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Optimization of Conditions for Cyanidin-3-OGlucoside (C3G) Nanoliposome Production by Response Surface Methodology and Cellular Uptake Studies in Caco-2 Cells

机译:通过响应面法和Caco-2细胞的细胞摄取研究优化Cyanidin-3-O葡萄糖苷(C3G)纳米脂质体生产条件的优化

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We aimed to optimize the formulation of C3G nanoliposomes using response surface methodology. Additionally, we evaluated the stability, particle change, and encapsulation efficiency (EE) of C3G nanoliposomes under different temperatures and storage durations, as well as in simulated gastrointestinal juice (SGF) and simulated intestinal fluid. The morphology of C3G nanoliposomes was observed by transmission electron microscope. The ability of C3G nanoliposomes to affect cancer cell morphology and inhibit cancer cell proliferation was studied with Caco-2 cells. Reverse-phase evaporation method is a simple and efficient method for liposome preparation. The optimal preparation conditions for this method were as follows: C3G concentration of 0.17 mg/mL, phosphatidylcholine/cholesterol ratio of 2.87, and rotary evaporation temperature of 41.41 °C. At optimal conditions, the particle size and EE of the C3G nanoliposomes were 165.78 ± 4.3 nm and 70.43% ± 1.95%, respectively. The C3G nanoliposomes showed an acceptable stability in SGF at 37 °C for 4 h, but were unstable under extended storage durations and high temperatures. Moreover, our results showed that different concentrations of C3G nanoliposomes affected the morphology and inhibited the proliferation of Caco-2 cells. View Full-Text
机译:我们旨在使用响应表面方法优化C3G纳米脂质体的配方。此外,我们评估了C3G纳米脂质体在不同温度和储存时间以及模拟胃肠液(SGF)和模拟肠液中的稳定性,颗粒变化和包封效率(EE)。通过透射电子显微镜观察C3G纳米脂质体的形态。使用Caco-2细胞研究了C3G纳米脂质体影响癌细胞形态和抑制癌细胞增殖的能力。反相蒸发法是制备脂质体的一种简单有效的方法。该方法的最佳制备条件如下:C3G浓度为0.17 mg / mL,磷脂酰胆碱/胆固醇比为2.87,旋转蒸发温度为41.41°C。在最佳条件下,C3G纳米脂质体的粒径和EE分别为165.78±4.3 nm和70.43%±1.95%。 C3G纳米脂质体在SGF中在37°C下持续4 h表现出可接受的稳定性,但在延长的储存时间和高温下不稳定。此外,我们的结果表明,不同浓度的C3G纳米脂质体会影响形态并抑制Caco-2细胞的增殖。查看全文

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