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Encapsulation of Mangosteen Extract in Virgin Coconut Oil Based Nanoemulsions: Preparation and Characterization for Topical Formulation

机译:山竹提取物在初榨椰子油基纳米乳剂中的包封:外用制剂的制备和表征

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摘要

Nanoemulsions containing extract of mangosteen (iGarcinia mangostana/i L.) rind has been developed and characterized as a topical formulation. The encapsulation of mangosteen extract in nanoemulsions is considered a promising strategy to utilize the available bioactive compounds, particularly α-mangostin. In this study, a high-speed homogenization method was used to produce nanoemulsions of virgin coconut oil as the oil phase, combined Tween 80 and Span 80 as the oil-in-water surfactant, and distilled water as the aqueous phase. The homogenizer speed, oil and surfactant composition, and, hydrophilic lipophilic balance values of the surfactants were varied in order to get stable nanoemulsions formulation. The most stable nanoemulsion was obtained using a homogenizer speed of 8000 rpm, oil to surfactant volume ratio of 1:1.4, and surfactant hydrophilic lipophilic balance value of 12. Nanoemulsion formulation with average droplet size of 181 nm, zeta potential of -30.9 mV, and 0.01% α-mangostin loading was stable for 28 days without phase separation. Based on the accelerated stability test, the nanoemulsion shelf life is estimated to reach one year. The present study revealed that the virgin coconut oil-based nanoemulsion is a promising carrier of mangosteen extract for topical formulation.
机译:已经开发出包含山竹果皮( L。)果皮提取物的纳米乳剂,并将其表征为局部用制剂。山竹提取物在纳米乳剂中的包封被认为是一种利用可利用的生物活性化合物,尤其是α-山竹素的有前途的策略。在这项研究中,使用高速均质化方法生产纯椰子油的纳米乳剂作为油相,将Tween 80和Span 80组合作为水包油型表面活性剂,并用蒸馏水作为水相。为了得到稳定的纳米乳液制剂,改变了均质器的速度,油和表面活性剂的组成以及表面活性剂的亲水亲脂平衡值。使用8000 rpm的均质器速度,油与表面活性剂的体积比为1:1.4,表面活性剂亲水性亲脂平衡值为12可获得最稳定的纳米乳液。纳米乳液配方的平均液滴尺寸为181 nm,ζ电位为-30.9 mV, 0.01%α-Mangostin负载稳定28天而没有相分离。根据加速稳定性测试,估计纳米乳液的保存期限可达一年。本研究表明,初榨椰子油基纳米乳液是山竹提取物用于局部制剂的有希望的载体。

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