Hyperlipidemia Alters the Pharmacokinetics of Posaconazole and Vincristine Upon Co-Administration in Rats
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Date
2017
Journal Title
Journal ISSN
Volume Title
Publisher
Springer International Publishing
Abstract
Objectives: Co-administration of posaconazole (PSZ) and vincristine (VCR) in the treatment of patients with acute lymphoblastic leukemia increases the neurotoxicity of VCR. Our aim is to study the effect of increased lipoprotein levels on the pharmacokinetics of PSZ and VCR upon co-administration in rats. Methods: Rats were assigned to three groups, normolipidemic (NL), intermediate hyperlipidemic (IHL), and extreme hyperlipidemic (HL) groups. All rats were administered PSZ orally followed by VCR intravenously 4 h later. For the pharmacokinetic study, serial plasma samples were collected over 96 h and for tissue distribution study; plasma, lung, and liver tissues were collected over 48 h post oral dosing. Results: Posaconazole showed higher plasma concentrations than VCR at all time points. Co-administration of VCR with PSZ reduced PSZ weight normalized oral clearance, increased PSZ area under the plasma concentration–time curve (AUC) from time zero to infinity, showed higher PSZ liver concentrations, and increased VCR volume of distribution of the central compartment. Upon increasing the lipoprotein levels, PSZ showed higher plasma availability and delayed tissue distribution, whereas VCR had shown a significant decrease in PSZ AUC0-24h, AUC0-tlast, and AUCo-inf (NL = IHL > HL) and a significant increase in the volume of distribution (NL = IHL < HL). Vincristine has shown higher tissue uptake and concentrations. Conclusion: Monitoring cholesterol and triglyceride levels in patients with acute lymphoblastic leukemia is advisable to decrease VCR neurological side effect incidences and delay the activity of both PSZ and VCR. © 2017, The Author(s).
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Keywords
Animals, Drug interactions, Drug therapy, combination, Hyperlipidemias, Rats, Rats, sprague-dawley, Tissue distribution, Triazoles, Vincristine, Itraconazole, Lipoprotein, Posaconazole, Sodium dihydrogen phosphate, Triazole derivative, Animal experiment, Animal model, Area under the curve, Article, Controlled study, Drug half life, Elimination rate constant, High performance liquid chromatography, Hyperlipidemia, Limit of quantitation, Lipoprotein blood level, Maximum plasma concentration, Nonhuman, Oral clearance, Plasma concentration-time curve, Priority journal, Protein binding, Rat, Unbound fraction, Volume of distribution, Animal, Chemically induced, Combination drug therapy, Drug effects, Drug interaction, Sprague dawley rat