1.World HealthOrganization: WHO malaria report : 2011. In: WHO Global Malaria Programme. Edited by Data WLC-i-P. Geneva: WHO !important; 2011: 259.
2.Yassine H, Osta MA: Anopheles gambiae innate immunity. Cell Microbiol, 12(1):1-9.
3.Davidson G: Insecticide resistance in Anopheles sundaicus. Nature 1957, 180(4598):
4.1333-1335.
5.World Health Organization: Global Plan for Insecticide Resistance Management in Malaria Vectors (GPIRM). In: WHO/HTM/GMP/20125. Edited by Organization WH. Geneva, Switzerland: World Health Organization !important; 2012: 130.
6.Hemingway J, Ranson H: Insecticide resistance in insect vectors of human disease. Annu Rev Entomol 2000, 45:371-391.
7.Ranson H, N' !important;Guessan R, Lines J, Moiroux N, Nkuni Z, Corbel V: Pyrethroid resistance in African anopheline mosquitoes: what are the implications for malaria control? Trends Parasitol 2011, 27(2):91-98.
8.Ridl FC, Bass C, Torrez M, Govender D, Ramdeen V, Yellot L, Edu AE, Schwabe C, Mohloai P, Maharaj R et al: A pre-intervention study of malaria vector abundance in Rio Muni, Equatorial Guinea: their role in malaria transmission and the incidence of insecticide resistance alleles. Malar J 2008, 7:194.
9.Sharp BL, Ridl FC, Govender D, Kuklinski J, Kleinschmidt I: Malaria vector control by indoor residual insecticide spraying o­ !important;n the tropical island of Bioko, Equatorial Guinea. Malar J 2007, 6:52.
10.Mitchell SN, Stevenson BJ, Muller P, Wilding CS, Egyir-Yawson A, Field SG, Hemingway J, Paine MJ, Ranson H, Donnelly MJ: Identification and validation of a gene causing cross-resistance between insecticide classes in Anopheles gambiae from Ghana. Proc Natl Acad Sci U S A 2012, 109(16):6147-6152.
11.Stevenson BJ, Bibby J, Pignatelli P, Muangnoicharoen S, O' !important;Neill PM, Lian LY, Muller P, Nikou D, Steven A, Hemingway J et al: Cytochrome P450 6M2 from the malaria vector Anopheles gambiae metabolizes pyrethroids: Sequential metabolism of deltamethrin revealed. Insect Biochem Mol Biol 2011, 41(7):492-502.
12.Brown AWA: Insecticide Resistance Mosquitoes: A Pragmatic Rewiew. J Am Mosq Control Assoc 1986, 2(2):123-140.
13.Metcalf RL: Insect resistance to insecticides. Pesticide Science 1989, 26(4):333-358.
14.WHO: Global Insecticide Use for Vector-Borne Disease Control- 4th edition. In Edited by World Health Organization Geneva: World Health Organization 2009, WHO/HTM/NTD/WHOPES/GCDPP/2009.6.
15.Lapied B, Pennetier C, Apaire-Marchais V, Licznar P, Corbel V: Innovative applications for insect viruses: towards insecticide sensitization. Trends Biotechnol 2009, 27(4):190-198.
16.Livadas GA, Georgopoulos G: Development of resistance to DDT by Anopheles sacharovi in Greece. Bull World Health Organ 1953, 8(4):497-511.
17.610 Anopheles mosquitoes - New insights into malaria vectors
18.Brown AWA, Haworth J, Zahar AR: Malaria eradication and control from a global standpoint. Journal of Medical Entomology 1976, 13(1):1-25.
19.Patel TB, Ramachandra Rao T, Halgeri AV, Deobhankar RB: A preliminary note o­ !important;n a probable case of dieldrin kesistance in Anopheles culicifacies in Thana District, Bombay State. Indian J Malariol 1958, 12:367-370.
20.Brown AW, Pal R: Insecticide resistance in arthropods. Public Health Pap 1971, 38(0): 1-491.
21.Brown AW, Haworth J, Zahar AR: Malaria eradication and control from a global standpoint. J Med Entomol 1976, 13(1):1-25.
22.Rajagopal R: Malathion resistance in Anopheles culicifacies in Gujarat. Indian J Med Res 1977, 66(1):27-28.
23.Rawlings P, Herath PR, Kelly S: Anopheles culicifacies (Diptera: Culicidae): DDT resistance in Sri Lanka prior to and after cessation of DDT spraying. J Med Entomol 1985, 22(4):361-365.
24.Penilla RP, Rodriguez AD, Hemingway J, Torres JL, Arredondo Jimenez JI, Rodriguez MH: Resistance management strategies in malaria vector mosquito control. Baseline data for a large-scale field trial against Anopheles albimanus in Mexico. Medical and Veterinary Entomology 1998, 12(3):217-233.
25.Van Bortel W, Trung HD, Thuan le K, Sochantha T, Socheat D, Sumrandee C, Baimai V, Keokenchanh K, Samlane P, Roelants P et al: The insecticide resistance status of malaria vectors in the Mekong region. Malar J 2008, 7:102.
26.Trung HD, Van Bortel W, Sochantha T, Keokenchanh K, Quang NT, Cong LD, Coosemans M: Malaria transmission and major malaria vectors in different geographical areas of Southeast Asia. Trop Med Int Health 2004, 9(2):230-237.
27.Chareonviriyaphap T, Aum-aung B, Ratanatham S: Current insecticide resistance patterns in mosquito vectors in Thailand. Southeast Asian J Trop Med Public Health 1999, 30(1):184-194.
28.Hamon J, Subra R, Sales S, Coz J: [Presence in the southwestern part of Upper Volta of a population of Anopheles gambiae "A" resistant to DDT]. Med Trop (Mars) 1968, 28(4):521-528.
29.Carnevale P, Robert V: Anopheles: Biologie, transmission du Plasmodium et lutte antivectorielle. Bondy: IRD !important; 2009.
30.Chandre F, Darriet F, Manguin S, Brengues C, Carnevale P, Guillet P: Pyrethroid cross resistance spectrum among populations of Anopheles gambiae s.s. from Cote d' !important;Ivoire. J Am Mosq Control Assoc 1999, 15(1):53-59.
31.Armstrong JA, Ramsdale CD, Ramakrishna V: Insecticide resistance in Anopheles gambiae Giles in Western Sokoto, Northern Nigeria. Ann Trop Med Parasitol 1958, 52(3):247-256.
32.Hamon J, Garrett-Jones C: [Resistance to insecticides in the major malaria vectors and its operational importance]. Bull World Health Organ 1963, 28(1):1-24.
33.Wondji CS, Dabire RK, Tukur Z, Irving H, Djouaka R, Morgan JC: Identification and Distribution of a GABA receptor mutation conferring dieldrin resistance in the malaria vector Anopheles funestus in Africa. Insect Biochem Mol Biol 2011, 41(7):484-491.
34.Mouchet J: Mini-Review : Agriculture and Vector Resistance. Insect Sci Applic 1988, 9(3):291-302.
35.Mahande AM, Dusfour I, Matias JR, Kweka EJ: Knockdown Resistance, rdl Alleles, and the Annual Entomological Inoculation Rate of Wild Mosquito Populations from Lower Moshi, Northern Tanzania. J Glob Infect Dis 2012, 4(2):114-119.
36.Brogdon WG, McAllister JC, Corwin AM, Cordon Rosales C: Oxidase-based DDTpyrethroid cross-resistance in Guatemalan Anopheles albimanus. Pesticide Biochemistry and Physiology 1999, 64(2):101-111.
37.Fonseca-Gonzalez I, Quinones ML, McAllister J, Brogdon WG: Mixed-function oxidases and esterases associated with cross-resistance between DDT and lambda-cyhalothrin in Anopheles darlingi Root 1926 populations from Colombia. Mem Inst Oswaldo Cruz 2009, 104(1):18-26.
38.Raghavendra K, Verma V, Srivastava HC, Gunasekaran K, Sreehari U, Dash AP: Persistence of DDT, malathion & !important; deltamethrin resistance in Anopheles culicifacies after their sequential withdrawal from indoor residual spraying in Surat district, India. Indian J Med Res 2010, 132:260-264.
39.Tiwari S, Ghosh SK, Ojha VP, Dash AP, Raghavendra K: Reduced susceptibility to selected synthetic pyrethroids in urban malaria vector Anopheles stephensi: a case study in Mangalore city, South India. Malar J 2010, 9:179.
40.Elissa N, Mouchet J, Riviere F, Meunier JY, Yao K: Resistance of Anopheles gambiae s.s. to pyrethroids in Cote d' !important;Ivoire. Ann Soc Belg Med Trop 1993, 73(4):291-294.
41.Hargreaves K, Koekemoer LL, Brooke BD, Hunt RH, Mthembu J, Coetzee M: Anopheles funestus resistant to pyrethroid insecticides in South Africa. Medical and Veterinary Entomology 2000, 14(2):181-189.
42.Chareonviriyaphap T, Rongnoparut P, Juntarumporn P: Selection for pyrethroid resistance in a colony of Anopheles minimus species A, a malaria vector in Thailand. J Vector Ecol 2002, 27(2):222-229.
43.Ayad H, Georghiou GP: Resistance to organophosphates and carbamates in Anopheles albimanus based o­ !important;n reduced sensitivity of acetylcholinesterase. Journal of Economic Entomology 1975, 68(3):295-297.
44.Hemingway J: Genetics of organophosphate and carbamate resistance in Anopheles atroparvus (Diptera: Culicidae). J Econ Entomol 1982, 75(6):1055-1058.
45.Elissa N, Mouchet J, Riviere F, Meunier JY, Yao K: [Susceptibility of Anopheles gambiae to insecticides in the Ivory Coast]. Sante 1994, 4(2):95-99.
46.N' !important;Guessan R, Darriet F, Guillet P, Carnevale P, Traore-Lamizana M, Corbel V, Koffi AA, Chandre F: Resistance to carbosulfan in Anopheles gambiae from Ivory Coast, based o­ !important;n reduced sensitivity of acetylcholinesterase. Med Vet Entomol 2003, 17(1): 19-25.
47.Dabire KR, Diabate A, Namontougou M, Djogbenou L, Kengne P, Simard F, Bass C, Baldet T: Distribution of insensitive acetylcholinesterase (ace-1R) in Anopheles gambiae s.l. populations from Burkina Faso (West Africa). Trop Med Int Health 2009, 14(4): 396-403.
48.Djogbenou L, Dabire R, Diabate A, Kengne P, Akogbeto M, Hougard JM, Chandre F: Identification and geographic distribution of the ACE-1R mutation in the malaria vector Anopheles gambiae in south-western Burkina Faso, West Africa. Am J Trop Med Hyg 2008, 78(2):298-302.
49.Djogbenou L, Pasteur N, Akogbeto M, Weill M, Chandre F: Insecticide resistance in the Anopheles gambiae complex in Benin: a nationwide survey. Med Vet Entomol 2011, 25(3):256-267.
50.Oduola AO, Idowu ET, Oyebola MK, Adeogun AO, Olojede JB, Otubanjo OA, Awolola TS: Evidence of carbamate resistance in urban populations of Anopheles gambiae s.s. mosquitoes resistant to DDT and deltamethrin insecticides in Lagos, South-Western Nigeria. Parasit Vectors 2012, 5:116.
51.USAID: The President’s Malaria Initiative: fourth annual report. In. Washigton: U.S. Agency for International Development !important; 2010.
52.Nkya TE, Akhouayri I, Kisinza W, David JP: Impact of environment o­ !important;n mosquito response to pyrethroid insecticides: Facts, evidences and prospects. Insect Biochem Mol Biol 2012.
53.Despres L, David JP, Gallet C: The evolutionary ecology of insect resistance to plant chemicals. Trends Ecol Evol 2007, 22(6):298-307.
54.Hemingway J, Hawkes NJ, McCarroll L, Ranson H: The molecular basis of insecticide resistance in mosquitoes. Insect Biochem Mol Biol 2004, 34(7):653-665.
55.Guillemaud T, Makate N, Raymond M, Hirst B, Callaghan A: Esterase gene amplification in Culex pipiens. Insect Molecular Biology 1997, 6(4):319-327.
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