Personal protection of long lasting insecticide-treated nets in areas of Anopheles gambiae s.s. resistance to pyrethroids

Malaria Journal - Tập 5 - Trang 1-8 - 2006
Roch K Dabiré1,2, Abdoulaye Diabaté1,2, Thierry Baldet3, Léa Paré-Toé2, Robert T Guiguemdé2, Jean-Bosco Ouédraogo1,2, Ole Skovmand4
1IRSS, Direction régionale de Bobo-Dioulasso, Bobo-Dioulasso, France
2Centre Muraz, Bobo-Dioulasso, France
3CIRAD-EMVT, Campus International de Baillarguet, Montpellier Cedex 5, France
4Intelligent Insect Control, Montpellier, France

Tóm tắt

The development of mosquito nets pre-treated with insecticide, Long Lasting Impregnated Nets (LLINs) that last the life span of the net, is a solution to the difficulty of the re-impregnation of conventional nets. Even if they showed a good efficacy in control conditions, their efficacy in the field, particularly in areas with resistance of Anopheles gambiae to pyrethroids, is not well documented. This study compares wide (Olyset®) and small (Permanet®) mesh LLINs in field conditions, using entomological parameters. The two LLINs were tested in a rice-growing area of south-western Burkina Faso (West Africa) with year around high density of the main malaria vector An. gambiae s.s. In the study village (VK6), there is a mixed population of two molecular forms of An. gambiae, the S-form which dominates during the rainy season and the M-form which dominates the rest of the year. The two LLINs Olyset® and Permanet® were distributed in the village and 20 matched houses were selected for comparison with four houses without treated nets. Mosquito entrance rate was ten fold higher in control houses than in houses with LLINs and there was no difference between the two net types. Among mosquitoes found in the houses, 36 % were dead in LLIN houses compared to 0% in control houses. Blood feeding rate was 80 % in control houses compared to 43 % in LLIN houses. The type of net did not significantly impact any of these parameters. No mosquitoes were found inside Permanet®, whereas dead or dying mosquitoes were collected inside the Olyset®. More than 60% of mosquitoes found on top or inside the nets had had blood meals from cattle, as shown by ELISA analysis. The percentage of blood-fed mosquitoes in a bed net study does not necessarily determine net success. The efficacy of the two types of LLINs was comparable, during a period when the S-form of An. gambiae was carrying the kdr gene. Significantly higher numbers of mosquitoes were collected in control houses compared to intervention houses, indicating that the LLINs provided an additional deterrent effect, which enhanced their expected prevention capacity.

Tài liệu tham khảo

Lengeler C, Cattani J, De Savigny D: Net gain. A new method for preventing malaria deaths. 1996, IDRC Otawa/WHO, Geneva, 189- Binka FN, Kubaje A, Adjuik M, Williams LA, Lengeler C, Maude GH, Arma GE, Kajihra B, Adiama JH, Lengeler C, Smith PG: Impact of permethrin treated bed nets in child mortality in Kassena-Nankana district, Ghana: a randomized controlled trial. Trop Med Int Health. 1996, 1: 147-154. Nevill CG, Some ES, Mung'ala VO, Mutemi W, New L, Marsh K, Lengeler C, Snow RW: Insecticide-treated bed nets reduce mortality and severe morbidity from among children on the Kenyan Coast. Trop Med Int Health. 1996, 1: 139-46. Curtis CF: Appropriate methods of vectors control. 1990, Bocca Raton, Florida CRC Press, 5-46. WHO: A global strategy for malaria control, Geneva. 1990, 30- Lines J: Mosquito nets and insecticides for nets treatment: a discussion of existing and potential distribution systems in Africa. Trop Med Int Health. 1996, 1: 616-632. 10.1046/j.1365-3156.1996.d01-97.x. Guillet P, Alnwick D, Cham MK, Neira M, Zaim M, Heymann D, Mukelabai K: Long-lasting treated mosquito nets: a breakthrough in malaria prevention. Bull World Health Organ. 2001, 79: 998- WHO: Report of the fifth whopes working group meeting (Review of VectoBaWG, Permanet® and Gokilaht-S5EC), Geneva. 2001, 43- WHO: Report of the seventh WHOPES working group meeting (Review of VectoBaWG, Permanet® and Gokilaht-S5EC), Geneva. 2004, 78- Chandre F, Darriet F, Manguin S, Brengues C, Carnevale P, Guillet P: Pyrethroid cross resistance spectrum among populations of Anopheles gambiae s.s. from Côte d'Ivoire. J Am Mosq Contr Assoc. 1999, 15: 53-59. Diabaté A, Baldet T, Chandre F, Akogbeto M, Guiguemdé TR, Darriet F, Brengues C, Guillet P, Hemingway J, Small G, Hougard JM: The role of agricultural insecticides in Anopheles gambiae s.l. resistance to pyrethroids in Burkina Faso, West Africa. Am J Trop Med Hyg. 2002, 67: 617-622. Chandre F, Manguin S, Brengues C, Dossou Yovo J, Darriet F, Diabaté A, Carnevale P, Guillet P: Current distribution of pyrethrinoid resistance gene (Kdr) in Anopheles gambiae complex from West Africa and further evidence for reproductive isolation of Mopti form. Parassitology. 1999, 41: 319-322. Diabaté A, Baldet T, Chandre F, Dabiré KR, Kengne P, Guiguemdé TR, Simard F, Guillet P, Hemingway J, Hougard JM: Kdr Mutation, a Genetic marker to Assess events to Introgression Between the Molecular M and S forms of Anopheles gambiae (Dipterae: Culicidae) in the Tropical Savannah area of West Africa. Entomol Soc America. 2003, 40: 195-198. Darriet F, Guillet P, N'guessan R, Doannio JMC, Koffi A, Konan LY, Carnevale P: Impact de la résistance aux pyréthrinoïdes sur l'efficacité des moustiquaires imprégnées dans la prévention du paludisme: résultats des essais en cases expérimentales avec la deltaméthrine. Bull Soc Path Exot. 2000, 93 (Suppl 2): 131-134. Darriet F, Guillet P, N'guessan R, Doannio JMC, Koffi A, Konan LY, Carnevale P: Impact de la résistance d'Anopheles gambiae ss à la perméthrine et à la deltaméthrine sur l'efficacité des moustiquaires imprégnées. Med Trop. 2000, 58: 349-354. Hargreaves K, Koekemoer LL, Brooke BD, Hunt RH, Mthembe J, Coetzee M: Anopheles funestus resistant to pyrethroids insecticides in South Africa. Med Vet Entomol. 2000, 2: 181-189. 10.1046/j.1365-2915.2000.00234.x. Brooke BD, Kloke G, Hunt RH, Koekemoer LL, Temu EA, Taylor ME, Small G, Hemingway J, Coetzee M: Bioassay and biochemical analyses of insecticide resistance in southern African Anopheles funestus (Diptera : Culicidae). Bull Entomol Res. 2001, 91: 265-272. Etang J, Manga L, Chandre F, Guillet P, Fondjo E, Mimpfoundi R, Toto JC, Fontenille D: Insecticide Susceptibility status of Anopheles gambiae s.l. (Diptera : Culicidae) in Republic of Cameroon. J Med Entomol. 2003, 4: 492-497. Etang J, Chandre F, Guillet P, Manga L: Reduced bio-efficacy of permethrin EC imprenated bed nets against an Anopheles gambiae strain with oxidase-based pyrethroid tolerance. Malar J. 2005, 3: 46-10.1186/1475-2875-3-46. Vulule JM, Beach RF, Atieli FK, McAllister JC, Brogdon WG, Roberts JM, Mwangui RW, Hawley WA: Elevated oxidase and esterase levels associated with permethrin tolerance in Anopheles gambiae from Kenya villages using permethrin-impregnated nets. Med Vet. 1999, 13: 239-244. Henry MC, Doanio JMC, Darriet F, Nzeyimana I, Carnevale P: Efficacité des moustiquaires pré-imprégnées de permethrine OLYSET® Nets en zone de resistance des vecteurs aux pyrethrinoides II. Evaluation parasito-clinique. Med Trop. 1999, 59: 355-357. Lindsay SW, Snow RW, Bloomfield GL, Janneh MS, Wirtz RA, Greenwood BM: Impact of permethrin-treated bed nets on malaria transmission by the Anopheles gambiae complex in the Gambia. Med Vet Entomol. 1989, 3: 263-271. Van Bortel W, Barutwanonyo M, Delacolette C, Coosemans M: Motivation to acquire and use impregnated mosquito in a stable malaria zone in Burundi. Trop Med Int Health. 1996, 1: 71-80. 10.1046/j.1365-3156.1996.d01-14.x. Binka FN, Adongo P: Acceptability and use for insecticide ednets in northern Ghana. Trop Med Int Health. 1997, 2: 499-507. 10.1046/j.1365-3156.1997.d01-299.x. Corbel V, Chandre F, Brengues C, Akogbeto M, Lardeux F, Hougard JM, Guillet P: Dosage-dependent effects of permethrin-treated nets on the behaviour of Anopheles gambiae and the selection of pyrethroid resistance. Malar J. 2004, 3: 22-10.1186/1475-2875-3-22. Beier JC, Perkins PV, Wirtz RA, Koros J, Diggs D, Gargan TPII, Koech DK: Bloodmeal identification by direct enzyme linked immunosorbent assay (ELISA), tested on Anopheles (Diptera : Culicidae) in Kenya. J Med Ent. 1986, 25: 9-16. Scott JA, Brogdon WD, Collins FH: Identification of single specimens of Anopheles gambiae complex by the polymerase chain reaction. Am J Trop Med Hyg. 1993, 49: 520-529. Favia G, Lanfroncotti A, Spanos L, Sidén-Kiamos I, Louis C: Molecular characterisation of ribosomal polymorphisms discriminating among chromosomal forms of Anopheles gambiae ss. Insect Mol Biol. 2001, 10: 19-30. 10.1046/j.1365-2583.2001.00236.x. Martinez-Torres D, Chandre F, Williamson MS, Darriet F, Berge JB, Devonshire AL, Guillet P, Pasteur N, Pauron D: Molecular characterization of pyrethroid knockdown resistance (kdr) in the major malaria vector Anopheles gambiae s.s. Insect Mol Biol. 1998, 7: 179-84. 10.1046/j.1365-2583.1998.72062.x. Baldet T, Diabaté A, Guiguemdé TR: Etude de la transmission du paludisme en 1999 dans la zone rizicole de la Vallée du Kou (Bama) Burkina Faso. Cahiers Santé. 2003, 13: 55-60. Doannio JMC, Dossou-Yovo J, Diarrasouba G, Chauvancy G, Darriet F, Chandre F, Henry MC, Nzeymana I, Guillet P, Carnevale P: Efficacité des moustiquaires pré-impregnées de perméthrine OLYSET® en zone de résistance des vecteurs aux pyrethrinoïdes I. Evaluation entomologique. Med Trop. 1999, 59: 349-354. Koella JC, Sorensen FL, Anderson RA: The malaria parasite Plasmodium falciparum increases the frequency of multiple feedings of its mosquito vector, Anopheles gambiae. Proc R Soc Lond Biol Sc. 1998, 265: 763-768. 10.1098/rspb.1998.0358. Robert V, Gazin P, Carnevale P: Malaria transmission in three sites surrounding the area of Bobo-Dioulasso (Burkina Faso): the savanna, a rice field and the city. Bull Soc Vect Ecol. 1986, 12: 541-543. Lines J, Lengeler C, Cham K, de Savigny D, Chimumbwa J, Langi P, Carroll D, Mills A, Hanson K, Webster J, Lynch M, Addington W, Hill J, Rowland M, Worrall E, MacDonald M, Kilian A: Scaling-up and sustaining insecticide-treated net coverage. Lancet Infect Dis. 2003, 3: 465-466. 10.1016/S1473-3099(03)00717-5. Soremekun S, Maxwell C, Zuwakuu , Chen C, Michael E: Measuring the efficacy of insecticide treated bed nets: the use of DNA fingerprinting to increase the accuracy of personal protection estimates in Tanzania. Trop Med Int Health. 2004, 9: 664-672. 10.1111/j.1365-3156.2004.01250.x. Maxwell CA, Chambo W, Mwaimu M, Magogo F, Carneiro IA, Curtis CF: Variation of malaria transmission and morbidity with altitude in Tanzania and with introduction of alphacypermethrin treated nets. Malar J. 2003, 2: 28-10.1186/1475-2875-2-28.