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An Improved Nanoemulsion Formulation Containing Kojic Monooleate: Optimization Characterization and In Vitro Studies

机译:改进的含有曲酸单油酸酯的纳米乳液配方:优化表征和体外研究

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摘要

Tyrosinase inhibitors have become increasingly important targets for hyperpigmentation disease treatment. Kojic monooleate (KMO), synthesized from the esterification of kojic acid and oleic acid, has shown a better depigmenting effect than kojic acid. In this study, the process parameters include the speed of high shear, the time of high shear and the speed of the stirrer in the production of nanoemulsion containing KMO was optimized using Response Surface Methodology (RSM), as well as evaluated in terms of its physicochemical properties, safety and efficacy. The optimized condition for the formulation of KMO nanoemulsion was 8.04 min (time of high shear), 4905.42 rpm (speed of high shear), and 271.77 rpm (speed of stirrer), which resulted in a droplet size of 103.97 nm. An analysis of variance (ANOVA) showed that the fitness of the quadratic polynomial fit the experimental data with large -values (148.79) and small -values ( < 0.0001) and an insignificant lack of fit. The optimized nanoemulsion containing KMO with a pH value of 5.75, showed a high conductivity value (3.98 mS/cm), which indicated that the nanoemulsion containing KMO was identified as an oil-in-water type of nanoemulsion. The nanoemulsion remains stable (no phase separation) under a centrifugation test and displays accelerated stability during storage at 4, 25 and 45 °C over 90 days. The cytotoxicity assay showed that the optimized nanoemulsion was less toxic, with a 50% inhibition of cell viability (IC ) > 500 μg/mL, and that it can inhibit 67.12% of tyrosinase activity. This study reveals that KMO is a promising candidate for the development of a safe cosmetic agent to prevent hyperpigmentation.
机译:酪氨酸酶抑制剂已成为色素沉着过度疾病治疗中越来越重要的靶标。由曲酸和油酸的酯化反应合成的曲酸单油酸酯(KMO)显示出比曲酸更好的脱色效果。在这项研究中,工艺参数包括高剪切速度,高剪切时间和含KMO的纳米乳液生产中的搅拌器速度,使用响应表面方法(RSM)进行了优化,并对其进行了评估理化性质,安全性和有效性。配制KMO纳米乳液的最佳条件为8.04分钟(高剪切时间),4905.42 rpm(高剪切速度)和271.77 rpm(搅拌器速度),液滴大小为103.97 nm。方差分析(ANOVA)表明,二次多项式的拟合度适合具有大值(148.79)和小值(<0.0001)且拟合度不明显的实验数据。 pH值为5.75的含有KMO的优化纳米乳液显示出较高的电导率值(3.98 mS / cm),这表明含KMO的纳米乳液被鉴定为水包油型纳米乳液。该纳米乳剂在离心测试下保持稳定(无相分离),并在4、25和45°C下储存90天期间显示出加速的稳定性。细胞毒性试验表明,优化的纳米乳剂毒性较低,对细胞活力(IC)> 500μg/ mL的抑制率为50%,并且可以抑制67.12%的酪氨酸酶活性。这项研究表明,KMO是开发安全色素制剂以防止色素沉着的有前途的候选者。

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