Pharmacokinetic profile of zafirlukast

被引:52
|
作者
Dekhuijzen, PNR
Koopmans, PP
机构
[1] Univ Nijmegen, Med Ctr, Dept Pulm Dis, NL-6500 HB Nijmegen, Netherlands
[2] Univ Nijmegen, Med Ctr, Dept Gen Internal Med, NL-6500 HB Nijmegen, Netherlands
关键词
D O I
10.2165/00003088-200241020-00003
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Zafirlukast is a cysteinyl leukotriene type I receptor antagonist that causes bronchodilation and has anti-inflammatory properties. Clinical efficacy has been demonstrated when using oral doses of 20 to 40mg twice daily. The pharmacokinetics of zafirlukast are best described by a two-compartment model. Maximum plasma concentrations (C-max) were achieved 3 hours after a single oral dose of 20 or 40mg to healthy volunteers. The absolute bioavailability of zafirlukast is unknown. However, coadministration of zafirlukast with food reduces bioavailability by approximately 40%. The drug binds to plasma proteins (>99%), predominantly to albumin, and has a mean terminal elimination half-life of approximately 10 hours in both healthy volunteers and patients with asthma. Zafirlukast undergoes extensive hepatic metabolism. Hydroxylation by cytochrome P450 (CYP) 2C9 is the major biotransformation pathway. The metabolites of zafirlukast contribute little to its overall activity. Zafirlukast is mainly ;eliminated in the faeces, while urinary excretion accounts for <10% of an orally administered dose. Because of its primarily hepatic metabolism, the clearance of zafirlukast is reduced in patients with hepatic impairment. In patients with stable alcoholic cirrhosis. C-max and area under the plasma concentration-time curve for zafirlukast were increased by 50 to 60% compared with healthy volunteers. Asymptomatic elevations of serum liver enzymes have been reported with high dosages of zafirlukast (80mg twice daily), returning to normal after cessation of the drug. Inhibition of the CYP2C9 and CYP3A isoenzymes by zafirlukast has been reported in vitro. Zafirlukast interacts with warfarin and produces a clinically significant increase in the prothrombin time, but it does not alter the pharmacokinetics of terfenadine carboxylate, the active metabolite of terfenadine. Plasma concentrations of zafirlukast decreased when the drug was administered concomitantly with erythromycin, terfenadine or theophylline, and increased when it was coadministered with aspirin (acetylsalicylic acid). Theophylline metabolism is unchanged in most cases by zafirlukast, but there is a report of one patient with increased theophylline plasma concentrations when zafirlukast was coadministered. Recently, cases of Churg-Strauss syndrome have been described in patients with asthma receiving zafirlukast treatment. This occurrence in patients being withdrawn from corticosteroid therapy while receiving zafirlukast has been attributed to a previously undiagnosed presence of this syndrome in these patients.
引用
收藏
页码:105 / 114
页数:10
相关论文
共 50 条
  • [31] Pharmacokinetic profile of spectinomycin in rats
    Madhura, D. B.
    Lee, R.
    Meibohm, B.
    PHARMAZIE, 2013, 68 (08): : 675 - 676
  • [32] Meropenem pharmacokinetic profile in cats
    Albarellos, G. A.
    Montoya, L.
    Quaine, P. C.
    Lupi, M. P.
    Passini, S.
    Denamiel, G. A.
    Landoni, M. F.
    JOURNAL OF VETERINARY PHARMACOLOGY AND THERAPEUTICS, 2012, 35 : 103 - 103
  • [33] Pharmacokinetic profile of atenolol aspirinate
    Montes-Gil, Ana C.
    Zanfolin, Marcos
    Okuyama, Cristina E.
    Lilla, Sergio
    Alves, Delma P.
    Santagada, Vincenzo
    Perissutti, Elisa
    Lavecchia, Antonio
    Fiorino, Ferdinando
    Severino, Beatrice
    Caliendo, Giuseppe
    Priviero, Fernanda B. M.
    Mendes, Gustavo D.
    Donato, Jose L.
    de Nucci, Gilberto
    ARCHIV DER PHARMAZIE, 2007, 340 (09) : 445 - 455
  • [34] PHARMACOKINETIC PROFILE OF FOSFOMYCIN TROMETAMOL
    BERGAN, T
    THORSTEINSSON, SB
    ALBINI, E
    CHEMOTHERAPY, 1993, 39 (05) : 297 - 301
  • [35] Pharmacokinetic and pharmacodynamic profile of ceftobiprole
    Lodise, Thomas P.
    Patel, Nimish
    Renaud-Mutart, Amy
    Gorodecky, Evgeny
    Fritsche, Thomas R.
    Jones, Ronald N.
    DIAGNOSTIC MICROBIOLOGY AND INFECTIOUS DISEASE, 2008, 61 (01) : 96 - 102
  • [36] Pharmacokinetic/Pharmacodynamic Profile of Voriconazole
    Ursula Theuretzbacher
    Franziska Ihle
    Hartmut Derendorf
    Clinical Pharmacokinetics, 2006, 45 : 649 - 663
  • [37] PHARMACOKINETIC PROFILE OF CEFOTAXIME IN GOATS
    ATEF, M
    RAMADAN, A
    AFIFI, NA
    YOUSSEF, SAH
    DEUTSCHE TIERARZTLICHE WOCHENSCHRIFT, 1990, 97 (08): : 324 - 327
  • [38] NAPROSYN, A PHARMACOKINETIC AND CLINICAL PROFILE
    MCCASKEY, DE
    TERAPEVTICHESKII ARKHIV, 1993, 65 (05) : 46 - 54
  • [39] Clinical Pharmacokinetic Profile of Modafinil
    Philmore Robertson
    Edward T. Hellriegel
    Clinical Pharmacokinetics, 2003, 42 : 123 - 137
  • [40] A REVIEW OF THE PHARMACOKINETIC PROFILE OF TEMAFLOXACIN
    DUDLEY, MN
    JOURNAL OF ANTIMICROBIAL CHEMOTHERAPY, 1991, 28 : 55 - 64