Development of a physiologic-based pharmacokinetic model for estimating sulfamethazine concentrations in swine and application to prediction of violative residues in edible tissues

被引:36
作者
Buur, JL [1 ]
Baynes, RE
Craigmill, AL
Riviere, JE
机构
[1] N Carolina State Univ, Coll Vet Med, Ctr Chem Toxicol Res & Pharmacokinet, Food Anim Residue Avoidance Bank,Dept Populat Hlt, Raleigh, NC 27605 USA
[2] Univ Calif Davis, Coll Agr & Environm Sci, Dept Environm Toxicol, Food Anim Residue Avoidance Databank, Davis, CA 95616 USA
关键词
D O I
10.2460/ajvr.2005.66.1686
中图分类号
S85 [动物医学(兽医学)];
学科分类号
0906 ;
摘要
Objective-To develop a flow-limited, physiologic-based pharmacokinetic model for use in estimating concentrations of sulfamethazine after IV administration to swine. Sample Population-4 published studies provided physiologic values for organ weights, blood flows, clearance, and tissue-to-blood partition coefficients, and 3 published studies provided data on plasma and other tissue compartments for model validation. Procedure-For the parent compound, the model included compartments for blood, adipose, muscle, liver, and kidney tissue with an extra compartment representing the remaining carcass. Compartments for the N-acetyl metabolite included the liver and the remaining body. The model was created and optimized by use of computer software. Sensitivity analysis was completed to evaluate the importance of each constant on the whole model. The model was validated and used to estimate a withhold interval after an IV injection at a dose of 50 mg/kg. The withhold interval was compared to the interval estimated by the Food Animal Residue Avoidance Databank (FARAD). Results-Specific tissue correlations for plasma, adipose, muscle, kidney, and liver tissue compartments were 0.93, 0.86, 0.99, 0.94, and 0.98, respectively. The model typically overpredicted concentrations at early time points but had excellent accuracy at later time points. The withhold interval estimated by use of the model was 120 hours, compared with 100 hours estimated by FARAD. Conclusions and Clinical Relevance-Use of this model enabled accurate prediction of sulfamethazine pharmacokinetics in swine and has applications for food safety and prediction of drug residues in edible tissues.
引用
收藏
页码:1686 / 1693
页数:8
相关论文
共 27 条
[11]   Physiologically-based pharmacokinetic simulation modelling [J].
Grass, GM ;
Sinko, PJ .
ADVANCED DRUG DELIVERY REVIEWS, 2002, 54 (03) :433-451
[12]  
Haasnoot W, 1996, FOOD ADDIT CONTAM, V13, P811, DOI 10.1080/02652039609374468
[13]   PHYSIOLOGICALLY-BASED PHARMACOKINETIC STUDY ON A CYCLOSPORINE DERIVATIVE, SDZ IMM-125 [J].
KAWAI, R ;
LEMAIRE, M ;
STEIMER, JL ;
BRUELISAUER, A ;
NIEDERBERGER, W ;
ROWLAND, M .
JOURNAL OF PHARMACOKINETICS AND BIOPHARMACEUTICS, 1994, 22 (05) :327-365
[14]  
KHOR SP, 1991, DRUG METAB DISPOS, V19, P478
[15]  
LUNDEEN G, 1983, ANESTH ANALG, V62, P499
[16]   Extrapolated withdrawal-interval estimator (EWE) algorithm:: A quantitative approach to establishing extralabel withdrawal times [J].
Martín-Jiménez, T ;
Baynes, RE ;
Craigmill, A ;
Riviere, JE .
REGULATORY TOXICOLOGY AND PHARMACOLOGY, 2002, 36 (01) :131-137
[17]   The biotransformation of sulfadimethoxine, sulfadimidine, sulfamethoxazole, trimethoprim and aditoprim by primary cultures of pig hepatocytes [J].
Mengelers, MJB ;
Kleter, GA ;
Hoogenboom, LAP ;
Kuiper, HA ;
VanMiert, ASJPAM .
JOURNAL OF VETERINARY PHARMACOLOGY AND THERAPEUTICS, 1997, 20 (01) :24-32
[18]  
MITCHELL AD, 1986, DRUG METAB DISPOS, V14, P161
[19]   Binding of sulphamethazine to pig plasma proteins and albumin [J].
Munsey, T ;
Grigg, RE ;
McCormack, A ;
Symonds, HW ;
Bowmer, CJ .
JOURNAL OF VETERINARY PHARMACOLOGY AND THERAPEUTICS, 1996, 19 (02) :135-141
[20]   PHARMACOKINETICS AND RENAL CLEARANCE OF SULFADIMIDINE, SULFAMERAZINE AND SULFADIAZINE AND THEIR N4-ACETYL AND HYDROXY METABOLITES IN PIGS [J].
NOUWS, JFM ;
MEVIUS, D ;
VREE, TB ;
DEGEN, M .
VETERINARY QUARTERLY, 1989, 11 (02) :78-86