Analisis Resistensi Nyamuk Anopheles di Indonesia: Study Literature

Analysis of Anopheles Mosquito Resistance in Indonesia: Study Literature

Authors

  • Haerul Latif sriwijaya university
  • Elvi Sunarsih Program Studi Kesehatan Lingkungan, Fakultas Kesehatan Masyarakat, Universitas Sriwijaya, Kampus Indralaya, Ogan Ilir, Sumatera Selatan https://orcid.org/0000-0001-9308-3199
  • Yuanita Windusari Program Studi Kesehatan Lingkungan, Fakultas Kesehatan Masyarakat, Universitas Sriwijaya, Kampus Indralaya, Ogan Ilir, Sumatera Selatan https://orcid.org/0000-0001-8826-4008

DOI:

https://doi.org/10.58623/aspirator.v16i2.28

Keywords:

Anopheles;Insecticide;Resistance

Abstract

Abstract:Resistensi insektisida akibat meluasnya tindakan pengendalian Anopheles dengan tehnik IRS secara berlanjut. Tujuan Penelitian untuk menganalisis resistensi nyamuk Anopheles di Indonesia: Study Literature. Metode: Penelitian ini merupakan literatur review. Untuk meningkatkan kemampuan pencarian, basis data PubMed, Scopus, Science Direct, dan Embase digunakan. Hasil: Menurut Mahkota dari Indonesiamenunjukkan Anopheles resisten terhadap permetrin dan bendiocarb dan metode uji resistensi yang paling banyak di teliti yaitu menggunakan metode Susceptibility Test WHO dan Botol CDC masing – masing sebanyak 9 penelitian Sedangkan insektisida yang sudah resisten yaitu kelompok peritroid dan cypermetrin.Kesimpulan: Resistensi insektisida merupakan masalah serius bagi kesehatan masyarakat. Metode baru dan tehnik pengendalian vektor terpadu dapat secara signifikan mengurangi penyebaran penyakit yang dibawa oleh nyamuk Anopheles.

References

WHO. Malaria [Internet]. 2022 [cited 2023 Feb 2]. Available from: https://www.who.int/news-room/questions-and-answers/item/malaria?gclid=EAIaIQobChMI_YPw7-n2_AIVj2OLCh1VTwSZEAAYASAAEgJRbPD_BwE

Fahmi F, Pasaribu AP, Theodora M, Wangdi K. Spatial analysis to evaluate risk of malaria in Northern Sumatera, Indonesia. Malar J. 2022 Dec 1;21(1).

GTS W. Global technical strategy for malaria, 2016-2030. 2015. 29 p.

Kaltsum U, Windusari Y, Hasyim H. Pengendalian Vektor dan Eliminasi Malaria: Literature Review. Jurnal Ilmiah Universitas Batanghari Jambi [Internet]. 2022 Oct 31;22(3):1709. Available from: http://ji.unbari.ac.id/index.php/ilmiah/article/view/2768

Bandzuh JT, Ernst KC, Gunn JKL, Pandarangga S, Yowi LRK, Hobgen S, et al. Knowledge, attitudes, and practices of Anopheles mosquito control through insecticide treated nets and community-based health programs to prevent malaria in East Sumba Island, Indonesia. Banerjee A, editor. PLOS Global Public Health [Internet]. 2022 Sep 2;2(9):e0000241. Available from: https://dx.plos.org/10.1371/journal.pgph.0000241

Kahamba NF, Finda M, Ngowo HS, Msugupakulya BJ, Baldini F, Koekemoer LL, et al. Using ecological observations to improve malaria control in areas where Anopheles funestus is the dominant vector. Vol. 21, Malaria Journal. BioMed Central Ltd; 2022.

Feng X, Feng J, Zhang L, Tu H, Xia Z. Vector control in China, from malaria endemic to elimination and challenges ahead. Vol. 11, Infectious Diseases of Poverty. BioMed Central Ltd; 2022.

Kaura T, Walter NS, Kaur U, Sehgal R, Kaura T, Walter NS, et al. Different Strategies for Mosquito Control: Challenges and Alternatives. Mosquito Research - Recent Advances in Pathogen Interactions, Immunity, and Vector Control Strategies [Working Title] [Internet]. 2022 Apr 17 [cited 2023 Feb 4]; Available from: https://www.intechopen.com/chapters/81338

Hribar LJ, Boehmler MB, Murray HL, Pruszynski CA, Leal AL. Mosquito Surveillance and Insecticide Resistance Monitoring Conducted by the Florida Keys Mosquito Control District, Monroe County, Florida, USA. Vol. 13, Insects. MDPI; 2022.

Rants’o TA, Koekemoer LL, Panayides JL, van Zyl RL. Potential of Essential Oil-Based Anticholinesterase Insecticides against Anopheles Vectors: A Review. Vol. 27, Molecules. MDPI; 2022.

Demirak MŞŞ, Canpolat E. Plant-Based Bioinsecticides for Mosquito Control: Impact on Insecticide Resistance and Disease Transmission. Vol. 13, Insects. MDPI; 2022.

Agyekum TP, Arko-Mensah J, Botwe PK, Hogarh JN, Issah I, Dadzie SK, et al. Relationship between temperature and Anopheles gambiae sensu lato mosquitoes’ susceptibility to pyrethroids and expression of metabolic enzymes. Parasit Vectors. 2022 Dec 1;15(1).

Ngongang-Yipmo ES, Tchouakui M, Menze BD, Mugenzi LMJ, Njiokou F, Wondji CS. Reduced performance of community bednets against pyrethroid-resistant Anopheles funestus and Anopheles gambiae, major malaria vectors in Cameroon. Parasit Vectors. 2022 Dec 1;15(1).

de Beer B, Vandenhole M, Njiru C, Spanoghe P, Dermauw W, van Leeuwen T. High-Resolution Genetic Mapping Combined with Transcriptome Profiling Reveals That Both Target-Site Resistance and Increased Detoxification Confer Resistance to the Pyrethroid Bifenthrin in the Spider Mite Tetranychus urticae. Biology (Basel). 2022 Nov 7;11(11):1630.

Mugenzi LMJ, Akosah-Brempong G, Tchouakui M, Menze BD, Tekoh TA, Tchoupo M, et al. Escalating pyrethroid resistance in two major malaria vectors Anopheles funestus and Anopheles gambiae (s.l.) in Atatam, Southern Ghana. BMC Infect Dis. 2022 Dec 1;22(1).

Wang C, Thakuri B, Roy AK, Mondal N, Qi Y, Chakraborty A. Changes in the associations between malaria incidence and climatic factors across malaria endemic countries in Africa and Asia-Pacific region. J Environ Manage. 2023 Apr 1;331.

Page MJ, Moher D, McKenzie JE. Introduction to PRISMA 2020 and implications for research synthesis methodologists. Res Synth Methods [Internet]. 2022 Mar 1 [cited 2023 Feb 5];13(2):156–63. Available from: https://onlinelibrary.wiley.com/doi/full/10.1002/jrsm.1535

Shinta HSPM. Konflik Sosial dan Pengendalian Malaria Pada Masa Pandemi Covid-19 di Kabupaten Purworejo, Jawa Tengah Tahun 2021 Shinta*, Helper Sahat P Manalu. 2022; Available from: https://doi.org/10.14710/jkli.0.0.274-284.

Ekawasti F, Martindah E. Awareness of the existence of Leishmaniasis as Protozoan Zoonosis in Indonesia. Indonesian Bulletin of Animal and Veterinary Sciences. 2020 Jul 3;30(2).

Corbel V, Nosten F, Thanispong K, Luxemburger C, Kongmee M, Chareonviriyaphap T. Challenges and prospects for dengue and malaria control in Thailand, Southeast Asia. Trends Parasitol. 2013 Dec 1;29(12):623–33.

Adedeji EO, Oduselu GO, Ogunlana OO, Fatumo S, Koenig R, Adebiyi E. Anopheles gambiae Trehalase Inhibitors for Malaria Vector Control: A Molecular Docking and Molecular Dynamics Study. Insects [Internet]. 2022 Nov 19;13(11):1070. Available from: https://www.mdpi.com/2075-4450/13/11/1070

Setiyaningsih R, Trapsilowati W, Mujiyono M, Lasmiati L. Pengendalian vektor malaria di daerah endemis Kabupaten Purworejo, Indonesia. Balaba: Jurnal Litbang pengendalian penyakit bersumber binatang Banjarbegara. 2018 Aug 28;1–12.

Purnama TB. Gambaran program pengendalian malaria di Kota Lubuk Linggau.

Mahkota R, Nurcandra F, Anggraini FDP, Putri AI, Wispriyono B. Risk of agricultural pesticide exposure to malaria incidence and anopheles susceptibility at an endemic area in central Java, Indonesia – A case–control study. Open Access Maced J Med Sci. 2020;8(E):52–9.

Rohani A, Azahary ARA, Yu KX, Zurainee MN, Najdah WMAW, Lee HL. Insecticide susceptibility status and resistance mechanism of Anopheles cracens Sallum and Peyton and Anopheles maculatus Theobald (Family: Culicidae) from knowlesi malaria endemic areas in Peninsular Malaysia. Asian Pac J Trop Med. 2019 Feb 1;12(2):79–86.

Pusawang K, Sattabongkot J, Saingamsook J, Zhong D, Yan G, Somboon P, et al. Insecticide Susceptibility Status of Anopheles and Aedes Mosquitoes in Malaria and Dengue Endemic Areas, Thai–Myanmar Border. Insects. 2022 Nov 9;13(11):1035.

Sumarnrote A, Overgaard HJ, Corbel V, Thanispong K, Chareonviriyaphap T, Manguin S. Species diversity and insecticide resistance within the Anopheles hyrcanus group in Ubon Ratchathani Province, Thailand. Parasit Vectors. 2020 Dec 1;13(1).

Sumarnrote A, Overgaard HJ, Marasri N, Fustec B, Thanispong K, Chareonviriyaphap T, et al. Status of insecticide resistance in Anopheles mosquitoes in Ubon Ratchathani province, Northeastern Thailand. Malar J. 2017 Jul 25;16(1).

Hanafiah M, Fahrimal Y, Zahrial Helmi T. Resistance Test for Anopheles spp. to Cypermethrin Insecticide Using Bottle Bioassay Test Method. 2021.

Corbel V, Kont MD, Ahumada ML, Andréo L, Bayili B, Bayili K, et al. A new WHO bottle bioassay method to assess the susceptibility of mosquito vectors to public health insecticides: results from a WHO-coordinated multi-centre study. Parasit Vectors [Internet]. 2023 Jan 20;16(1):21. Available from: https://parasitesandvectors.biomedcentral.com/articles/10.1186/s13071-022-05554-7

Kawulur HSI, Hutapea HML, Ayomi I, Suebu M, Pardi MR. Deteksi gen kdr pada nyamuk anopheles di Kabupaten Maluku Tenggara Barat. Balaba: Jurnal Litbang pengendalian penyakit bersumber binatang Banjarnegara. 2021 Dec 14;161–70.

Tun KM, Imwong M, Lwin KM, Win AA, Hlaing TM, Hlaing T, et al. Spread of artemisinin-resistant Plasmodium falciparum in Myanmar: A cross-sectional survey of the K13 molecular marker. Lancet Infect Dis. 2015 Apr 1;15(4):415–21.

Ho LY, Zairi. Species composition and pyrethroid susceptibility status of Anopheles mosquitoes from two different locations in Malaysia. Vol. 30, Tropical Biomedicine. 2013.

Aung PL, Soe MT, Oo TL, Aung KT, Lin KK, Thi A, et al. Spatiotemporal dynamics of malaria in Banmauk Township, Sagaing region of Northern Myanmar: characteristics, trends, and risk factors. BMC Infect Dis. 2022 Dec 1;22(1).

Sugiarto SR, Baird JK, Singh B, Elyazar I, Davis TME. The history and current epidemiology of malaria in Kalimantan, Indonesia. Malar J. 2022 Nov 14;21(1).

Lynd A, Oruni A, Van’T Hof AE, Morgan JC, Naego LB, Pipini D, et al. Insecticide resistance in Anopheles gambiae from the northern Democratic Republic of Congo, with extreme knockdown resistance (kdr) mutation frequencies revealed by a new diagnostic assay. Malar J. 2018 Nov 6;17(1).

Yang Y, Chen T, Liu X, Wang S, Wang K, Xiao R, et al. Ecological risk assessment and environment carrying capacity of soil pesticide residues in vegetable ecosystem in the Three Gorges Reservoir Area. J Hazard Mater. 2022 Aug 5;435.

Youssefi F, Zoej MJV, Hanafi-Bojd AA, Dariane AB, Khaki M, Safdarinezhad A, et al. Temporal Monitoring and Predicting of the Abundance of Malaria Vectors Using Time Series Analysis of Remote Sensing Data through Google Earth Engine. Sensors (Basel). 2022 Mar 2;22(5).

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Published

02-05-2016

How to Cite

Latif, H., Sunarsih, E., & Windusari, Y. (2016). Analisis Resistensi Nyamuk Anopheles di Indonesia: Study Literature: Analysis of Anopheles Mosquito Resistance in Indonesia: Study Literature. ASPIRATOR - Journal of Vector-Borne Diseases Studies, 16(2), 1–9. https://doi.org/10.58623/aspirator.v16i2.28