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油包水型 Elaeis guineensis 叶最佳提取物纳米乳的热力学稳定性、体外渗透性能及计算机模拟分子建模。

Thermodynamic stability, in-vitro permeability, and in-silico molecular modeling of the optimal Elaeis guineensis leaves extract water-in-oil nanoemulsion.

机构信息

Department of Chemistry, Faculty of Science, Universiti Teknologi Malaysia, 81310 UTM Johor, Bahru, Malaysia.

Enzyme Technology and Green Synthesis Group, Faculty of Science, Universiti Teknologi Malaysia, 81310 UTM Johor, Bahru, Malaysia.

出版信息

Sci Rep. 2021 Oct 21;11(1):20851. doi: 10.1038/s41598-021-00409-0.

Abstract

Nanoemulsion is a delivery system used to enhance bioavailability of plant-based compounds across the stratum corneum. Elaeis guineensis leaves are rich source of polyphenolic antioxidants, viz. gallic acid and catechin. The optimal E. guineensis leaves extract water-in-oil nanoemulsion was stable against coalescence, but it was under significant influence of Ostwald ripening over 90 days at 25 °C. The in-vitro permeability revealed a controlled and sustained release of the total phenolic compounds (TPC) of EgLE with a cumulative amount of 1935.0 ± 45.7 µgcm after 8 h. The steady-state flux and permeation coefficient values were 241.9 ± 5.7 µgcm h and 1.15 ± 0.03 cm.h, respectively. The kinetic release mechanism for TPC of EgLE was best described by the Korsmeyer-Peppas model due to the highest linearity of R = 0.9961, indicating super case II transport mechanism. The in-silico molecular modelling predicted that the aquaporin-3 protein in the stratum corneum bonded preferably to catechin over gallic acid through hydrogen bonds due to the lowest binding energies of - 57.514 kcal/mol and - 8.553 kcal/mol, respectively. Thus, the in-silico study further verified that catechin could improve skin hydration. Therefore, the optimal nanoemulsion could be used topically as moisturizer to enhance skin hydration based on the in-silico prediction.

摘要

纳米乳是一种传递系统,用于增强植物化合物在角质层中的生物利用度。油棕叶是多酚抗氧化剂的丰富来源,例如没食子酸和儿茶素。最佳的油棕叶提取物水包油纳米乳在 25°C 下 90 天内,尽管对奥斯特瓦尔德熟化有显著影响,但仍保持稳定。体外渗透实验表明,EgLE 的总酚类化合物(TPC)以受控和持续的方式释放,8 小时后累积量为 1935.0±45.7µgcm。稳态通量和渗透系数值分别为 241.9±5.7µgcm h 和 1.15±0.03 cm.h。由于 TPC 的释放机制最符合 Korsmeyer-Peppas 模型(R=0.9961),表明超二级转运机制,因此,EgLE 的 TPC 释放动力学机制最好。由于最低的结合能分别为-57.514 kcal/mol 和-8.553 kcal/mol,因此,在皮肤角质层中,Aquaporin-3 蛋白与儿茶素的氢键结合优于与没食子酸的氢键结合。因此,基于计算机模拟研究,儿茶素可以改善皮肤保湿。因此,最佳纳米乳可以作为保湿剂局部使用,根据计算机模拟预测可以增强皮肤保湿。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5856/8531315/65c591e2324d/41598_2021_409_Fig1_HTML.jpg

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