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首页> 外文期刊>Pharmaceutical sciences. >Transdermal Delivery of Snakehead Fish (Ophiocephalus striatus) Nanoemulgel Containing Hydrophobic Powder for Burn Wound
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Transdermal Delivery of Snakehead Fish (Ophiocephalus striatus) Nanoemulgel Containing Hydrophobic Powder for Burn Wound

机译:蛇皮鱼(Ophiocephalus striatus)纳米乳胶的疏水性皮肤透皮给药,其中含有疏水性粉末用于烧伤创面

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Background: The aim of the present study was to characterize and evaluate the nanoemulgel (NEG) of snakehead fish powder (SFP), as a transdermal delivery system for poorly water soluble drug, in order to conquer the inconveniences related to its oral conveyance. Methods: Diverse nanoemulsion components (oil, surfactant, and co-surfactant) were chosen based on solvency and emulsification capacity. SFP loaded nanoemulsion which tested by stress-stability testing was carried out for all formulations and those that passed these tests were characterized for mean droplet size, polydispersity index (PDI), zeta potential, pH, viscosity, and transmittance. After that, this was continued by permeation studies using snake skin in vitro and rabbit skin in vivo studies i.e. skin irritation study and the effectiveness test. Results: Mean droplet size and zeta potential of the optimized nanoemulsion (NE4) were found to be 98.6 ± 0.93 nm (polydispersity index, PDI = 0.1 ± 0.20) and -57.5 ± 0.3 mV respectively. Optimized nanoemulsion was converted into nanoemulgel with 1.5% w/v of gelling agent (HPMC) and evaluated for pH, viscosity, spreadability, and extrudability measurement. Ex vivo transdermal permeation value for SFP through snake skin as membrane from NEG1, NEG2, NEG3 and marketed SFP cream showed results of 55.65 ± 0.93%, 56.14 ± 0.70%, 66.75 ± 1.03% and 49.80 ± 3.42% respectively in 3 hours. Moreover, all the treatment group did not show skin irritation of each group. The effect of burn wound healing of NEG3 showed a significant (P0.05) on the measurement of wound area compared to marketed cream. Conclusion: The novel NEG of SFP was successfully formulated for transdermal application based on the results of evaluations and stability tests on accelerating burn wound healing.
机译:背景:本研究的目的是表征和评价蛇头鱼粉(SFP)的纳米乳胶(NEG),作为水溶性差的药物的透皮给药系统,以克服与其口服给药有关的不便。方法:根据溶解能力和乳化能力选择不同的纳米乳液组分(油,表面活性剂和助表面活性剂)。对所有配方均进行了通过应力稳定性测试进行测试的SFP负载纳米乳液,并通过了这些测试的纳米乳液的平均液滴尺寸,多分散指数(PDI),ζ电位,pH,粘度和透光率均经过了表征。此后,通过使用体外蛇皮和体内兔皮肤的渗透研究,即皮肤刺激性研究和有效性测试,继续进行研究。结果:优化纳米乳液(NE4)的平均液滴尺寸和Zeta电位分别为98.6±0.93 nm(多分散指数,PDI = 0.1±0.20)和-57.5±0.3 mV。将优化的纳米乳液与1.5%w / v的胶凝剂(HPMC)转化为纳米乳液,并对其pH,粘度,铺展性和可挤出性进行评估。 SFP通过蛇皮作为NEG1,NEG2,NEG3和市售SFP霜的膜的离体透皮渗透值在3小时内分别显示55.65±0.93%,56.14±0.70%,66.75±1.03%和49.80±3.42%。此外,所有治疗组均未显示出每组的皮肤刺激性。与市售乳膏相比,NEG3的烧伤创面愈合效果对伤口面积的测量显示出显着(P <0.05)。结论:基于加速烧伤创面的评估和稳定性测试结果,成功配制了新型SFP NEG,可用于经皮应用。

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