Cargando…
The Analytical Strategy of “Ion Induction and Deduction Based on Net-Hubs” for the Comprehensive Characterization of Naringenin Metabolites In Vivo and In Vitro Using a UHPLC-Q-Exactive Orbitrap Mass Spectrometer
Naringenin (5,7,4′-trihydroxyflavanone), belonging to the flavanone subclass, is associated with beneficial effects such as anti-oxidation, anticancer, anti-inflammatory, and anti-diabetic effects. Drug metabolism plays an essential role in drug discovery and clinical safety. However, due to the int...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658627/ https://www.ncbi.nlm.nih.gov/pubmed/36364106 http://dx.doi.org/10.3390/molecules27217282 |
_version_ | 1784829998101692416 |
---|---|
author | Cui, Yi-Fang Zhang, Wen-Wen Li, Ya-Nan Xu, Jing Lan, Xian-Ming Song, Shu-Yi Lin, Yong-Qiang Dai, Long Zhang, Jia-Yu |
author_facet | Cui, Yi-Fang Zhang, Wen-Wen Li, Ya-Nan Xu, Jing Lan, Xian-Ming Song, Shu-Yi Lin, Yong-Qiang Dai, Long Zhang, Jia-Yu |
author_sort | Cui, Yi-Fang |
collection | PubMed |
description | Naringenin (5,7,4′-trihydroxyflavanone), belonging to the flavanone subclass, is associated with beneficial effects such as anti-oxidation, anticancer, anti-inflammatory, and anti-diabetic effects. Drug metabolism plays an essential role in drug discovery and clinical safety. However, due to the interference of numerous endogenous substances in metabolic samples, the identification and efficient characterization of drug metabolites are difficult. Here, ultra-high-performance liquid chromatography (UHPLC) coupled with high-resolution mass spectrometry was used to obtain mass spectral information of plasma (processed by three methods), urine, feces, liver tissue, and liver microsome samples. Moreover, a novel analytical strategy named “ion induction and deduction” was proposed to systematically screen and identify naringenin metabolites in vivo and in vitro. The analysis strategy was accomplished by the establishment of multiple “net-hubs” and the induction and deduction of fragmentation behavior. Finally, 78 naringenin metabolites were detected and identified from samples of rat plasma, urine, feces, liver tissue, and liver microsomes, of which 67 were detected in vivo and 13 were detected in vitro. Naringenin primarily underwent glucuronidation, sulfation, oxidation, methylation, ring fission, and conversion into phenolic acid and their composite reactions. The current study provides significant help in extracting target information from complex samples and sets the foundation for other pharmacology and toxicology research. |
format | Online Article Text |
id | pubmed-9658627 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-96586272022-11-15 The Analytical Strategy of “Ion Induction and Deduction Based on Net-Hubs” for the Comprehensive Characterization of Naringenin Metabolites In Vivo and In Vitro Using a UHPLC-Q-Exactive Orbitrap Mass Spectrometer Cui, Yi-Fang Zhang, Wen-Wen Li, Ya-Nan Xu, Jing Lan, Xian-Ming Song, Shu-Yi Lin, Yong-Qiang Dai, Long Zhang, Jia-Yu Molecules Article Naringenin (5,7,4′-trihydroxyflavanone), belonging to the flavanone subclass, is associated with beneficial effects such as anti-oxidation, anticancer, anti-inflammatory, and anti-diabetic effects. Drug metabolism plays an essential role in drug discovery and clinical safety. However, due to the interference of numerous endogenous substances in metabolic samples, the identification and efficient characterization of drug metabolites are difficult. Here, ultra-high-performance liquid chromatography (UHPLC) coupled with high-resolution mass spectrometry was used to obtain mass spectral information of plasma (processed by three methods), urine, feces, liver tissue, and liver microsome samples. Moreover, a novel analytical strategy named “ion induction and deduction” was proposed to systematically screen and identify naringenin metabolites in vivo and in vitro. The analysis strategy was accomplished by the establishment of multiple “net-hubs” and the induction and deduction of fragmentation behavior. Finally, 78 naringenin metabolites were detected and identified from samples of rat plasma, urine, feces, liver tissue, and liver microsomes, of which 67 were detected in vivo and 13 were detected in vitro. Naringenin primarily underwent glucuronidation, sulfation, oxidation, methylation, ring fission, and conversion into phenolic acid and their composite reactions. The current study provides significant help in extracting target information from complex samples and sets the foundation for other pharmacology and toxicology research. MDPI 2022-10-26 /pmc/articles/PMC9658627/ /pubmed/36364106 http://dx.doi.org/10.3390/molecules27217282 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Cui, Yi-Fang Zhang, Wen-Wen Li, Ya-Nan Xu, Jing Lan, Xian-Ming Song, Shu-Yi Lin, Yong-Qiang Dai, Long Zhang, Jia-Yu The Analytical Strategy of “Ion Induction and Deduction Based on Net-Hubs” for the Comprehensive Characterization of Naringenin Metabolites In Vivo and In Vitro Using a UHPLC-Q-Exactive Orbitrap Mass Spectrometer |
title | The Analytical Strategy of “Ion Induction and Deduction Based on Net-Hubs” for the Comprehensive Characterization of Naringenin Metabolites In Vivo and In Vitro Using a UHPLC-Q-Exactive Orbitrap Mass Spectrometer |
title_full | The Analytical Strategy of “Ion Induction and Deduction Based on Net-Hubs” for the Comprehensive Characterization of Naringenin Metabolites In Vivo and In Vitro Using a UHPLC-Q-Exactive Orbitrap Mass Spectrometer |
title_fullStr | The Analytical Strategy of “Ion Induction and Deduction Based on Net-Hubs” for the Comprehensive Characterization of Naringenin Metabolites In Vivo and In Vitro Using a UHPLC-Q-Exactive Orbitrap Mass Spectrometer |
title_full_unstemmed | The Analytical Strategy of “Ion Induction and Deduction Based on Net-Hubs” for the Comprehensive Characterization of Naringenin Metabolites In Vivo and In Vitro Using a UHPLC-Q-Exactive Orbitrap Mass Spectrometer |
title_short | The Analytical Strategy of “Ion Induction and Deduction Based on Net-Hubs” for the Comprehensive Characterization of Naringenin Metabolites In Vivo and In Vitro Using a UHPLC-Q-Exactive Orbitrap Mass Spectrometer |
title_sort | analytical strategy of “ion induction and deduction based on net-hubs” for the comprehensive characterization of naringenin metabolites in vivo and in vitro using a uhplc-q-exactive orbitrap mass spectrometer |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658627/ https://www.ncbi.nlm.nih.gov/pubmed/36364106 http://dx.doi.org/10.3390/molecules27217282 |
work_keys_str_mv | AT cuiyifang theanalyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT zhangwenwen theanalyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT liyanan theanalyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT xujing theanalyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT lanxianming theanalyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT songshuyi theanalyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT linyongqiang theanalyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT dailong theanalyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT zhangjiayu theanalyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT cuiyifang analyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT zhangwenwen analyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT liyanan analyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT xujing analyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT lanxianming analyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT songshuyi analyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT linyongqiang analyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT dailong analyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer AT zhangjiayu analyticalstrategyofioninductionanddeductionbasedonnethubsforthecomprehensivecharacterizationofnaringeninmetabolitesinvivoandinvitrousingauhplcqexactiveorbitrapmassspectrometer |