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Nanoemulsions for Enhancement of Curcumin Bioavailability and Their Safety Evaluation: Effect of Emulsifier Type

机译:用于提高姜黄素生物利用度的纳米乳剂及其安全评价:乳化剂类型的影响

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摘要

This work aimed at evaluating the effects of different emulsifiers on curcumin-loaded nanoemulsions’ behavior during digestion, its safety and absorption, to develop nanoemulsions that provide safety and improved curcumin functionality. Nanoemulsions (NEs) were produced using two bio-based (lecithin (LEC) and rhamnolipids (RHAM)) and one synthetic (Tween®80 (TWE)) emulsifier at similar concentrations. Different NEs were subjected to in vitro digestion. The cytotoxicity and permeability tests were performed in Caco-2 cells. NE_TWE were stable during all phases of in vitro digestion, whereas NE_LEC and NE_RHAM were found to be unstable from the gastric phase. NE_TWE showed 100% of free fatty acids released, followed by NE_RHAM and NE_LEC. Curcumin’s bioaccessibility and stability increased in the following order: NE_LEC > NE_RHAM > NE_TWE. NE_LEC and NE_TWE did not show cytotoxic effects in any of the concentrations tested, while NE_RHAM presented high cytotoxicity in all concentrations tested. The apparent permeability coefficients were determined for NE_LEC and NE_TWE; however, the results were not statistically different. These results showed that the emulsifier used has a high impact on nanoemulsions’ behavior under the digestion process and on their cytotoxicity. This work contributed to the state-of-the-art’s progress on the development of safer curcumin delivery systems with improved functionality, particularly regarding the proper selection of ingredients to produce said systems.
机译:这项工作旨在评估不同乳化剂对消化,安全性和吸收期间姜黄素的纳米乳液的行为的影响,以开发提供安全性和改善姜黄素功能的纳米乳液。使用两种生物基(LECITH(LEC)和鼠李酮(RHAM))和一种合成(TWEEN80(TWE))乳化剂以相似浓度生产纳米乳液(NES)。对不同的NE进行体外消化。在Caco-2细胞中进行细胞毒性和渗透性试验。在体外消化的所有阶段,NE_TWE稳定,而NE_LEC和NE_RHAM被发现与胃相中不稳定。 NE_TWE显示100%的游离脂肪酸释放,其次是NE_RHAM和NE_LEC。姜黄素的生物访问性和稳定性按以下顺序增加:NE_LEC> NE_RHAM> NE_TWE。 NE_LEC和NE_TWE未显示在任何测试的任何浓度中的细胞毒性效应,而NE_RHAM在测试的所有浓度下呈现出高细胞毒性。为NE_LEC和NE_TWE确定表观渗透系数;然而,结果没有统计学不同。这些结果表明,使用的乳化剂对消化过程和它们的细胞毒性下的纳米乳液的行为产生高。这项工作促进了最先进的关于具有改进功能的更安全姜黄素递送系统的进展,特别是关于生产所述系统的正确选择。

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