Department of Neurology, Henry Ford Health, Detroit, MI 48202, USA.
Department of Pathology, University of Iowa, Iowa City, IA 52242, USA.
Molecules. 2023 Sep 21;28(18):6729. doi: 10.3390/molecules28186729.
Dietary isoflavones, a type of phytoestrogens, have gained importance owing to their health-promoting benefits. However, the beneficial effects of isoflavones are mediated by smaller metabolites produced with the help of gut bacteria that are known to metabolize these phytoestrogenic compounds into Daidzein and Genistein and biologically active molecules such as S-Equol. Identifying and measuring these phytoestrogens and their metabolites is an important step towards understanding the significance of diet and gut microbiota in human health and diseases. We have overcome the reported difficulties in quantitation of these isoflavones and developed a simplified, sensitive, non-enzymatic, and sulfatases-free extraction methodology. We have subsequently used this method to quantify these metabolites in the urine of mice using UPLC-MS/MS. The extraction and quantitation method was validated for precision, linearity, accuracy, recoveries, limit of detection (LOD), and limit of quantification (LOQ). Linear calibration curves for Daidzein, Genistein, and S-Equol were set up by performing linear regression analysis and checked using the correlation coefficient (r > 0.995). LOQs for Daidzein, Genistein, and S-Equol were 2, 4, and 2 ng/mL, respectively. This UPLC-MS/MS swift method is suitable for quantifying isoflavones and the microbial-derived metabolite S-Equol in mice urine and is particularly useful for large numbers of samples.
饮食中的异黄酮是植物雌激素的一种,由于其具有促进健康的益处而备受关注。然而,异黄酮的有益作用是通过肠道细菌帮助代谢这些植物雌激素化合物为大豆苷元和染料木黄酮以及生物活性分子如 S-Equol 来介导的。鉴定和测量这些植物雌激素及其代谢物是理解饮食和肠道微生物群在人类健康和疾病中的重要步骤。我们已经克服了报告中关于这些异黄酮定量的困难,并开发了一种简化、灵敏、非酶促且不含硫酸盐酶的提取方法。随后,我们使用这种方法使用 UPLC-MS/MS 对小鼠尿液中的这些代谢物进行定量。该提取和定量方法经过精密度、线性、准确性、回收率、检测限 (LOD) 和定量限 (LOQ) 的验证。通过进行线性回归分析并使用相关系数 (r > 0.995) 检查,为大豆苷元、染料木黄酮和 S-Equol 建立了线性校准曲线。大豆苷元、染料木黄酮和 S-Equol 的 LOQs 分别为 2、4 和 2 ng/mL。这种 UPLC-MS/MS 快速方法适用于定量小鼠尿液中的异黄酮和微生物衍生的代谢物 S-Equol,特别适用于大量样品。