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Targeted Proteomic Analysis of Drug Metabolizing Enzymes in Exosomes Secreted by HepG2 Cells
Mapping Intimacies
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10.26226/morressier.57ea3d6ad462b8028d88eb8c
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2016
◽
Author(s):
Laura Michelle Drbohlav
Keyword(s):
Proteomic Analysis
◽
Hepg2 Cells
◽
Drug Metabolizing Enzymes
◽
Metabolizing Enzymes
Download Full-text
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Faculty Opinions recommendation of Transcriptomic and quantitative proteomic analysis of transporters and drug metabolizing enzymes in freshly isolated human brain microvessels.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
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10.3410/f.722815027.793514996
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2016
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Author(s):
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Keyword(s):
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GASP and FASP are Complementary for LC-MS/MS Proteomic Analysis of Drug-Metabolizing Enzymes and Transporters in Pig Liver
PROTEOMICS
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10.1002/pmic.201800200
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2018
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Vol 18
(24)
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pp. 1800200
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Cited By ~ 5
Author(s):
Martyn Howard
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Brahim Achour
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Zubida Al-Majdoub
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Jill Barber
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Targeted quantitative proteomic analysis of drug metabolizing enzymes and transporters by nano LC-MS/MS in the sandwich cultured human hepatocyte model
Journal of Pharmacological and Toxicological Methods
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10.1016/j.vascn.2019.106590
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2019
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Vol 98
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pp. 106590
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Cited By ~ 7
Author(s):
Raju Khatri
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John K. Fallon
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Rebecca J.B. Rementer
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Natasha T. Kulick
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Craig R. Lee
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...
Keyword(s):
Proteomic Analysis
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Human Hepatocyte
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Drug Metabolizing Enzymes
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Metabolizing Enzymes
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Quantitative Proteomic Analysis
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Global Proteomic Analysis of Human Liver Microsomes: Rapid Characterization and Quantification of Hepatic Drug-Metabolizing Enzymes
Drug Metabolism and Disposition
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10.1124/dmd.116.074732
◽
2017
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Vol 45
(6)
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pp. 666-675
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Cited By ~ 24
Author(s):
Brahim Achour
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Hajar Al Feteisi
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Francesco Lanucara
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Amin Rostami-Hodjegan
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Jill Barber
Keyword(s):
Proteomic Analysis
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Human Liver
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Liver Microsomes
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Human Liver Microsomes
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Drug Metabolizing Enzymes
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Metabolizing Enzymes
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Hepatic Drug
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Rapid Characterization
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Differential Detergent Fractionation of Membrane Protein From Small Samples of Hepatocytes and Liver Tissue for Quantitative Proteomic Analysis of Drug Metabolizing Enzymes and Transporters
Journal of Pharmaceutical Sciences
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10.1016/j.xphs.2020.10.037
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2021
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Vol 110
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pp. 87-96
Author(s):
Rani J. Qasem
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John K. Fallon
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Manisha Nautiyal
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Merrie Mosedale
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Philip C. Smith
Keyword(s):
Membrane Protein
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Proteomic Analysis
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Liver Tissue
◽
Small Samples
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Drug Metabolizing Enzymes
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Metabolizing Enzymes
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Quantitative Proteomic Analysis
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Salvianolic acid B modulates the expression of drug-metabolizing enzymes in HepG2 cells
Hepatobiliary & Pancreatic Diseases International
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10.1016/s1499-3872(11)60085-4
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2011
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Vol 10
(5)
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pp. 502-508
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Author(s):
Qing-Lan Wang
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Quoc Wu
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Yan-Yan Tao
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Cheng-Hai Liu
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Keyword(s):
Hepg2 Cells
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Salvianolic Acid B
◽
Drug Metabolizing Enzymes
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Metabolizing Enzymes
◽
Salvianolic Acid
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A physiological concentration of luteolin induces phase II drug-metabolizing enzymes through the ERK1/2 signaling pathway in HepG2 cells
Archives of Biochemistry and Biophysics
◽
10.1016/j.abb.2019.01.012
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2019
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Vol 663
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pp. 151-159
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Author(s):
Tomoya Kitakaze
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Yoko Yamashita
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Signaling Pathway
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Phase Ii
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Hepg2 Cells
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Drug Metabolizing Enzymes
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Physiological Concentration
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Metabolizing Enzymes
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Upgrading HepG2 cells with adenoviral vectors that encode drug-metabolizing enzymes: application for drug hepatotoxicity testing
Expert Opinion on Drug Metabolism & Toxicology
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10.1080/17425255.2017.1238459
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2016
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Vol 13
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pp. 137-148
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M. José Gómez-Lechón
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Laia Tolosa
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Hepg2 Cells
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Black soybean seed coat polyphenols prevent B(a)P-induced DNA damage through modulating drug-metabolizing enzymes in HepG2 cells and ICR mice
Mutation Research/Genetic Toxicology and Environmental Mutagenesis
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10.1016/j.mrgentox.2013.01.002
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2013
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Vol 752
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pp. 34-41
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Author(s):
Tianshun Zhang
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Songyan Jiang
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Seed Coat
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Hepg2 Cells
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Soybean Seed
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Drug Metabolizing Enzymes
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Metabolizing Enzymes
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Icr Mice
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Transcriptomic and Quantitative Proteomic Analysis of Transporters and Drug Metabolizing Enzymes in Freshly Isolated Human Brain Microvessels
Molecular Pharmaceutics
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10.1021/mp200129p
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2011
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Vol 8
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pp. 1332-1341
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Author(s):
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Proteomic Analysis
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Drug Metabolizing Enzymes
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Metabolizing Enzymes
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Quantitative Proteomic Analysis
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Brain Microvessels
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