Enhancing the efficacy of nano-curcumin on cancer cells through mixture design optimization of three emulsifiers

姜黄素 聚乙二醇 生物利用度 Zeta电位 阿拉伯树胶 化学 粒径 溶解度 抗氧化剂 乳状液 化学工程 材料科学 纳米技术 纳米颗粒 药理学 生物化学 有机化学 物理化学 工程类 医学
作者
Zahra Sayyar,Hoda Jafarizadeh‐Malmiri
出处
期刊:BMC chemistry [Springer Nature]
卷期号:18 (1)
标识
DOI:10.1186/s13065-024-01160-z
摘要

Abstract Curcumin, a vital bioactive compound found naturally, has diverse biological applications. However, a major limitation of curcumin is its low bioavailability caused by its limited solubility in water. Hence, it is possible to overcome this problem through preparing oil in water nanodispersion of curcumin that emulsifier can play key role to produce nanodispersion. In the present study, the effect of three emulsifiers of Tween 80, Arabic Gum and Polyethylene glycol on preparing nanodispersions with desirable properties was investigated using subcritical water method and a mixture design. Zeta-potential and particle size of the achieved nanodispersions were taken into account as outcome factors. The optimum values for emulsifiers of Tween 80, Arabic Gum and Polyethylene glycol were obtained as 0.588 g, 0.639 g and 0.273 g, respectively, using the suggested model, so that obtained nanodispersion had minimum particle size (101.89 nm) and maximum zeta-potential (−24.99 mV). In fact, 102.5 nm and − 24.7 mV were obtained from experimental data at these values of emulsifiers. In addition, maximum loading potential (0.199 g/L), efficiency (99.5%), and minimum total curcumin loss (0.5%) were acquired at these optimum values. The results also show that the nanodispersion had a powerful antioxidant activity (65.27%) with extra antibacterial activity in facing with both E. coli and S. aureus strains. Moreover, curcumin nanodispersion was significantly taken up by HT-29 cells and resulted in the production of oxidative stress in the cells, leading to a decrease in the growth of cancer cells.
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