首页> 外文OA文献 >Optimization of Mangifera indica L. Kernel Extract-Loaded Nanoemulsions via Response Surface Methodology, Characterization, Stability, and Skin Permeation for Anti-Acne Cosmeceutical Application
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Optimization of Mangifera indica L. Kernel Extract-Loaded Nanoemulsions via Response Surface Methodology, Characterization, Stability, and Skin Permeation for Anti-Acne Cosmeceutical Application

机译:通过响应表面方法,表征,稳定性和皮肤渗透抗痤疮化妆品施用优化Mangifera Indica L.烯醇提取纳米乳液的优化

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摘要

This study aimed to optimize nanoemulsions loading with Mangifera indica L. kernel extract using response surface methodology for enhancing the stability and skin permeation of the extract. Central composite design was employed for optimization and evaluation of three influencing factors including hydrophile-lipophile balance (HLB), % co-surfactant (PEG-7 glyceryl cocoate), and surfactant-to-oil ratio (SOR) on physical properties of the nanoemulsions. The desired nanoemulsions were then incorporated with the extract and characterized. Physicochemical properties of the extract-loaded nanoemulsions and their antibacterial effects against Propionibacterium acnes were also evaluated after storage at various conditions and compared to those of the initial. Ex vivo skin permeation was also investigated. The factors significantly (p < 0.05) influenced on droplet size, polydispersity index (PDI), and zeta potential, especially HLB of the surfactant and its combined effects with co-surfactant and SOR. The extract-loaded nanoemulsions revealed a very small spherical droplets (size of 26.14 ± 0.22 nm) with narrow size distribution (PDI of 0.16 ± 0.02). The formulation also presented an excellent stability profile and successfully enhanced antibacterial stability of the extract comparing with the extract solution. Ex vivo skin permeation study illustrated that the extract in nanoemulsions could be delivered through a primary skin barrier to reach viable epidermis dermis layers. In conclusion, the affinity of surfactant and hydrophilicity of the system play a crucial role in nanoemulsions’ characteristics. Such results might provide promising anti-acne nanoemulsions with the notable capacities of extract stabilization and permeation enhancing which will be further clinically evaluated.
机译:本研究旨在利用响应面方法优化用Mangifera Indica L.籽粒提取物的纳米乳液荷泊萃取物提高提取物的稳定性和皮肤渗透。中央复合设计用于优化和评估三种影响因子,包括亲水性 - 亲脂性平衡(HLB),%共表面活性剂(PEG-7甘油酯)和表面活性剂 - 与油比(SOR)的纳米乳液的物理性质。然后将所需的纳米乳液掺入提取物并表征。在各种条件下储存后,还在储存后评估提取物纳米乳液的物理化学性质及其针对丙酮痤疮丙酸杆菌的抗菌作用。还研究了exvivo皮肤渗透。显着的因素(p <0.05)影响液滴尺寸,多分散性指数(PDI)和Zeta电位,特别是表面活性剂的HLB及其与共表面活性剂和SOR的组合作用。提取的纳米乳液显示出非常小的球形液滴(尺寸为26.14±0.22nm),尺寸分布窄(PDI为0.16±0.02)。制剂还呈现出优异的稳定性曲线,并成功地增强了提取物的提取物的抗菌稳定性。 exvivo皮肤渗透研究表明,纳米乳液中的提取物可以通过主要皮肤屏障递送,以达到可行的表皮真皮层。总之,表面活性剂和系统的亲水性在纳米乳液的特征中发挥着至关重要的作用。这种结果可以提供有前途的抗痤疮纳米乳液,具有显着的提取物稳定性和渗透性增强的能力,这将在临床上进行进一步评估。

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