的活化能显着降低,表明SC脂质双层被显着破坏(p <0.05)。皮肤的显微照相显示出脂双层的破坏和提取,因为在表皮区域可见明显的空隙和空的空间。总的来说,这些发现表明纳米乳剂可以成功地用于增强药物的皮肤渗透性。

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