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Improved Antioxidant Capacity of Optimization of a Self-Microemulsifying Drug Delivery System for Resveratrol

机译:优化的白藜芦醇自微乳化释药系统的抗氧化能力

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The use of nano-encapsulated resveratrol (RSV) in self-micro-emulsified drug delivery systems (SMEDDS) formulations was investigated. Self-emulsifying grading tests were used to establish the optimal ratio of oil, surfactant, and co-surfactant. The optimized system was further investigated for the droplet size and zeta potential at the different medium pH values by a Malvern Zetasizer and transmission electron microscopy (TEM). The antioxidant capacity and cytotoxicity of the formulation were detected by DCFH-DA and a CCK-8 assays. The results showed that the nano-emulsion based on ethyl oleate, Tween-80, and PEG-400 (35:40:25, w/w/w) was the most stable formulation due to the small droplet size (approximately 50 nm) and high zeta potential in a neutral environment. Furthermore, this formulation also exhibited a greater antioxidant capacity with less toxicity than free RSV. Taken together, considering these results and the simple fabrication process, this formulation could be used to deliver nutritional food supplements in a stable, efficient, and safe manner.
机译:研究了纳米囊化白藜芦醇(RSV)在自微乳化药物递送系统(SMEDDS)配方中的使用。自乳化分级测试用于确定油,表面活性剂和助表面活性剂的最佳比例。通过Malvern Zetasizer和透射电子显微镜(TEM)进一步研究了优化的系统在不同介质pH值下的液滴大小和zeta电位。通过DCFH-DA和CCK-8测定法检测制剂的抗氧化能力和细胞毒性。结果表明,基于油酸乙酯,Tween-80和PEG-400的纳米乳液(35:40:25,w / w / w)由于液滴尺寸小(约50 nm)是最稳定的配方在中性环境中具有很高的ζ电位。此外,与游离RSV相比,该制剂还表现出更大的抗氧化剂能力和更少的毒性。综上所述,考虑到这些结果和简单的制造过程,该制剂可用于以稳定,有效和安全的方式递送营养食品补充剂。

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