INTEGRATED VECTOR MANAGEMENT: PANACEA FOR MALARIA CONTROL

  • Charles C. Onoh Departrment of Health Services, Federal University of Technology, Owerri, Nigeria
  • Justin K. Aguocha Departrment of Health Services, Federal University of Technology, Owerri, Nigeria
  • Rose N. Nwabueze Department of Microbiology, Federal University of Technology, Owerri, Nigeria
Keywords: Integrated, Vector, Management, Malaria, Control

Abstract

Integrated vector management (IVM) is a selective application of numerous control measures and management techniques either simultaneously or sequentially for effective control of vectors. It is a technique for managing vector populations in the bid to mitigate or interrupt transmission of diseases. IVM is based on the presupposition that proper control is not the exclusive responsibility of the health industry but needs the joint efforts of many other agencies, community interest and involvement. Existing literature on the Review article were retrieved through Google Scholar, PubMed, Journals, Personal communication and elibrary searches, and the literature reviewed. Taking Anopheles mosquito as an example, the bionomics of an anopheles mosquito starts from:
Egg → Larva → Pupa → Adult
The main objective of IVM is to avert the transmission of vector-borne diseases like malaria. An effective mosquito control measure should encompass: environmental, chemical, biological and genetic control measures.
The IVM through its Global Strategic Framework should be developed to tackle various insufficiencies and frailties in vector control and to enhance the efficacy, cost-effectiveness, ecological soundness and sustainability. There must be emphasis on the promotion of interdisciplinary integration and inter-sectoral cooperation between relevant stakeholders at all levels.

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References

[1]. World Health Organisation. Position statement on integrated vector management. Wkly Epidemiol Rec., 2018; 83: 177-181.
[2]. World Health Organisation. Global strategic framework for integrated vector management. 2004; 10: 1–12. WHO/CDS/CPE/PVC/2004.
[3]. Stone CM, Lindsay SW, Chitnis N. How effective is integrated vector management against malaria and lymphatic filariasis where the diseases are transmitted by the same vector? PloSNegl Trop Dis. 2014; 8(12): e3393.
[4].World Health Organisation. Insecticide and vector control. WHO Technical report series, Geneva.1968; No. 443. Control of arthropods of public health importance.
[5]. Caraballo H, King K. Emergency department management of mosquito-borne illness malaria, dengue and West Nile Virus. Emergency Medicine Practice. 2014; 16(5):1-23.
[6]. Heise G. The most dangerous mosquito –borne diseases. World Mosquito Day. 2018; Available https:www.dwcom/en/the most-dangerous-borne diseases/a-45117067.
[7]. The World Health Report: reducing risks, promoting healthy life. Geneva, World Health Organization, 2002.
[8]. World Health Organisation. Control of arthropods of public health importance. WHO Training Leaflet, 2012; No. 1 Vector Control Series Geneva. Available at: https:apps.who.int/iris/rest/bitstreams/1090210/retrieve.
[9]. Personal communication: Dr. A. C. Nwankwo: Consultant Clinical Entomologist,
[10]. National Arbovirus and Vectors Research Centre, Enugu. 2018.
[11]. World Health Organization.Integrated vector management strategic framework for the
[12]. Eastern Mediterranean Region.2016-2020.
[13]. Challet GL. Elements of a vector control program. J Am Mosq Control Assoc. 1991;7:103-106.
[14]. Mokuolu OA, Mokuolu OA. Engineering based environmental management strategies for malaria control: A review. Sikkim Manipal University Medical Journal. 2016; 3(1): 61-175.
[15]. Najafipour F, Norozi A, Darejeh M. Malaria prevention and control in war areas. Journal of Archives Medicine. 2015., 3(3): e28959.
[16]. Benedict MQ, Robinson SA. The first releases of transgenic mosquitoes: an argument for the sterile insect technique. Trends in Parasitology. 2003; 19(8): 349-55.
[17]. Iqbal JK, Elyazar JK. Malaria distribution, prevalence, drug resistance and control in Indonesia. Advances in Parasitology. 2011; 1(74): 41-175.
[18]. Beier JC, Keating J, Githure JI, Michael BM, Impoinvil M, Novak RJ. (2018). Integrated vector management for malaria control. Malaria Journal. 2018; 7(1): S4 –S13
Published
2020-05-30
How to Cite
Charles C. Onoh, Justin K. Aguocha, & Rose N. Nwabueze. (2020). INTEGRATED VECTOR MANAGEMENT: PANACEA FOR MALARIA CONTROL. IJRDO - JOURNAL OF BIOLOGICAL SCIENCE, 6(5), 23-28. https://doi.org/10.53555/bs.v6i5.3713