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The Modulatory Role of CYP3A4 in Dictamnine-Induced Hepatotoxicity

Dictamni Cortex (DC) has been reported to be associated with acute hepatitis in clinic and may lead to a selective sub-chronic hepatotoxicity in rats. Nevertheless, the potent toxic ingredient and the underlying mechanism remain unknown. Dictamnine (DTN), the main alkaloid from DC, possesses a furan...

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Autores principales: Li, Zhuo-Qing, Jiang, Li-Long, Zhao, Dong-Sheng, Zhou, Jing, Wang, Ling-Li, Wu, Zi-Tian, Zheng, Xian, Shi, Zi-Qi, Li, Ping, Li, Hui-Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6156363/
https://www.ncbi.nlm.nih.gov/pubmed/30283337
http://dx.doi.org/10.3389/fphar.2018.01033
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author Li, Zhuo-Qing
Jiang, Li-Long
Zhao, Dong-Sheng
Zhou, Jing
Wang, Ling-Li
Wu, Zi-Tian
Zheng, Xian
Shi, Zi-Qi
Li, Ping
Li, Hui-Jun
author_facet Li, Zhuo-Qing
Jiang, Li-Long
Zhao, Dong-Sheng
Zhou, Jing
Wang, Ling-Li
Wu, Zi-Tian
Zheng, Xian
Shi, Zi-Qi
Li, Ping
Li, Hui-Jun
author_sort Li, Zhuo-Qing
collection PubMed
description Dictamni Cortex (DC) has been reported to be associated with acute hepatitis in clinic and may lead to a selective sub-chronic hepatotoxicity in rats. Nevertheless, the potent toxic ingredient and the underlying mechanism remain unknown. Dictamnine (DTN), the main alkaloid from DC, possesses a furan ring which was suspected of being responsible for hepatotoxicity via metabolic activation primarily by CYP3A4. Herein, the present study aimed to evaluate the role of CYP3A4 in DTN-induced liver injury. The in vitro results showed that the EC(50) values in primary human hepatocytes (PHH), L02, HepG2 and NIH3T3 cells were correlated with the CYP3A4 expression levels in corresponding cells. Furthermore, the toxicity was increased in CYP3A4-induced PHH by rifampicin, and CYP3A4 over-expressed (OE) HepG2 and L02 cells. Contrarily, the cytotoxicity was decreased in CYP3A4-inhibited PHH and CYP3A4 OE HepG2 and L02 cells inhibited by ketoconazole (KTZ). In addition, the hepatotoxicity of DTN in enzyme induction/inhibition mice was further investigated in the aspects of biochemistry, histopathology, and pharmacokinetics. Administration of DTN in combination with KTZ resulted in attenuated liver injury, including lower alanine transaminase and aspartate transaminase activities and greater AUC and C(max) of serum DTN, whereas, pretreatment with dexamethasone aggravated the injury. Collectively, our findings illustrated that DTN-induced hepatotoxicity correlated well with the expression of CYP3A4, namely inhibition of CYP3A4 alleviated the toxicity both in vitro and in vivo, and induction aggravated the toxicity effects.
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spelling pubmed-61563632018-10-03 The Modulatory Role of CYP3A4 in Dictamnine-Induced Hepatotoxicity Li, Zhuo-Qing Jiang, Li-Long Zhao, Dong-Sheng Zhou, Jing Wang, Ling-Li Wu, Zi-Tian Zheng, Xian Shi, Zi-Qi Li, Ping Li, Hui-Jun Front Pharmacol Pharmacology Dictamni Cortex (DC) has been reported to be associated with acute hepatitis in clinic and may lead to a selective sub-chronic hepatotoxicity in rats. Nevertheless, the potent toxic ingredient and the underlying mechanism remain unknown. Dictamnine (DTN), the main alkaloid from DC, possesses a furan ring which was suspected of being responsible for hepatotoxicity via metabolic activation primarily by CYP3A4. Herein, the present study aimed to evaluate the role of CYP3A4 in DTN-induced liver injury. The in vitro results showed that the EC(50) values in primary human hepatocytes (PHH), L02, HepG2 and NIH3T3 cells were correlated with the CYP3A4 expression levels in corresponding cells. Furthermore, the toxicity was increased in CYP3A4-induced PHH by rifampicin, and CYP3A4 over-expressed (OE) HepG2 and L02 cells. Contrarily, the cytotoxicity was decreased in CYP3A4-inhibited PHH and CYP3A4 OE HepG2 and L02 cells inhibited by ketoconazole (KTZ). In addition, the hepatotoxicity of DTN in enzyme induction/inhibition mice was further investigated in the aspects of biochemistry, histopathology, and pharmacokinetics. Administration of DTN in combination with KTZ resulted in attenuated liver injury, including lower alanine transaminase and aspartate transaminase activities and greater AUC and C(max) of serum DTN, whereas, pretreatment with dexamethasone aggravated the injury. Collectively, our findings illustrated that DTN-induced hepatotoxicity correlated well with the expression of CYP3A4, namely inhibition of CYP3A4 alleviated the toxicity both in vitro and in vivo, and induction aggravated the toxicity effects. Frontiers Media S.A. 2018-09-19 /pmc/articles/PMC6156363/ /pubmed/30283337 http://dx.doi.org/10.3389/fphar.2018.01033 Text en Copyright © 2018 Li, Jiang, Zhao, Zhou, Wang, Wu, Zheng, Shi, Li and Li. http://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
Li, Zhuo-Qing
Jiang, Li-Long
Zhao, Dong-Sheng
Zhou, Jing
Wang, Ling-Li
Wu, Zi-Tian
Zheng, Xian
Shi, Zi-Qi
Li, Ping
Li, Hui-Jun
The Modulatory Role of CYP3A4 in Dictamnine-Induced Hepatotoxicity
title The Modulatory Role of CYP3A4 in Dictamnine-Induced Hepatotoxicity
title_full The Modulatory Role of CYP3A4 in Dictamnine-Induced Hepatotoxicity
title_fullStr The Modulatory Role of CYP3A4 in Dictamnine-Induced Hepatotoxicity
title_full_unstemmed The Modulatory Role of CYP3A4 in Dictamnine-Induced Hepatotoxicity
title_short The Modulatory Role of CYP3A4 in Dictamnine-Induced Hepatotoxicity
title_sort modulatory role of cyp3a4 in dictamnine-induced hepatotoxicity
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6156363/
https://www.ncbi.nlm.nih.gov/pubmed/30283337
http://dx.doi.org/10.3389/fphar.2018.01033
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