Formation primaquine-5,6-orthoquinone, the putative active and toxic metabolite of primaquine via direct oxidation in human erythrocytes

被引:21
作者
Fasinu, Pius S. [1 ,3 ]
Nanayakkara, N. P. Dhammika [1 ]
Wang, Yan-Hong [1 ]
Chaurasiya, Narayan D. [1 ]
Herath, H. M. Bandara [1 ]
McChesney, James D. [4 ]
Avula, Bharathi [1 ]
Khan, Ikhlas [1 ,2 ]
Tekwani, Babu L. [1 ,5 ]
Walker, Larry A. [1 ,2 ]
机构
[1] Univ Mississippi, Natl Ctr Nat Prod Res, University, MS 38677 USA
[2] Univ Mississippi, Sch Pharm, Dept BioMol Sci, University, MS 38677 USA
[3] Campbell Univ, Dept Pharmaceut Sci, Buies Creek, NC 27501 USA
[4] Ironstone Separat Inc, Etta, MS 38627 USA
[5] Southern Res Inst, Dept Infect Dis, Birmingham, AL USA
关键词
HYDROXYL RADICAL GENERATION; RED-BLOOD-CELL; AROMATIC HYDROXYLATION; RAT ERYTHROCYTES; IN-VITRO; STRESS; PHARMACOKINETICS; SUSCEPTIBILITY; IDENTIFICATION; TRANSFORMATION;
D O I
10.1186/s12936-019-2658-5
中图分类号
R51 [传染病];
学科分类号
100401 ;
摘要
BackgroundThe activity and haemolytic toxicity associated with primaquine has been linked to its reactive metabolites. The reactive metabolites are thought to be primarily formed through the action of cytochrome P-450-mediated pathways. Human erythrocytes generally are not considered a significant contributor to drug biotransformation. As erythrocytes are the target of primaquine toxicity, the ability of erythrocytes to mediate the formation of reactive oxidative primaquine metabolites in the absence of hepatic enzymes, was evaluated.MethodsPrimaquine and its enantiomers were incubated separately with human red blood cells and haemoglobin. Post-incubation analysis was performed with UPLC-MS/MS to identify products of biotransformation.ResultsThe major metabolite detected was identified as primaquine-5,6-orthoquinone, reflecting the pathway yielding putative active and haematotoxic metabolites of primaquine, which was formed by oxidative demethylation of 5-hydroxyprimaquine. Incubation of primaquine with haemoglobin in a cell-free system yielded similar results. It appears that the observed biotransformation is due to non-enzymatic processes, perhaps due to reactive oxygen species (ROS) present in erythrocytes or in the haemoglobin incubates.ConclusionThis study presents new evidence that primaquine-5,6-orthoquinone, the metabolite of primaquine reflecting the oxidativebiotransformation pathway, is generated in erythrocytes, probably by non-enzymatic means, and may not require transport from the liver or other tissues.
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页数:8
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