首页> 外文期刊>Saudi Journal of Biological Sciences >A comparative ex vivo permeation evaluation of a novel 5-Fluorocuracil nanoemulsion-gel by topically applied in the different excised rat, goat, and cow skin
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A comparative ex vivo permeation evaluation of a novel 5-Fluorocuracil nanoemulsion-gel by topically applied in the different excised rat, goat, and cow skin

机译:通过在不同切除的大鼠,山羊和牛皮中局部施用新型5-氟尿嘧啶纳米乳液 - 凝胶的比较前渗透评价

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Aim of the study 5-Fluorouracil (5-FU) can’t be given orally because of very low bioavailability and produces serious adverse effects. Therefore, the main objective of this research is to develop, evaluate, and comparative effects by different nanoformulations of topical application on chemoprevention of skin cancer in different types of skin. Material and methods Castor oil (oil), Transcutol HP (surfactant), and Polyethylene glycol (PEG)–400 (co-surfactant) have taken on the basis of nonionic property and highest nanoemulsion (NE)-region. Aqueous micro titration method with ultra-sonication method (based on high energy) was used for the preparation of 5-FU-NE. Optimized-5-FU-NE was stable thermodynamically, and their characterizations was performed on the basis of globule size, zeta potential, refractive index, and viscosity. Optimized-NE has been converted into 5-FU-NE-Gel with the help of Carbopol? 934 and also performed their permeation studies in the different skins (cow, goat, and rat, ex vivo ) using Logan transdermal diffusion cell (DHC-6T). Optimized-5-FU-NE and 5-FU-NE-Gel were evaluated cytotoxic studies ( in vitro ) on the melanoma cell lines. Results The permeation of 5-FU from 5-FU-NE-Gel nanoformulation for rat skin model was 1.56 times higher than the 5-FU-NE and 12.51 times higher than the 5-FU-S for the cow and goat skin model. The values of steady state flux and permeability coefficient for 5-FU-NE-Gel of rat skin were higher i.e. 12.0244?±?1.12 μgcm ?2 h ?1 and 1.2024?±?0.073?×?10 ?2 ?μg?cm ?2 h ?1 , respectively. Optimized-5-FU-NE and 5-FU-NE-Gel nanoformulation were found to be physically stable. SK-MEL-5 cancer cells have showed the results based on cytotoxicity studies ( in vitro ) that 5-FU as Optimized-5-FU-NE-Gel is much more efficacious than 5-FU-NE followed by free 5-FU. Localization of 5-FU from 5-FU-NE-Gel was higher with higher permeation in rat skin. Conclusion 5-FU-NE-Gel is found to be for the better to treatment of cutaneous malignancies. It can be developed 5-FU-NE-Gel could be a promising vehicle for the skin cancer chemoprevention.
机译:研究的目的5-氟尿嘧啶(5-FU)不能口服,因为生物利用度非常低,产生严重的不良反应。因此,本研究的主要目的是通过不同类型的皮肤中皮肤癌化学预防的局部应用的不同纳米族的发展,评估和比较效果。材料和方法蓖麻油(油),超丁醇HP(表面活性剂)和聚乙二醇(PEG)-400(共表面活性剂)是基于非离子性质和最高纳米乳液(NE)的基础。具有超超声方法(基于高能量)的水性微滴定法用于制备5-FU-NE。优化-5-FU-NE在热力学上稳定,并且它们的表征是基于球尺寸,Zeta电位,折射率和粘度进行的。在Carbopol的帮助下,优化的NE已被转换为5-FU-NE-GEL? 934还使用逻an透皮扩散细胞(DHC-6T)在不同的皮肤(牛,山羊和大鼠,exvivo)中进行渗透研究。在黑色素瘤细胞系上评估了优化-5-FU-NE和5-FU-NE-凝胶的细胞毒性研究(体外)。结果5-FU-NE-GEL纳米型渗透到大鼠皮肤模型的5-FU渗透率比5-FU-NE高1.56倍,比牛和山羊皮肤模型高的5-FU-S高12.51倍。大鼠皮肤5-fu-Ne-凝胶的稳态通量和渗透系数的值较高,即12.0244°α≤1.12μg≤2h≤1和1.2024?±0.073?×10?2?μg?cm ?2小时?1分别。发现优化-5-FU-NE和5-FU-NE-凝胶纳米型测量物理稳定。 SK-MEL-5癌细胞已经显示出基于细胞毒性研究的结果(体外),5-FU作为优化-5-FU-NE-凝胶的优化比5-FU-NE更为有效,然后是FREE 5-FU。来自5-FU-NE-凝胶的5-FU的定位较高,大鼠皮肤渗透较高。结论发现5-FU-NE-凝胶是更好的治疗皮肤病性恶性肿瘤。它可以开发5-FU-NE-GEL可以是皮肤癌化学预防的有希望的车辆。

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