首页> 外文期刊>Evidence-based complementary and alternative medicine: eCAM >Preparation of a Nanoemulsion with Carapa guianensis Aublet (Meliaceae) Oil by a Low-Energy/Solvent-Free Method and Evaluation of Its Preliminary Residual Larvicidal Activity
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Preparation of a Nanoemulsion with Carapa guianensis Aublet (Meliaceae) Oil by a Low-Energy/Solvent-Free Method and Evaluation of Its Preliminary Residual Larvicidal Activity

机译:用低能/溶剂的方法用CarapaGuianensis毒物(Meliaceae)油的纳米乳液的制备及其初步残留幼稚活性的评价

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摘要

Andiroba (Carapa guianensis) seeds are the source of an oil with a wide range of biological activities and ethnopharmacological uses. However, few studies have devoted attention to innovative formulations, including nanoemulsions. The present study aimed to obtain a colloidal system with the andiroba oil using a low-energy and organic-solvent-free method. Moreover, the preliminary residual larvicidal activity of the nanoemulsion against Aedes aegypti was evaluated. Oleic and palmitic acids were the major fatty acids, in addition to the phytosterol beta-sitosterol and limonoids (tetranortriterpenoids). The required hydrophile-lipophile was around 11.0 and the optimal nanoemulsion was obtained using polysorbate 85. The particle size distribution suggested the presence of small droplets (mean diameter around 150 nm) and low polydispersity index (around 0.150). The effect of temperature on particle size distribution revealed that no major droplet size increase occurred. The preliminary residual larvicidal assay suggested that the mortality increased as a function of time. The present study allowed achievement of a potential bioactive oil in water nanoemulsion that may be a promising controlled release system. Moreover, the ecofriendly approach involved in the preparation associated with the great bioactive potential of C. guianensis makes this nanoemulsion very promising for valorization of this Amazon raw material.
机译:Andiroba(Carapa Guianensis)种子是具有广泛的生物活动和民族医药用途的油来源。然而,很少有研究致力于创新的制剂,包括纳米乳液。本研究旨在使用低能量和有机溶剂的方法获得胶体系统。此外,评估了纳米乳液对AEDESAEGYPTI的初始残留幼虫活性。除了植物甾醇β-谷甾醇和唇脂糖醇(四纹状体萜类)之外,油酸和棕榈酸还是主要脂肪酸。所需的亲水性 - 脂质胆综合约为11.0,并且使用聚山梨醇酯85获得最佳纳米乳液。粒度分布表明存在小液滴(平均直径约为150nm)和低多分散性指数(约0.150)。温度对粒度分布的影响表明,没有发生重大液滴尺寸。初步残留的幼虫病,表明死亡率随着时间的推移而增加。本研究允许在水纳米乳液中实现潜在的生物活性油,这可能是有希望的控释系统。此外,涉及与C.Guianensis的巨大生物活性潜力相关的制剂的生态繁体方法使得这种纳米乳液非常有前途的亚马逊原料的贪污。

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