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首页> 外文期刊>Journal of biomaterials and nanobiotechnology. >Synthesis and Characterization of &i&Citrus limonum&/i& Essential Oil Based Nanoemulsion and Its Enhanced Antioxidant Activity with Stability for Transdermal Application
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Synthesis and Characterization of &i&Citrus limonum&/i& Essential Oil Based Nanoemulsion and Its Enhanced Antioxidant Activity with Stability for Transdermal Application

机译:合成和表征& I&柑橘柠檬醇溶& / i&基于精油的纳米乳剂及其增强抗氧化活性,具有透皮应用的稳定性

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摘要

Lemon oil (LO), also known as Citrus limonum is a highly volatile essential oil (EO) with potential therapeutic properties like anti-oxidative, anti-proliferative, anti-fungal and anti-cancerous. However, the efficacy of LO is limited due to its physiological factors such as high volatility, poor stability (particularly sensitive to sunlight) and quick degradability upon exposure. To overcome these challenges, we formulated lemon oil loaded nanoemulsion system (LO-NE) (oil-in-water), using aqueous titration method. The formulation comprised of lemon oil (LO), Tween 80 and ethanol as oil, surfactant and co-surfactant phases respectively. The existence zone of NE was established by constructing pseudo-ternary phase diagrams using different concentrations of LO, surfactant and co-surfactant (S_(mix)). The quantitative estimation of LO was performed using a high throughput gas chromatography, revealing the presence of various compounds like Limonene, Alpha-Pinene and Linalyl acetate followed by the estimation of total phenolics and flavonoid content. The characterization of LO-NE indicated the particle size of 60 ± 2.5 nm along with the polydispersity index of 0.125 and zeta potential of − 14.9 mV. The size range of the NE particles dispersed in the colloidal system was further verified by TEM micrograph which shows size range between 46.2 - 104.7 nm. All the anti-oxidant assays outcomes exhibited the higher activity of LO-NE in comparison to LO alone with lower IC_(50) values. The release kinetics statistical data showed that LO-NE had a sustained release and followed the Higuchi’s model in comparison to burst release of LO alone. Lastly, the stability analysis of the optimised formulation (LO-NE) and LO was estimated through antioxidant assay and subjecting them for thermodynamic stability after 6 months. The results attained, showed higher stability and anti-oxidant capability of LO-NE than LO alone. The study suggested that formulated nanoemulsion can be effectively used as a highly efficacious biologically active alternative nanoformulation against many transdermal disorders.
机译:柠檬油(LO),也称为柑橘Limonum是一种高挥发性精油(EO),具有抗氧化,抗增殖,抗真菌和抗癌变的潜在治疗性质。然而,由于其生理因素,例如高挥发性,稳定性(对阳光特别敏感)和快速降解性,因此由于其生理因素而受到限制。为了克服这些挑战,我们使用滴定法配制柠檬油负载纳米乳液系统(LO-NE)(水包油)。制剂分别由柠檬油(LO),吐温80和乙醇作为油,表面活性剂和共表面活性剂相。通过使用不同浓度的LO,表面活性剂和共表面活性剂构建伪三元相图(S_(MIX))来建立NE的存在区。使用高通量气相色谱法进行LO的定量估计,揭示各种化合物,如柠檬烯,α-折烯和乙酸盐等各种化合物,然后估计总酚类和黄酮含量。 LO-NE的表征表明粒度为60±2.5nm,以及0.125的多分散指数和Zeta潜力的− 14.9 mV。分散在胶体系统中的NE颗粒的尺寸范围进一步通过TEM显微照片进一步验证,其显示在46.2-104.7nm之间的尺寸范围。所有抗氧化剂测定结果表现出LO-NE的较高活性与单独的LO单独具有较低的IC_(50)值。释放动力学统计数据显示,LO-NE有一个持续的释放,并遵循HIGUCHI的模型,与单独的LO爆发爆发。最后,通过抗氧化测定估计优化的制剂(LO-NE)和LO的稳定性分析,并在6个月后对其进行热力学稳定性。达到的结果表明了LO-NE的稳定性和抗氧化能力较高。该研究表明,配制的纳米乳液可以有效地用作许多透皮病症的高度有效的生物活性替代纳米造型。

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