Graduate School of Biotechnology, Kyung Hee University, Yongin 17104, Republic of Korea.
Department of Food Science and Biotechnology, Kyung Hee University, Yongin 17104, Republic of Korea.
Food Chem. 2022 Apr 16;374:131493. doi: 10.1016/j.foodchem.2021.131493. Epub 2021 Oct 29.
Soy isoflavones (SIs) show various health benefits, such as antioxidant and estrogenic effects. It is important to understand the bioaccessibility and bioavailability of SIs due to the close relation to their bioactivities. In this study, the antioxidant capacity, bioaccessibility, and bioavailability of 12 SIs were evaluated using radical-scavenging methods, simulations of human digestion, and Caco-2 cells in Transwell, respectively. All SIs were stable (91.1-99.2%) under gastric digestion conditions compared with the control (100%), whereas acetyl and malonyl conjugates were unstable (38.5% and 65.5%, respectively) under small intestinal digestion conditions. SI aglycones showed higher permeability (7-15 times) and cellular accumulation (8.8 times) than their glucosides. A small amount of SI conjugates was intact in the cell and in the basolateral side of each Transwell. These results suggest that SI conjugates, especially malonyl and acetyl forms, have incidental bioactivity after being metabolized to aglycones inside the cell.
大豆异黄酮(SIs)具有多种健康益处,如抗氧化和雌激素作用。由于与它们的生物活性密切相关,因此了解 SIs 的生物利用度和生物可及性非常重要。在这项研究中,使用自由基清除方法、模拟人体消化和 Transwell 中的 Caco-2 细胞分别评估了 12 种 SIs 的抗氧化能力、生物利用度和生物可及性。与对照(100%)相比,所有 SIs 在胃消化条件下均稳定(91.1-99.2%),而乙酰基和丙二酰基缀合物在小肠消化条件下不稳定(分别为 38.5%和 65.5%)。SI 苷元的通透性(7-15 倍)和细胞内积累(8.8 倍)均高于其糖苷。少量的 SI 缀合物以完整的形式存在于细胞内和每个 Transwell 的基底外侧侧。这些结果表明,SI 缀合物,特别是丙二酰基和乙酰基形式,在细胞内代谢为苷元后具有偶然的生物活性。