Literature DB >> 19131519

Sulfation of o-demethyl apixaban: enzyme identification and species comparison.

Lifei Wang1, Nirmala Raghavan, Kan He, Joseph M Luettgen, W Griffith Humphreys, Robert M Knabb, Donald J Pinto, Donglu Zhang.   

Abstract

Apixaban, a potent and highly selective factor Xa inhibitor, is currently under development for treatment of arterial and venous thrombotic diseases. The O-demethyl apixaban sulfate is a major circulating metabolite in humans but circulates at lower concentrations relative to parent in animals. The aim of this study was to identify the sulfotransferases (SULTs) responsible for the sulfation reaction. Apixaban undergoes O-demethylation catalyzed by cytochrome P450 enzymes to O-demethyl apixaban, and then is conjugated by SULTs to form O-demethyl apixaban sulfate. Of the five human cDNA-expressed SULTs tested, SULT1A1 and SULT1A2 exhibited significant levels of catalytic activity for formation of O-demethyl apixaban sulfate, and SULT1A3, SULT1E1, and SULT2A1 showed much lower catalytic activities. In human liver S9, quercetin, a highly selective inhibitor of SULT1A1 and SULT1E1, inhibited O-demethyl apixaban sulfate formation by 99%; 2,6-dichloro-4-nitrophenol, another inhibitor of SULT1A1, also inhibited this reaction by >90%; estrone, a competitive inhibitor for SULT1E1, had no effect on this reaction. The comparable K(m) values for formation of O-demethyl apixaban sulfate were 41.4 microM (human liver S9), 36.8 microM (SULT1A1), and 70.8 microM (SULT1A2). Because of the high level of expression of SULT1A1 in liver and its higher level of catalytic activity for formation of O-demethyl apixaban sulfate, SULT1A1 might play a major role in humans for formation of O-demethyl apixaban sulfate. O-Demethyl apixaban was also investigated in liver S9 of mice, rats, rabbits, dogs, monkeys, and humans. The results indicated that liver S9 samples from dogs, monkeys, and humans had higher activities for formation of O-demethyl apixaban sulfate than those of mice, rats, and rabbits.

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Year:  2009        PMID: 19131519     DOI: 10.1124/dmd.108.025593

Source DB:  PubMed          Journal:  Drug Metab Dispos        ISSN: 0090-9556            Impact factor:   3.922


  16 in total

1.  Sulfation of selected mono-hydroxyflavones by sulfotransferases in vitro: a species and gender comparison.

Authors:  Cai Hua Yang; Lan Tang; Chang Lv; Ling Ye; Bi Jun Xia; Ming Hu; Zhong Qiu Liu
Journal:  J Pharm Pharmacol       Date:  2011-07       Impact factor: 3.765

2.  Role of apixaban (eliquis) in the treatment and prevention of thromboembolic disease.

Authors:  Aliaksandr Budovich; Olga Zargarova; Anna Nogid
Journal:  P T       Date:  2013-04

Review 3.  Xenobiotica-metabolizing enzymes in the skin of rat, mouse, pig, guinea pig, man, and in human skin models.

Authors:  F Oesch; E Fabian; Robert Landsiedel
Journal:  Arch Toxicol       Date:  2018-06-18       Impact factor: 5.153

Review 4.  Apixaban: a review of its use in the prevention of venous thromboembolism after knee or hip replacement surgery.

Authors:  Emma D Deeks
Journal:  Drugs       Date:  2012-06-18       Impact factor: 9.546

Review 5.  Xenobiotic-metabolizing enzymes in the skin of rat, mouse, pig, guinea pig, man, and in human skin models.

Authors:  F Oesch; E Fabian; K Guth; R Landsiedel
Journal:  Arch Toxicol       Date:  2014-11-05       Impact factor: 5.153

6.  Effect of ketoconazole and diltiazem on the pharmacokinetics of apixaban, an oral direct factor Xa inhibitor.

Authors:  Charles E Frost; Wonkyung Byon; Yan Song; Jessie Wang; Alan E Schuster; Rebecca A Boyd; Donglu Zhang; Zhigang Yu; Clapton Dias; Andrew Shenker; Frank LaCreta
Journal:  Br J Clin Pharmacol       Date:  2015-05       Impact factor: 4.335

7.  Metabolism, pharmacokinetics and pharmacodynamics of the factor Xa inhibitor apixaban in rabbits.

Authors:  Donglu Zhang; Kan He; Nirmala Raghavan; Lifei Wang; Earl J Crain; Bing He; Baomin Xin; Joseph M Luettgen; Pancras C Wong
Journal:  J Thromb Thrombolysis       Date:  2010-01       Impact factor: 2.300

8.  Evaluation of the effect of naproxen on the pharmacokinetics and pharmacodynamics of apixaban.

Authors:  Charles Frost; Andrew Shenker; Mohit D Gandhi; Janice Pursley; Yu Chen Barrett; Jessie Wang; Donglu Zhang; Wonkyung Byon; Rebecca A Boyd; Frank LaCreta
Journal:  Br J Clin Pharmacol       Date:  2014-10       Impact factor: 4.335

9.  Action of Halowax 1051 on Enzymes of Phase I (CYP1A1) and Phase II (SULT1A and COMT) Metabolism in the Pig Ovary.

Authors:  Justyna Barć; Anna Karpeta; Ewa Łucja Gregoraszczuk
Journal:  Int J Endocrinol       Date:  2013-04-04       Impact factor: 3.257

Review 10.  Preclinical discovery of apixaban, a direct and orally bioavailable factor Xa inhibitor.

Authors:  Pancras C Wong; Donald J P Pinto; Donglu Zhang
Journal:  J Thromb Thrombolysis       Date:  2011-05       Impact factor: 2.300

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