Stability Studies and Characterization of Glutathione-Loaded Nanoemulsion.

IF 0.2 4区 医学 Q4 CHEMISTRY, APPLIED
Journal of cosmetic science Pub Date : 2018-07-01
Naveed Ullah Khan, Atif Ali, Hira Khan, Zaheer Ullah Khan, Zia Ahmed
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引用次数: 0

Abstract

Glutathione reduced (GSH) is the mother of all the antioxidants and has an antimelanogenic effect. It is extremely vulnerable to oxidation in the solution form which limits its use. The GSH in nano-oil droplets present a potential solution to this problem. The aim of this study was to formulate glutathione-loaded nanoemulsion and assess its stability studies over a 90-day testing period. To formulate GSH-loaded nanoemulsion pseudo-ternary phase diagram, it was built with various concentrations of water, liquid paraffin oil, and surfactant mixture (Tween 80 and Span 80). The oily phase was prepared by dissolving the GSH (450 mg) in liquid paraffin oil through stirring. High-energy homogenization was used to prepare the nanoemulsion. From preformulation stability studies of the 28-day testing period, nanoemulsion (NE-19) with oil and surfactant mixture ratio (1:1) of hydrophilic lipophilic balance (HLB) value 10 was selected. The samples of NE-19 and its respective base (B-19) were kept at four different storage conditions for a period of 90 days and evaluated for physical characteristics, droplet size and distribution analysis, zeta potential analysis, electrical conductivity, mobility, polydispersity, pH, phase separation, and flow analysis at different time intervals. Glutathione in nano-oil droplets with nonionic surfactants produced oil-in-water nanoemulsions that were thermodynamically stable over the 90-day testing period at different storage conditions. NE-19 was formulated having non-Newtonian flow and pseudo-plastic behavior. pH was found in the range of 5-6. Polydispersity was less than 0.3. The droplet size of fresh nanoemulsion was 96.05 nm, whereas the zeta potential was -37.1. Mobility and electrical conductivity were -2.726 µm cm/Vs and 0.0141 mS/cm, respectively. Glutathione-loaded nanoemulsions have excellent stability, promising the solution in nano-oil droplets and are suggested for in-vivo release studies for oxidative skin related diseases.

谷胱甘肽负载纳米乳的稳定性研究与表征。
还原谷胱甘肽(GSH)是所有抗氧化剂的母亲,具有抗黑色素的作用。它在溶液形式下极易氧化,这限制了它的使用。纳米油滴中的谷胱甘肽为解决这一问题提供了一个潜在的解决方案。本研究的目的是制备谷胱甘肽负载纳米乳,并在90天的测试期内评估其稳定性研究。以不同浓度的水、液体石蜡油和表面活性剂Tween 80和Span 80的混合物为原料,建立了负载谷胱甘肽的纳米乳伪三元相图。将GSH (450 mg)溶于液体石蜡油中搅拌制备油相。采用高能均质法制备纳米乳。通过28天试验期的配方前稳定性研究,选择了油与表面活性剂配比为1:1、亲水亲脂平衡(HLB)值为10的纳米乳(NE-19)。将NE-19及其碱(B-19)的样品在4种不同的贮存条件下保存90 d,并在不同的时间间隔对其物理特性、液滴大小和分布分析、zeta电位分析、电导率、迁移率、多分散性、pH、相分离和流动分析进行评价。纳米油滴中的谷胱甘肽与非离子表面活性剂结合,产生的水包油纳米乳液在不同的储存条件下,在90天的测试期内都保持了热稳定性。NE-19具有非牛顿流动和伪塑性行为。pH值在5-6之间。多分散性小于0.3。新鲜纳米乳的粒径为96.05 nm, zeta电位为-37.1。迁移率和电导率分别为-2.726µm cm/Vs和0.0141 mS/cm。谷胱甘肽负载纳米乳具有优异的稳定性,有望在纳米油滴中溶解,并建议用于氧化性皮肤相关疾病的体内释放研究。
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来源期刊
Journal of cosmetic science
Journal of cosmetic science 工程技术-皮肤病学
CiteScore
0.90
自引率
0.00%
发文量
26
期刊介绍: The JOURNAL OF COSMETIC SCIENCE (JCS) publishes papers concerned with cosmetics, cosmetic products, fragrances, their formulation and their effects in skin care or in overall consumer well-being, as well as papers relating to the sciences underlying cosmetics, such as human skin physiology, color physics, physical chemistry of colloids and emulsions, or psychological effects of olfaction in humans. Papers of interest to the cosmetic industry and to the understanding of the cosmetic markets are also welcome for publication.
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