- 26. Franck J. Dongmo, Charles S. Wondji, Berge Tsanou and Ramsès Djidjou-Demasse. Quantifying ivermectin’s optimal strategy impacts on malaria transmission: a dual-structured mathematical model. Applicable Analysis. Published online: 27 Nov 2024. https://doi.org/10.1080/00036811.2024.2429103
- 25.Tatsinkou Maffo CG, Sandeu MM, Tchoupo M, Dondji Kamga FM, Mugenzi LMJ, Njiokou F, Hughes GL, Wondji CS. Contrasting patterns of Asaia association with Plasmodium falciparum between field-collected Anopheles gambiae and Anopheles coluzzii from Cameroon. Microbiol Spectr. 2024 Nov 12:e0056724. https://doi.org/10.1128/spectrum.00567-24
- 24. Ibrahim SS, Kouamo MFM, Muhammad A, Irving H, Riveron JM, Tchouakui M, Wondji CS. Functional Validation of Endogenous Redox Partner Cytochrome P450 Reductase Reveals the Key P450s CYP6P9a/- b as Broad Substrate Metabolizers Conferring Cross-Resistance to Different Insecticide Classes in Anopheles funestus. Int J Mol Sci. 2024 Jul 25;25(15):8092.https://doi.org/10.3390/ijms25158092
- 23.Dossou C, Tchigossou G, Koto M, Atoyebi SM, Tossou E, Adanzounon D, Ateutchia Ngouanet S, Sina H, Djègbè I, Gbankoto A, Wondji C, Djouaka R. Organophosphate and carbamate susceptibility profiling of Anopheles gambiae sl. across different ecosystems in southern Benin. Wellcome Open Res. 2024 Nov 14;9:424.https://doi.org/10.12688/wellcomeopenres.21452.2
- 22.Boussougou-Sambe ST, Djida Y, Doumba-Ndalembouly AG, Ngossanga B, Boussougou LN, Ambinintsoa MF, Bikangui R, Nguiffo-Nguete D, Nkemngo FN, Agonhossou R, Akoton R, Mbama Ntabi JD, Lissom A, Ntoumi F, Wondji CS, Kremsner PG, Mordmüller B, Borrmann S, Adegnika AA. Resistance of Anopheles gambiae s.s. against commonly used insecticides and implication of cytochrome P450 monooxygenase in resistance to pyrethroids in Lambaréné (Gabon). BMC Infect Dis. 2024 Oct 30;24(1):1221. https://doi.org/10.1186/s12879-024-10021-y
- 21.Carlos S. Djoko Tagne, Mersimine F.M. Kouamo, Magellan Tchouakui , Abdullahi Muhammad, Leon J.L. Mugenzi, Nelly M.T. Tatchou-Nebangwa, Riccado F. Thiomela ,Mahamat Gadji, Murielle J. Wondji, Jack Hearn, Mbouobda H. Desire, Sulaiman S.Ibrahim, Charles S. Wondji. A single mutation G454A in the P450 CYP9K1 drives pyrethroid resistance in the major malaria vector Anopheles funestus reducing bed net efficacy.Genetics, iyae181,07 November 2024.https://doi.org/10.1093/genetics/iyae181
- 20.Odero JO, Nambunga IH, Masalu JP, Mkandawile G, Bwanary H, Hape EE, Njalambaha RM, Tungu P, Ngowo HS, Kaindoa EW, Mapua SA, Kahamba NF, Nelli L, Wondji C, Koekemoer LL, Weetman D, Ferguson HM, Baldini F, Okumu FO. Genetic markers associated with the widespread insecticide resistance in malaria vector Anopheles funestus populations across Tanzania. Parasit Vectors. 2024 May 17;17(1):230. https://doi.org/10.1186/s13071-024-06315-4
- 19.Bouaka Tsakeng CU, Melachio Tanekou TT, Ngambia Freitas FS, Tirados I, Tsagmo Ngoune JM, Bigoga JD, Njiokou F, Wondji CS. Patterns of microbiome composition in tsetse fly Glossina palpalis palpalis during vector control using Tiny Targets in Campo, South Cameroon. Microbiol Spectr. 2024 Nov 5;12(11):e0093524. https://doi.org/10.1128/spectrum.00935-24
- 18.Kinya F, Milugo TK, Mutero CM, Wondji CS, Torto B, Tchouassi DP. Insights into malaria vectors-plant interaction in a dryland ecosystem.Sci Rep. 2024 Sep 4;14(1):20625.PMID: 39232051. https://doi.org/10.1038/s41598-024-71205-9
- 17.Al-Yazeedi T, Muhammad A, Irving H, Ahn SJ, Hearn J, Wondji CS. Overexpression and nonsynonymous mutations of UDP-glycosyltransferases are potentially associated with pyrethroid resistance in Anopheles funestus. PMID: 38266739. PMCID: PMC10963899. https://doi.org/10.1016/j.ygeno.2024.110798
- 16. Fredy Brice Nemg Simo, Urmes Chantale Sobjio Teagho, Serika Marshall Atako, Brice Tiwa Lontsi, Brice Vincent Ayissi Owona, Maurice Demanou, Charles Sinclair Wondji, Basile Kamgang, Felicity Jane Burt, Sadie J. Ryan, Nigel Aminake Makoah, Rhoel R. Dinglasan, Paul Fewou Moundipa. Crimean Congo hemorrhagic fever virus exposure among febrile patients, cattle herders, and cattle herds in Cameroon. Acta Tropica,Available online 18 October 2024, Version of Record 25 October 2024 .https://doi.org/10.1016/j.actatropica.2024.107432
- 15. Magellan Tchouakui,Sulaiman S. Ibrahim, Mersimine K. Mangoua, Riccado F. Thiomela, Tatiane Assatse, Sonia L. Ngongang-Yipmo, Abdullahi Muhammad, Leon J.M. Mugenzi, Benjamin D. Menze,Themba Mzilahowa, Charles S. Wondji. Substrate promiscuity of key resistance P450s confers clothianidin resistance while increasing chlorfenapyr potency in malaria vectors. Cell Repports 43, 114566 Published:July 31, 2024.https://doi.org/10.1016/j.celrep.2024.114566.
- 14.Indoor residual spraying of experimental huts in Cameroon highlights the potential of Fludora® Fusion to control wild pyrethroid-resistant malaria vectors. BMC Infectious Diseasesvolume 24,Article number: 733 (2024).https://doi.org/10.1186/s12879-024-09630-4
- 13.Leon M. J. Mugenzi ,Theofelix A. Tekoh,Stevia T. Ntadoun,Achille D. Chi,Mahamat Gadji,Benjamin D. Menze,Magellan Tchouakui,Helen Irving,Murielle J. Wondji,Gareth D. Weedall,Jack Hearn,Charles S. Wondji. Association of a rapidly selected 4.3kb transposon-containing structural variation with a P450-based resistance to pyrethroids in the African malaria vector Anopheles funestus. PLoS Genet 20(7):e1011344 July 29, 2024. https://doi.org/10.1371/journal.pgen.1011344
- 12.Entomological surveys and insecticide susceptibility profile of Aedes aegypti during the dengue outbreak in Sao Tome and Principe in 2022.PLoS Negl Trop Dis 18(6),June 3, 2024. https://doi.org/10.1371/journal.pntd.0011903
- 11.Judicaël Obame-Nkoghe, Adjoavi Esse Agossou, Gerald Mboowa, Basile Kamgang, Cyril Caminade, Dawn C. Duke, Andrew Karanja Githeko, Obed M. Ogega, Nestor Engone Elloué, Fatou Bintou Sarr, Dieudonné Nkoghe, Pierre Kengne, Nicaise T. Ndam, Christophe Paupy, Moses Bockarie & Patricks Voua Otomo.Climate-influenced vector-borne diseases in Africa: a call to empower the next generation of African researchers for sustainable solutions. Infect Dis Poverty13, 26 (2024). https://doi.org/10.1186/s40249-024-01193-5
- 10.Abkallo HM, Arbuthnot P, Auer TO, Berger DK, Burger J, Chakauya E, Concordet JP, Diabate A, Di Donato V, Groenewald JH, Guindo A, Koekemoer LL, Nazare F, Nolan T, Okumu F, Orefuwa E, Paemka L, Prieto-Godino L, Runo S, Sadler M, Tesfaye K, Tripathi L, Wondji C. Making genome editing a success story in Africa. Nat Biotechnol. 2024 Apr;42(4):551-554.https://doi.org/10.1038/s41587-024-02187-2
- 9.Al-Yazeedi T, Muhammad A, Irving H, Ahn SJ, Hearn J, Wondji CS. Overexpression and nonsynonymous mutations of UDP-glycosyltransferases are potentially associated with pyrethroid resistance in Anopheles funestus. Genomics,2024 Mar;116(2):110798. https://doi.org/10.1016/j.ygeno.2024.110798
- 8.Caroline Fouet, Fred A. Ashu, Marilene M. Ambadiang, Williams Tchapga, Charles S. Wondji & Colince Kamdem. Clothianidin-resistant Anopheles gambiae adult mosquitoes from Yaoundé, Cameroon, display reduced susceptibility to SumiShield® 50WG, a neonicotinoid formulation for indoor residual spraying. BMC Infect Dis 24, Article number:133 (2024). https://doi.org/10.1186/s12879-024-09030-8
- 7.Feudjio Soffack S, Melachio Tanekou TT, Farikou O, Kame Ngasse GI, Tchami Mbagnia MC, Wondji M, Wondji CS, Abd-Alla AMM, Geiger A, Simo G, Njiokou F. The internal transcribed spacer 1 sequence polymorphism brings updates to tsetse species distribution in the northern Cameroon: Importance in planning efficient vector control. Med Vet Entomol. 2024 Jun;38(2):216-226.https://doi.org/10.1111/mve.12717
- 6.Entomological indicators of Plasmodium species transmission in Goma Tsé-Tsé and Madibou districts, in the Republic of Congo. Malaria Journalvolume 23, Article number: 21 (2024).https://doi.org/10.1186/s12936-023-04823-9
- 5.Ashu FA, Fouet C, Ambadiang MM, Penlap-Beng V, Kamdem C. Adult mosquitoes of the sibling species Anopheles gambiae and Anopheles coluzzii exhibit contrasting patterns of susceptibility to four neonicotinoid insecticides along an urban-to-rural gradient in Yaoundé, Cameroon. Malar J. 2024 Mar 2;23(1):65.https://doi.org/10.1186/s12936-024-04876-4
- 4.Anopheles gambiae larvae’s ability to grow and emerge in water containing lethal concentrations of clothianidin, acetamiprid, or imidacloprid is consistent with cross-resistance to neonicotinoids. Parasit Vectors. 2024 Mar 1;17(1):98.https://doi.org/10.1186/s13071-024-06188-7
- 3.Mbama Ntabi JD, Malda Bali ED, Lissom A, Akoton R, Djontu JC, Missontsa G, Mouzinga FH, Baina MT, Djogbenou L, Ndo C, Wondji C, Adegnika AA, Lenga A, Borrmann S, Ntoumi F. Contribution of Anopheles gambiae sensu lato mosquitoes to malaria transmission during the dry season in Djoumouna and Ntoula villages in the Republic of the Congo. Parasites & Vectors . 2024 Mar 2;17(1):104. https://doi.org/10.1186/s13071-023-06102-7
- 2.Amen N. Fadel, Sulaiman S. Ibrahim, Maurice M. Sandeu, Claudine Grâce Maffo Tatsinkou, Benjamin D. Menze, Helen Irving, Jack Hearn, Sanjay C. Nagi, Gareth D. Weedall, Ebai Terence, Williams Tchapga, Samuel Wanji, Charles S. Wondji. Exploring the molecular mechanisms of increased intensity of pyrethroid resistance in Central African population of a major malaria vector Anopheles coluzzii. Evol Appl. 2024 Feb 26;17(2):e13641. https://doi.org/10.1111/eva.13641
- 1.Clothianidin-resistant Anopheles gambiae adult mosquitoes from Yaoundé, Cameroon, display reduced susceptibility to SumiShield® 50WG, a neonicotinoid formulation for indoor residual spraying. BMC Infect Dis24, 133 (2024). https://doi.org/10.1186/s12879-024-09030-8