Department of Pharmacy, Birla Institute of Technology and Science, Pilani (BITS-PILANI), Rajasthan, India.
Divisions of Publications and Information and Medicinal Plants, Indian Council of Medical Research, Ministry of Health and Family Welfare, Government of India, New Delhi, India.
Biomed Chromatogr. 2022 Feb;36(2):e5275. doi: 10.1002/bmc.5275. Epub 2021 Nov 16.
Trigonelline (TR), 4-hydroxyisoleucine (4-HI), and diosgenin (DG) are the main bioactives of the purified standardized extract of the popular plant Trigonella foenum-graecum L. (TFG), and it has been proven effective for the treatment of various diseases. However, to the best of our knowledge, no study has investigated the pharmacokinetic parameters of purified standardized T. foenum-graecum extract in normal and diabetic Wistar rats. The present study has developed and validated a rapid, reliable, and sensitive simultaneous ultra-performance liquid chromatography MS method to estimate these bioactives. The chromatographic separation was achieved using methanol, acetonitrile, and 0.1% formic acid with the ideal gradient flow system on a BEH Shield RP 18 column. A positive electrospray ionization mode was selected to estimate m/z values of TR (138.14 > 94.63), 4-HI (148.19 > 74.08), and DG (415.54 > 271.33). The method was robust and reproducible over the linearity range of 60-5000, 6-5000, and 15-5000 ng/mL for TR, 4-HI, and DG, respectively. Using this novel validated method, we investigated the pharmacokinetic parameters of bioactives using Phoenix WinNonlin version 8.0 (Certera) in normal and diabetic rats. The assay was successfully applied for the estimation of pharmacokinetic parameters using noncompartmental analysis. This investigation shows that the absorption rate increased, whereas distribution and elimination processes slowed down in diabetic rats compared with normal rats.
三叶草堿(TR)、4-羟基异亮氨酸(4-HI)和薯蓣皂素(DG)是受欢迎的植物三叶草(TFG)的纯化标准化提取物中的主要生物活性物质,已被证明对治疗各种疾病有效。然而,据我们所知,没有研究调查过纯化标准化三叶草提取物在正常和糖尿病 Wistar 大鼠中的药代动力学参数。本研究开发并验证了一种快速、可靠和灵敏的同时超高效液相色谱-MS 方法来估计这些生物活性物质。色谱分离是在 BEH Shield RP 18 柱上使用甲醇、乙腈和 0.1%甲酸理想的梯度流系统实现的。选择正电喷雾电离模式来估计 TR(138.14 > 94.63)、4-HI(148.19 > 74.08)和 DG(415.54 > 271.33)的 m/z 值。该方法在 60-5000、6-5000 和 15-5000ng/mL 范围内对 TR、4-HI 和 DG 的线性范围均具有稳健性和重现性。使用这种新的验证方法,我们使用 Phoenix WinNonlin 版本 8.0(Certera)在正常和糖尿病大鼠中研究了生物活性物质的药代动力学参数。该测定成功地应用于非房室分析的药代动力学参数估计。该研究表明,与正常大鼠相比,糖尿病大鼠的吸收速率增加,而分布和消除过程减慢。