CEB - Centre of Biological Engineering, University of Minho Campus de Gualtar, 4710-057 Braga, Portugal.
IBET - Institute of Experimental Biology and Technology, Avenida da República, Quinta-do-Marquês, Estação Agronómica Nacional, Apartado 12, 2781-901 Oeiras, Portugal.
Food Res Int. 2021 May;143:110278. doi: 10.1016/j.foodres.2021.110278. Epub 2021 Mar 9.
The aim of this study was to evaluate the behavior of different lipid-based nanostructures during in vitro digestion, in particular on curcumin's bioaccessibility, and to access their potential toxicity. Solid lipid nanoparticles (SLN), nanostructured lipid carriers (NLC) and nanoemulsions (NE) were submitted to harmonized static in vitro digestion and their cytotoxicity and cellular transport were evaluated using Caco-2 cell line. NE presented the highest curcumin's bioaccessibility followed by NLC and SLN, 71.1%, 63.7% and 53.3%, respectively. Free fatty acids percentage increased in the following order: NLC ≤ NE < SLN. Non-digested nanostructures and excipients presented no cytotoxicity; however, digested NE and NLC presented cytotoxicity due to MCT oil, which presented cytotoxicity after digestion. The apparent permeability coefficient of NLC was higher than SLN and NE. These results showed that lipid-based nanostructures' physical state and composition have a high influence on particles' behavior during digestion, and on their cytotoxicity/intestinal permeability, and highlights the importance of conducting cytotoxicity assessments after in vitro digestion. This work contributes to a better understanding of the behavior of lipid-based nanostructures under digestion/adsorption, and this knowledge will be useful in design of nanostructures that afford both safety and an increased bioactive compounds' bioavailability.
本研究旨在评估不同基于脂质的纳米结构在体外消化过程中的行为,特别是姜黄素的生物可及性,并评估它们的潜在毒性。固体脂质纳米粒(SLN)、纳米结构化脂质载体(NLC)和纳米乳剂(NE)均经过协调的静态体外消化处理,并使用 Caco-2 细胞系评估其细胞毒性和细胞转运。NE 表现出最高的姜黄素生物可及性,其次是 NLC 和 SLN,分别为 71.1%、63.7%和 53.3%。游离脂肪酸的百分比按以下顺序增加:NLC ≤ NE < SLN。未消化的纳米结构和赋形剂没有细胞毒性;然而,由于中链甘油三酯(MCT 油)的存在,消化后的 NE 和 NLC 表现出细胞毒性。NLC 的表观渗透系数高于 SLN 和 NE。这些结果表明,脂质基纳米结构的物理状态和组成对其在消化过程中的行为以及细胞毒性/肠道通透性有很大影响,并强调了在体外消化后进行细胞毒性评估的重要性。这项工作有助于更好地理解脂质基纳米结构在消化/吸附过程中的行为,这方面的知识将有助于设计既安全又能提高生物活性化合物生物利用度的纳米结构。