Department of Food Science and Technology, College of Food Science and Technology, Hunan Agricultural University, No. 1 Nongda Road, Furong District, Changsha, Hunan 410128, China.
Department of Food Science and Technology, College of Food Science and Technology, Hunan Agricultural University, No. 1 Nongda Road, Furong District, Changsha, Hunan 410128, China; Hunan Rapeseed Oil Nutrition Health and Deep Development Engineering Technology Research Center, Hunan Agricultural University, No. 1 Nongda Road, Furong District, Changsha, Hunan 410128, China.
Food Res Int. 2024 Sep;191:114708. doi: 10.1016/j.foodres.2024.114708. Epub 2024 Jun 27.
Pentacyclic triterpenes have attracted much attention because of their many bioactivities, but their bioaccessibility is low. Oleanolic acid (OA) was used in this study as a typical edible pentacyclic triterpene. In this work, we proposed an OA interfacial delivery model based on W/O Pickering emulsion, and investigated the effects of different oil types on the emulsion properties and OA bioaccessibility of the OA W/O Pickering emulsion interfacial delivery system (EIDS). Medium chain triglyceride (MCT), long chain triglycerides (LCT) and MCT/LCT (1:1, w/w) were selected as carrier oils for the preparation of emulsions, respectively. The results showed that the emulsions formed from LCT had smaller particle sizes, which increased the deformation resistance of the emulsions and exhibited good stability during the simulated in vitro digestion. The extent of free fatty acid (FFA) release during oil digestion was MCT (103.32 ± 3.74 %) > M/L (97.89 ± 2.89 %) > LCT (71.41 ± 6.64 %). Of interest, the bioaccessibility of OA was influenced by the carrier oil: LCT (59.34 ± 2.55 %) > M/L (47.35 ± 6.25 %) > MCT (13.11 ± 1.40 %) > PBS (7.11 ± 1.74 %), and such a difference was mainly attributed to the greater solubilisation of OA in mixed micelles consisting of long-chain fatty acids. In summary, the size of hydrophobic domains in the mixed micelles produced a greater effect than the effect of FFA release on OA bioaccessibility. This study provides a theoretical basis for the interfacial delivery of OA and the enhancement of OA bioaccessibility based on W/O Pickering emulsions with different oil types.
五环三萜因其多种生物活性而备受关注,但生物利用度较低。齐墩果酸(OA)在本研究中被用作典型的可食用五环三萜。在这项工作中,我们提出了一种基于 W/O Pickering 乳液的 OA 界面传递模型,并研究了不同油相类型对乳液性质和 OA 五环三萜 W/O Pickering 乳液界面传递系统(EIDS)中 OA 生物利用度的影响。分别选择中链甘油三酯(MCT)、长链甘油三酯(LCT)和 MCT/LCT(1:1,w/w)作为载体油来制备乳液。结果表明,LCT 形成的乳液粒径较小,增加了乳液的变形阻力,在模拟体外消化过程中表现出良好的稳定性。油消化过程中游离脂肪酸(FFA)释放的程度为 MCT(103.32±3.74%)>M/L(97.89±2.89%)>LCT(71.41±6.64%)。有趣的是,OA 的生物利用度受载体油的影响:LCT(59.34±2.55%)>M/L(47.35±6.25%)>MCT(13.11±1.40%)>PBS(7.11±1.74%),这种差异主要归因于长链脂肪酸形成的混合胶束中 OA 的溶解度更大。总之,混合胶束中疏水区的大小对 OA 生物利用度的影响大于 FFA 释放的影响。该研究为不同油相类型的 W/O Pickering 乳液中 OA 的界面传递和生物利用度的提高提供了理论依据。