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UPLC-MS/MS 和 UPLC-QTOF-MS 法研究 12-核苷-假人参皂苷 DG 的药代动力学和代谢。

Pharmacokinetic and Metabolism Studies of 12-Riboside-Pseudoginsengenin DQ by UPLC-MS/MS and UPLC-QTOF-MS.

机构信息

School of Pharmaceutical Sciences, Jilin University, Fujin Road 1266, Changchun 130021, China.

出版信息

Molecules. 2018 Sep 29;23(10):2499. doi: 10.3390/molecules23102499.

Abstract

Pharmacokinetic and metabolism studies of 12-riboside-pseudoginsengenin DQ (RPDQ), a novel ginsenoside with an anti-cancer effect, were carried out, aiming at discussing the characteristics of the ginsenoside with glycosylation site at C-12. In the pharmacokinetic analysis, we developed and validated a method by UPLC-MS to quantify RPDQ in rat plasma. In the range of 5⁻1000 ng/mL, the assay was linear (R² > 0.9966), with the LLOQ (lower limit of quantification) being 5 ng/mL. The LOD (limit of detection) was 1.5 ng/mL. The deviations of intra-day and inter-day, expressed as relative standard deviation (RSD), were ≤ 3.51% and ≤ 5.41% respectively. The accuracy, expressed as relative error (RE), was in the range ⁻8.823.47% and ⁻5.612.87%, respectively. The recoveries were in the range 85.66~92.90%. The method was then applied to a pharmacokinetic study in rats intragastrically administrated with 6, 12, and 24 mg/kg RPDQ. The results showed that RPDQ exhibited slow oral absorption ( = 7.0 h, 7.5 h, and 7.0 h, respectively), low elimination ( = 12.59 h, 12.83 h, and 13.74 h, respectively) and poor absolute bioavailability (5.55, 5.15, and 6.08%, respectively). Moreover, the investigation of metabolites were carried out by UPLC-QTOF-MS. Thirteen metabolites of RPDQ were characterized from plasma, bile, urine, and feces of rats. Some metabolic pathways, including oxidation, acetylation, hydration, reduction, hydroxylation, glycine conjugation, sulfation, phosphorylation, glucuronidation, glutathione conjugation, and deglycosylation, were profiled. In general, both the rapid quantitative method and a good understanding of the characteristics of RPDQ in vivo were provided in this study.

摘要

对具有抗癌作用的新型人参皂苷 12-糖苷-伪原人参二醇 DQ(RPDQ)的药代动力学和代谢研究进行了研究,旨在讨论在 C-12 糖基化位点的人参皂苷的特征。在药代动力学分析中,我们开发并验证了一种通过 UPLC-MS 定量测定大鼠血浆中 RPDQ 的方法。在 5⁻1000ng/mL 的范围内,该测定法呈线性(R²>0.9966),定量下限(LLOQ)为 5ng/mL。检测限(LOD)为 1.5ng/mL。日内和日间偏差表示为相对标准偏差(RSD),分别为≤3.51%和≤5.41%。准确度表示为相对误差(RE),分别在-8.82%3.47%和-5.61%2.87%的范围内。回收率在 85.66%~92.90%的范围内。然后,该方法应用于大鼠灌胃给予 6、12 和 24mg/kg RPDQ 的药代动力学研究。结果表明,RPDQ 表现出缓慢的口服吸收(分别为 7.0、7.5 和 7.0h)、低消除(分别为 12.59、12.83 和 13.74h)和较差的绝对生物利用度(分别为 5.55%、5.15%和 6.08%)。此外,还通过 UPLC-QTOF-MS 进行了代谢产物的研究。从大鼠血浆、胆汁、尿液和粪便中鉴定出 RPDQ 的 13 种代谢产物。描述了一些代谢途径,包括氧化、乙酰化、水合、还原、羟化、甘氨酸缀合、硫酸化、磷酸化、葡萄糖醛酸化、谷胱甘肽缀合和去糖基化。总的来说,本研究提供了一种快速定量方法和对 RPDQ 体内特征的深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5ba/6222672/a6dee204c9b6/molecules-23-02499-g001.jpg

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