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Identification of an Alternative Glycyrrhizin Metabolite Causing Liquorice-Induced Pseudohyperaldosteronism and the Development of ELISA System to Detect the Predictive Biomarker

Liquorice is usually used as crude drug in traditional Japanese Kampo medicine and traditional Chinese medicine. Liquorice-containing glycyrrhizin (GL) can cause pseudohyperaldosteronism as a side effect. Previously, we identified 18β-glycyrrhetyl-3-O-sulfate (3) as a GL metabolite in Eisai hyperbil...

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Autores principales: Ishiuchi, Kan'ichiro, Morinaga, Osamu, Yoshino, Tetsuhiro, Mitamura, Miaki, Hirasawa, Asuka, Maki, Yasuhito, Tashita, Yuuna, Kondo, Tsubasa, Ogawa, Kakuyou, Lian, Fangyi, Ogawa-Ochiai, Keiko, Minamizawa, Kiyoshi, Namiki, Takao, Mimura, Masaru, Watanabe, Kenji, Makino, Toshiaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8165744/
https://www.ncbi.nlm.nih.gov/pubmed/34079468
http://dx.doi.org/10.3389/fphar.2021.688508
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author Ishiuchi, Kan'ichiro
Morinaga, Osamu
Yoshino, Tetsuhiro
Mitamura, Miaki
Hirasawa, Asuka
Maki, Yasuhito
Tashita, Yuuna
Kondo, Tsubasa
Ogawa, Kakuyou
Lian, Fangyi
Ogawa-Ochiai, Keiko
Minamizawa, Kiyoshi
Namiki, Takao
Mimura, Masaru
Watanabe, Kenji
Makino, Toshiaki
author_facet Ishiuchi, Kan'ichiro
Morinaga, Osamu
Yoshino, Tetsuhiro
Mitamura, Miaki
Hirasawa, Asuka
Maki, Yasuhito
Tashita, Yuuna
Kondo, Tsubasa
Ogawa, Kakuyou
Lian, Fangyi
Ogawa-Ochiai, Keiko
Minamizawa, Kiyoshi
Namiki, Takao
Mimura, Masaru
Watanabe, Kenji
Makino, Toshiaki
author_sort Ishiuchi, Kan'ichiro
collection PubMed
description Liquorice is usually used as crude drug in traditional Japanese Kampo medicine and traditional Chinese medicine. Liquorice-containing glycyrrhizin (GL) can cause pseudohyperaldosteronism as a side effect. Previously, we identified 18β-glycyrrhetyl-3-O-sulfate (3) as a GL metabolite in Eisai hyperbilirubinuria rats (EHBRs) with the dysfunction of multidrug resistance-related protein (Mrp2). We speculated that 3 was associated with the onset of liquorice-induced pseudohyperaldosteronism, because it was mainly detected in serum of patients with suspected to have this condition. However, it is predicted that other metabolites might exist in the urine of EHBRs orally treated with glycyrrhetinic acid (GA). We explored other metabolites in the urine of EHBRs, and investigated the pharmacokinetic profiles of the new metabolite in EHBRs and normal Sprague-Dawley rats. We further analyzed the serum concentrations of the new metabolite in the patients of pseudohyperaldosteronism. Finally, we developed the analyzing method of these metabolites as a preventive biomarker for the onset of pseudohyperaldosteronism using an enzyme-linked immunosorbent assay (ELISA). We isolated a new GL metabolite, 18β-glycyrrhetyl-3-O-sulfate-30-O-glucuronide (4). Compound 4 significantly inhibited rat type-2 11β-hydroxysteroid dehydrogenase (11β-HSD2) and was a substrate of both organic anion transporter (OAT) 1 and OAT3. Compound 4 was also detected in the serum of patients with suspected pseudohyperaldosteronism at an approximately 10-fold lower concentrations than 3, and these concentrations were positively correlated. Compound 4 showed a lower serum concentration and weaker inhibitory titer on 11β-HSD2 than 3. We developed an enzyme-linked immunosorbent assay system using an anti-18β-glycyrrhetyl-3-O-glucuronide (3MGA) monoclonal antibody to measure the serum concentration of 3 to facilitate the measurement of biomarkers to predict the onset of pseudohyperaldosteronism. Although we found 4 as the secondary candidate causative agent, 3 could be the main potent preventive biomarker of liquorice-induced pseudohyperaldosteronism. Compound 3 was detected in serum at a higher concentration than GA and 4, implying that 3 may be a pharmacologically active ingredient mediating not only the development of pseudohyperaldosteronism but anti-inflammatory effects in humans administered GL or other liquorice-containing preparations.
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spelling pubmed-81657442021-06-01 Identification of an Alternative Glycyrrhizin Metabolite Causing Liquorice-Induced Pseudohyperaldosteronism and the Development of ELISA System to Detect the Predictive Biomarker Ishiuchi, Kan'ichiro Morinaga, Osamu Yoshino, Tetsuhiro Mitamura, Miaki Hirasawa, Asuka Maki, Yasuhito Tashita, Yuuna Kondo, Tsubasa Ogawa, Kakuyou Lian, Fangyi Ogawa-Ochiai, Keiko Minamizawa, Kiyoshi Namiki, Takao Mimura, Masaru Watanabe, Kenji Makino, Toshiaki Front Pharmacol Pharmacology Liquorice is usually used as crude drug in traditional Japanese Kampo medicine and traditional Chinese medicine. Liquorice-containing glycyrrhizin (GL) can cause pseudohyperaldosteronism as a side effect. Previously, we identified 18β-glycyrrhetyl-3-O-sulfate (3) as a GL metabolite in Eisai hyperbilirubinuria rats (EHBRs) with the dysfunction of multidrug resistance-related protein (Mrp2). We speculated that 3 was associated with the onset of liquorice-induced pseudohyperaldosteronism, because it was mainly detected in serum of patients with suspected to have this condition. However, it is predicted that other metabolites might exist in the urine of EHBRs orally treated with glycyrrhetinic acid (GA). We explored other metabolites in the urine of EHBRs, and investigated the pharmacokinetic profiles of the new metabolite in EHBRs and normal Sprague-Dawley rats. We further analyzed the serum concentrations of the new metabolite in the patients of pseudohyperaldosteronism. Finally, we developed the analyzing method of these metabolites as a preventive biomarker for the onset of pseudohyperaldosteronism using an enzyme-linked immunosorbent assay (ELISA). We isolated a new GL metabolite, 18β-glycyrrhetyl-3-O-sulfate-30-O-glucuronide (4). Compound 4 significantly inhibited rat type-2 11β-hydroxysteroid dehydrogenase (11β-HSD2) and was a substrate of both organic anion transporter (OAT) 1 and OAT3. Compound 4 was also detected in the serum of patients with suspected pseudohyperaldosteronism at an approximately 10-fold lower concentrations than 3, and these concentrations were positively correlated. Compound 4 showed a lower serum concentration and weaker inhibitory titer on 11β-HSD2 than 3. We developed an enzyme-linked immunosorbent assay system using an anti-18β-glycyrrhetyl-3-O-glucuronide (3MGA) monoclonal antibody to measure the serum concentration of 3 to facilitate the measurement of biomarkers to predict the onset of pseudohyperaldosteronism. Although we found 4 as the secondary candidate causative agent, 3 could be the main potent preventive biomarker of liquorice-induced pseudohyperaldosteronism. Compound 3 was detected in serum at a higher concentration than GA and 4, implying that 3 may be a pharmacologically active ingredient mediating not only the development of pseudohyperaldosteronism but anti-inflammatory effects in humans administered GL or other liquorice-containing preparations. Frontiers Media S.A. 2021-05-17 /pmc/articles/PMC8165744/ /pubmed/34079468 http://dx.doi.org/10.3389/fphar.2021.688508 Text en Copyright © 2021 Ishiuchi, Morinaga, Yoshino, Mitamura, Hirasawa, Maki, Tashita, Kondo, Ogawa, Lian, Ogawa-Ochiai, Minamizawa, Namiki, Mimura, Watanabe and Makino. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Ishiuchi, Kan'ichiro
Morinaga, Osamu
Yoshino, Tetsuhiro
Mitamura, Miaki
Hirasawa, Asuka
Maki, Yasuhito
Tashita, Yuuna
Kondo, Tsubasa
Ogawa, Kakuyou
Lian, Fangyi
Ogawa-Ochiai, Keiko
Minamizawa, Kiyoshi
Namiki, Takao
Mimura, Masaru
Watanabe, Kenji
Makino, Toshiaki
Identification of an Alternative Glycyrrhizin Metabolite Causing Liquorice-Induced Pseudohyperaldosteronism and the Development of ELISA System to Detect the Predictive Biomarker
title Identification of an Alternative Glycyrrhizin Metabolite Causing Liquorice-Induced Pseudohyperaldosteronism and the Development of ELISA System to Detect the Predictive Biomarker
title_full Identification of an Alternative Glycyrrhizin Metabolite Causing Liquorice-Induced Pseudohyperaldosteronism and the Development of ELISA System to Detect the Predictive Biomarker
title_fullStr Identification of an Alternative Glycyrrhizin Metabolite Causing Liquorice-Induced Pseudohyperaldosteronism and the Development of ELISA System to Detect the Predictive Biomarker
title_full_unstemmed Identification of an Alternative Glycyrrhizin Metabolite Causing Liquorice-Induced Pseudohyperaldosteronism and the Development of ELISA System to Detect the Predictive Biomarker
title_short Identification of an Alternative Glycyrrhizin Metabolite Causing Liquorice-Induced Pseudohyperaldosteronism and the Development of ELISA System to Detect the Predictive Biomarker
title_sort identification of an alternative glycyrrhizin metabolite causing liquorice-induced pseudohyperaldosteronism and the development of elisa system to detect the predictive biomarker
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8165744/
https://www.ncbi.nlm.nih.gov/pubmed/34079468
http://dx.doi.org/10.3389/fphar.2021.688508
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