Literature DB >> 19299526

In vitro and in silico identification and characterization of thiabendazole as a mechanism-based inhibitor of CYP1A2 and simulation of possible pharmacokinetic drug-drug interactions.

Roslyn S Thelingwani1, Simbarashe P Zvada, Hugues Dolgos, Anna-Lena B Ungell, Collen M Masimirembwa.   

Abstract

Thiabendazole (TBZ) and its major metabolite 5-hydroxythiabendazole (5OH-TBZ) were screened for potential time-dependent inhibition (TDI) against CYP1A2. Screen assays were carried out in the absence and presence of NADPH. TDI was observed with both compounds, with k(inact) and K(I) values of 0.08 and 0.02 min(-1) and 1.4 and 63.3 microM for TBZ and 5OH-TBZ, respectively. Enzyme inactivation was time-, concentration-, and NADPH-dependent. Inactivation by TBZ was irreversible by dialysis and oxidation by potassium ferricyanide, and there was no protection by glutathione. 5OH-TBZ was a weak TDI of CYP1A2, and enzyme activity was recovered by dialysis. IC(50) determination of TBZ and 5OH-TBZ showed both compounds to be potent inhibitors, with IC(50) values of 0.83 and 13.05 microM, respectively. IC(50) shift studies also demonstrated that TBZ was a TDI of CYP1A2. In silico methods identified the thiazole group as a TDI fragment and predicted it as the site of metabolism. The observation pointed to epoxidation of the thiazole and the benzyl rings of TBZ as possible routes of metabolism and mechanisms of TDI. Drug-drug interaction (DDI) simulation studies using SimCyp showed good predictions for competitive inhibition. However, predictions for mechanism-based inhibition (MBI)-based DDI were not in agreement with clinical observations. There was no TBZ accumulation upon chronic administration of the drug. The in vitro MBI findings might therefore not be capturing the in vivo situation in which the proposed bioactivation route is minor. This might be the case for TBZ in which, in vivo, UDP glucuronosyltransferases and sulfanotransferase metabolize and eliminate the 5OH-TBZ.

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Year:  2009        PMID: 19299526     DOI: 10.1124/dmd.108.024604

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


  3 in total

Review 1.  Insights into the substrate specificity, inhibitors, regulation, and polymorphisms and the clinical impact of human cytochrome P450 1A2.

Authors:  Shu-Feng Zhou; Li-Ping Yang; Zhi-Wei Zhou; Ya-He Liu; Eli Chan
Journal:  AAPS J       Date:  2009-07-10       Impact factor: 4.009

2.  Inhibition of major drug metabolizing CYPs by common herbal medicines used by HIV/AIDS patients in Africa-- implications for herb-drug interactions.

Authors:  Charles Awortwe; Patrick J Bouic; Collen M Masimirembwa; Bernd Rosenkranz
Journal:  Drug Metab Lett       Date:  2014-07

Review 3.  Strategies and opportunities for promoting bioinformatics in Zimbabwe.

Authors:  Ryman Shoko; Justen Manasa; Mcebisi Maphosa; Joshua Mbanga; Reagan Mudziwapasi; Victoria Nembaware; Walter T Sanyika; Tawanda Tinago; Zedias Chikwambi; Cephas Mawere; Alice Matimba; Grace Mugumbate; Jonathan Mufandaedza; Nicola Mulder; Hugh Patterton
Journal:  PLoS Comput Biol       Date:  2018-11-29       Impact factor: 4.475

  3 in total

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