Evidence for p-glycoprotein modification of insecticide toxicity in mosquitoes of the Culex pipiens complex

被引:84
作者
Buss, DS [1 ]
McCaffery, AR [1 ]
Callaghan, A [1 ]
机构
[1] Univ Reading, Div Zool, Sch Anim & Microbial Sci, Reading RG6 6AJ, Berks, England
关键词
Culex pipiens; Cx; quinuefasciatus; ATP-binding; calcium channel blocker; cell culture; chlorpyrifos; cypermethrin; DDT; endosulfan; insecticides; ivermectin; mosquitoes; organophosphate; p-glycoprotein; pyrethroid; resistance; rhodamine; vector control; verapamil; vinblastine;
D O I
10.1046/j.1365-2915.2002.00365.x
中图分类号
Q96 [昆虫学];
学科分类号
摘要
Pesticide resistance has parallels with multi-drug resistance syndrome of tumours in clinical medicine, which has been linked to an ATP-dependent pump, p-glycoprotein (P-gp). P-gps pump drugs out of the cell, thereby reducing cellular concentrations of the chemical. P-gps have been found in several invertebrate species and have been shown to provide a defence against environmental xenobiotics, including pesticides. This study used a model cell culture system to investigate the interaction of pesticides with P-gp. Invermectin and endosulfan were shown to be strong inhibitors of dye transport out of cells, which is a standard measure of P-gp modulation. We then investigated the action of P-gp inhibitor, verapamil (calcium channel blocker), on insecticide toxicity to fourth-instar mosquito larvae of the Culex pipiens L. complex (Diptera: Culicidae). Verapamil increased toxicity to examples of three insecticide classes (cypermethrin, endosulfan, invermectin), but not to chloropyrifos (organophosphate). The discovery of a novel protective mechanism in mosquitoes, with a wide substrate range, has implications for the control of important pest and vector species.
引用
收藏
页码:218 / 222
页数:5
相关论文
共 37 条
[1]   Relation between the turnover number for vinblastine transport and for vinblastine-stimulated ATP hydrolysis by human P-glycoprotein [J].
Ambudkar, SV ;
Cardarelli, CO ;
Pashinsky, I ;
Stein, WD .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (34) :21160-21166
[2]  
Bain LJ, 1997, ENVIRON HEALTH PERSP, V105, P812, DOI 10.2307/3433698
[3]  
Bain LJ, 1996, TOXICOL APPL PHARM, V141, P288, DOI 10.1016/S0041-008X(96)80035-4
[4]   Selection at a P-glycoprotein gene in ivermectin- and moxidectin-selected strains of Haemonchus contortus [J].
Blackhall, WJ ;
Liu, HY ;
Xu, M ;
Prichard, RK ;
Beech, RN .
MOLECULAR AND BIOCHEMICAL PARASITOLOGY, 1998, 95 (02) :193-201
[5]   Mass treatment with ivermectin for filariasis control in Papua New Guinea: impact on mosquito survival [J].
Bockarie, MJ ;
Hii, JLK ;
Alexander, NDE ;
Bockarie, F ;
Dagoro, H ;
Kazura, JW ;
Alpers, MP .
MEDICAL AND VETERINARY ENTOMOLOGY, 1999, 13 (02) :120-123
[6]   Identification of a multixenobiotic resistance mechanism in Xenopus laevis embryos [J].
Bonfanti, P ;
Colombo, A ;
Camatini, M .
CHEMOSPHERE, 1998, 37 (14-15) :2751-2760
[7]  
Brown AWA, 1971, WHO MONOGRAPH SERIES, V38
[8]  
Campbell WC, 1989, IVERMECTIN ABAMECTIN
[9]   CHARACTERIZATION OF MULTIXENOBIOTIC MULTIDRUG TRANSPORT IN THE GILLS OF THE MUSSEL MYTILUS-CALIFORNIANUS AND IDENTIFICATION OF ENVIRONMENTAL SUBSTRATES [J].
CORNWALL, R ;
TOOMEY, BH ;
BARD, S ;
BACON, C ;
JARMAN, WM ;
EPEL, D .
AQUATIC TOXICOLOGY, 1995, 31 (04) :277-296
[10]   Larvicidal activity of endectocides against pest flies in the dung of treated cattle [J].
Floate, KD ;
Spooner, RW ;
Colwell, DD .
MEDICAL AND VETERINARY ENTOMOLOGY, 2001, 15 (01) :117-120