Brain penetration of ivermectin and selamectin in mdr1a,b P-glycoprotein- and bcrp- deficient knockout mice

被引:57
作者
Geyer, J. [1 ]
Gavrilova, O. [1 ]
Petzinger, E. [1 ]
机构
[1] Univ Giessen, Inst Pharmacol & Toxicol, D-35392 Giessen, Germany
关键词
MULTIDRUG-RESISTANCE PROTEINS; CENTRAL-NERVOUS-SYSTEM; BLOOD; EXPRESSION; MUTATION; SAFETY; DOGS; DORAMECTIN; TRANSPORT; TOXICITY;
D O I
10.1111/j.1365-2885.2008.01007.x
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
P-glycoprotein, which is encoded by the multi-drug resistance gene (MDR1), highly restricts the entry of ivermectin into the brain by an ATP-driven efflux mechanism at the blood-brain barrier. In dogs with a homozygous MDR1 mutation though, ivermectin accumulates in the brain and provokes severe signs of neurotoxicosis and even death. In contrast to ivermectin, selamectin is safer in the treatment of MDR1 mutant dogs, suggesting that selamectin is transported differently by P-glycoprotein across the blood-brain barrier. To test this, we applied selamectin to mdr1-deficient mdr1a,b(-/-) knockout mice and wild-type mice. Brain penetration, organ distribution, and plasma kinetics were analyzed after intravenous, oral, and dermal spot-on application in comparison with ivermectin. We found that in vivo both macrocyclic lactone compounds are substrates of P-glycoprotein and that these strongly accumulate in the brain of mdr1a,b(-/-) knockout mice compared with wild-type mice at therapeutic doses of 12 mg/kg selamectin and 0.2 mg/kg ivermectin. However, selamectin accumulates to a much lesser degree (5-10 times) than ivermectin (36-60 times) in the absence of P-glycoprotein. This could explain the broader margin of safety of selamectin in MDR1 mutant dogs. In liver, kidney, and testes, ivermectin and selamectin accumulated less than four times as much in mdr1a,b mutant mice as in wild-type mice. Breast cancer resistance protein (Bcrp)-deficient bcrp(-/-) knockout mice were also included in the application studies, but showed no differences in brain concentrations or organ distribution of either ivermectin or selamectin compared with wild-type mice. This indicates that Bcrp is not a relevant efflux carrier for these macrocyclic lactone compounds in vivo at the blood-brain barrier.
引用
收藏
页码:87 / 96
页数:10
相关论文
共 46 条
[1]   Avermectins and flea control: Structure-activity relationships and the selection of selamectin for development as an endectocide for companion animals [J].
Banks, BJ ;
Bishop, BF ;
Evans, NA ;
Gibson, SP ;
Goudie, AC ;
Gration, KAF ;
Pacey, MS ;
Perry, DA ;
Witty, MJ .
BIOORGANIC & MEDICINAL CHEMISTRY, 2000, 8 (08) :2017-2025
[2]   Selamectin: a novel broad-spectrum endectocide for dogs and cats [J].
Bishop, BF ;
Bruce, CI ;
Evans, NA ;
Goudie, AC ;
Gration, KAE ;
Gibson, SP ;
Pacey, MS ;
Perry, DA ;
Walshe, NDA ;
Witty, MJ .
VETERINARY PARASITOLOGY, 2000, 91 (3-4) :163-176
[3]   Avermectin transepithelial transport in MDR1- and MRP-transfected canine kidney monolayers [J].
Brayden, David J. ;
Griffin, Joanna .
VETERINARY RESEARCH COMMUNICATIONS, 2008, 32 (01) :93-106
[4]   Expression, up-regulation, and transport activity of the multidrug-resistance protein ABCG2 at the mouse blood-brain barrier [J].
Cisternino, S ;
Mercier, C ;
Bourasset, F ;
Roux, F ;
Scherrmann, JM .
CANCER RESEARCH, 2004, 64 (09) :3296-3301
[5]   Localisation of breast cancer resistance protein in microvessel endothelium of human brain [J].
Cooray, HC ;
Blackmore, CG ;
Maskell, L ;
Barrand, MA .
NEUROREPORT, 2002, 13 (16) :2059-2063
[6]  
Dawson GR, 2000, J PHARMACOL EXP THER, V295, P1051
[7]   The human ATP-binding cassette (ABC) transporter superfamily [J].
Dean, M ;
Rzhetsky, A ;
Allikmets, R .
GENOME RESEARCH, 2001, 11 (07) :1156-1166
[8]   The impact of P-glycoprotein on the disposition of drugs targeted for indications of the central nervous system: Evaluation using the MDR1A/1B knockout mouse model [J].
Doran, A ;
Obach, RS ;
Smith, BJ ;
Hosea, NA ;
Becker, S ;
Callegari, E ;
Chen, CP ;
Chen, X ;
Choo, E ;
Cianfrogna, J ;
Cox, LM ;
Gibbs, JP ;
Gibbs, MA ;
Hatch, H ;
Hop, CECA ;
Kasman, IN ;
LaPerle, J ;
Liu, JH ;
Liu, XR ;
Logman, M ;
Maclin, D ;
Nedza, FM ;
Nelson, F ;
Olson, E ;
Rahematpura, S ;
Raunig, D ;
Rogers, S ;
Schmidt, K ;
Spracklin, DK ;
Szewc, M ;
Troutman, M ;
Tseng, E ;
Tu, MH ;
Van Deusen, JW ;
Venkatakrishnan, K ;
Walens, G ;
Wang, EQ ;
Wong, D ;
Yasgar, AS ;
Zhang, CH .
DRUG METABOLISM AND DISPOSITION, 2005, 33 (01) :165-174
[9]  
FASSLER PE, 1991, J AM VET MED ASSOC, V199, P457
[10]  
Fromm MF, 2000, INT J CLIN PHARM TH, V38, P69