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麦卢卡蜂蜜中莱普蒂森代谢的细胞动力学。

Dynamics of the Cellular Metabolism of Leptosperin Found in Manuka Honey.

机构信息

Faculty of Life and Environmental Science , Shimane University , Matsue , Shimane 690-8504 , Japan.

Graduate School of Environmental and Life Science , Okayama University , Okayama 700-0082 , Japan.

出版信息

J Agric Food Chem. 2019 Oct 2;67(39):10853-10862. doi: 10.1021/acs.jafc.9b03894. Epub 2019 Sep 20.

Abstract

Leptosperin (methyl syringate β-d-gentiobioside) is abundantly found in manuka honey, which is widely used because of its antibacterial and possible anti-inflammatory activities. The aim of this study was to examine the molecular mechanism underlying the metabolism of leptosperin. Five phytochemicals (leptosperin, methyl syringate (MSYR), glucuronate conjugate of MSYR (MSYR-GA), sulfonate conjugate of MSYR (MSYR-S), and syringic acid (SYR)) were separately incubated with HepG2 and Caco-2 cells. After incubation, we found that the concentration of MSYR decreased, whereas the concentrations of SYR, MSYR-GA, and MSYR-S increased. By profiling with inhibitors and carboxylesterases (CES1, 2), we found that the conversion from MSYR to SYR was mediated by CES1. Lipopolysaccharide-stimulated RAW264.7 cells restored MSYR-GA to MSYR possibly by the secreted β-glucuronidase. All of the mice administered with leptosperin, MSYR, or manuka honey showed higher MSYR (13.84 ± 11.51, 14.29 ± 9.19, or 6.66 ± 2.30 nM) and SYR (1.85 ± 0.66, 6.01 ± 1.20, or 8.16 ± 3.10 nM) levels in the plasma compared with that of the vehicle controls (3.33 ± 1.45 (MSYR) and 1.85 ± 0.66 (SYR) nM). The findings of our study indicate that the unique metabolic pathways of these compounds may account for possible functionalities of manuka honey.

摘要

勒托斯珀林(甲基丁香苷-β-D-龙胆二糖苷)大量存在于麦卢卡蜂蜜中,由于其具有抗菌和可能的抗炎活性,因此被广泛使用。本研究旨在探讨勒托斯珀林代谢的分子机制。将五种植物化学物质(勒托斯珀林、甲基丁香苷(MSYR)、MSYR 的葡萄糖醛酸轭合物(MSYR-GA)、MSYR 的磺酸盐轭合物(MSYR-S)和丁香酸(SYR))分别与 HepG2 和 Caco-2 细胞孵育。孵育后,我们发现 MSYR 的浓度降低,而 SYR、MSYR-GA 和 MSYR-S 的浓度增加。通过抑制剂和羧酸酯酶(CES1、2)的谱分析,我们发现 MSYR 向 SYR 的转化是由 CES1 介导的。脂多糖刺激的 RAW264.7 细胞通过分泌的β-葡萄糖醛酸酶将 MSYR-GA 恢复为 MSYR。给予勒托斯珀林、MSYR 或麦卢卡蜂蜜的所有小鼠的血浆中 MSYR(13.84±11.51、14.29±9.19 或 6.66±2.30 nM)和 SYR(1.85±0.66、6.01±1.20 或 8.16±3.10 nM)水平均高于载体对照组(3.33±1.45(MSYR)和 1.85±0.66(SYR)nM)。本研究的结果表明,这些化合物的独特代谢途径可能解释了麦卢卡蜂蜜的可能功能。

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