Possible impact of Urbanization on the breeding of Blackfly Vector and transmission of Onchocerciasis in some parts of Nigeria
https://dx.doi.org/10.4314/njpar.v42i2.22
Keywords:
Onchocerciasis, Onchocerca volvulus, Simulium damnosum, Blackfly Vectors, River BlindnessAbstract
Onchocerciasis, caused by Onchocerca volvulus is transmitted in Nigeria by female blackflies of the Simulium damnosum group. To monitor interruption of transmission and or elimination of onchocerciasis, traps are normally set and or human landing collection of female flies carried out at high risk areas along these river banks (the breeding sites). Currently, the protocol demands that at least 6000 female flies be collected from each transmission zone for Polymerase Chain Reaction (PCR) analysis in order to determine the infectivity rate of the female blackflies. During the May 2021 Nigerian Onchocerciasis Elimination Committee (NOEC) Meeting, it was observed that very low or no female S. damnosum flies were trapped and or caught in 18 months of field exercise from the river systems in Kebbi and Zamfara States as well asAbuja the Federal Capital Territory (FCT). These river systems hitherto were productive breeding sites of blackfly vector hence transmission of onchocerciasis was active and the areas were endemic for onchocerciasis. Again, these rivers are known to traverse the semi-urban and urban centres in these areas. It was suggested that among other factors, that rapid urbanization in these areas may be a major contributory factor that has affected the ecology of the breeding sites and has made the rivers currently considered non-suitable breeding waters for the blackfly vectors. This study was a literature search undertaken to bring to focus the possibility that urbanization may have negatively impacted on the breeding of Simulium vectors and transmission of onchocerciasis in Kebbi and Zamfara States as well as Abuja, the Federal Capital Territory, and helped the elimination of the disease. Some research questions are also thrown up to guide empirical and operational studies.
References
Adler, PH, & Crosskey, RW (2021). World Blackflies (Diptera: Simuliidae): A Comprehensive Revision of the Taxonomic a n d G e o g r a p h i c a l I n v e n t o r y [https://www.biotaxa.org/Zootaxa/article/vi ew/zootaxa.4455.1.2Accessed 09/07/2021.
Nwoke, BEB & Uwazie, OU (1991), Studies on the blackflies Simulium of Imo State Nigeria: The distribution of immature stage in Isiukwuato -Okigwe Area. Nigerian Journal of Parasitology 12: 29-37
Grunewald, J. (1981), Hydro-chemical and physical characteristics of the larval sites of species of the Simulium damnosum complex, In: Laird, M. (Ed.) Blackflies: The future for biological methods in integrated control, Academic Press, London, pp227- 235.
Davies, JB & Crosskey, RW (1992), Simulium -Vectors of Onchocerciasis. WHO, Division of Control of Tropical
Diseases, WHONBC/91.992, WHO Geneva
Thompson, BH (1976), Studies on the flight range and dispersal of Simulium damnosum (Diptera: Simuliidae) in the rain-forest of Cameroon, Ann Trop Med Parasitology, 70(3) 343-354
Hoerauf, AM (2011), Onchocerciasis, In: Tropical Infectious Diseases (3rd Edition), Edited by: Richard L. Guerrant, David H. Walker and Peter F. Weller, Elsevier. UK
Nwoke, B E B; Dozie, INS (2001). Operational research in onchocerciasis control in Nigeria, Nigerian Journal of Parasitology, 22(1&2): 3-10
Anon (2002). Second National Plan of Action for the Control of Onchocerciasis in Nigeria, 2003-2013. Federal Ministry of Health,Abuja, Nigeria
White, E(1969), Man-made lakes in tropical Africa and their biological potential, In: Biological Conservation, Academic Press London.
Nwoke, B E B; Takahashi, H & Shiwaku, K. (1991), Nigerian onchocerciasis: epidemiological perspective. Japanese J. Trop Med. Hyg., 19 (12): 191-201.
Nwoke, BEB (1988), Studies on epidemiology of human onchocerciasis on the Jos Plateau Nigeria. VII. The effects of climatic factors on the diurnal biting behaviour or Simulium damnosum Theobald (Diptera: Simuliidae). Insect Science Application (Kenya) 9 (3): 323-328.
Nwoke, BEB (1987). Studies on the field epidemiology of human onchocerciasis on the Jos Plateau, Nigeria, PhD Thesis, University of Jos Nigeria pp 343.
Crosskey, R. W (1958), First results of the control of Simulium damnosum Theobald (Diptera: Simuliidae) in Northern Nigeria. Bulletin of Entomological Research, 49:715-735
Crosskey, R. W (1979), An appraisal of current knowledge of S. damnosum sl in the Federal Republic of Nigeria in relation to the development of an onchocerciasis control campaign. WHO/VCB/79.717, Geneva
Davies, JB (1963). An assessment of the insecticidal control of Simulium damnosum Theobald in Abuja Emirate, Northern Nigeria from 1955 to 1960 1: The effect on the prevalence of onchocerciasis in the human population. Annals of Tropical Medicine and Parasitology, 57: 161-181
Davies, JB(1968), The Simulium control scheme at Abuja, Northern Nigeria and its effect on the prevalence of onchocerciasis in the area. Bulletin of World Health Org. 39:187-207.
Vajime, CG(1982). Cytological studies of Simulium damnoum in relation to the control of onchocerciasis in Nigeria. Proceedings of the First National Conference on Onchocerciasis in Nigeria. PP. 56-58, September 1-4, 1982, Kaduna, Nigeria.
Mafuyai. R.B. Post. R.J., Vajime, C.C, and Molyneux, D.H (1996), Cytotaxonomic identifications of the Simulium damnosum complex (Diptera: Simuliidae) from N i g e r i a . Tro p i c a l M e d i c i n e a n d International Health 1(6): 779-785
Mbah, E and Nock, IH (2003), Effects of some Hydrophysico-Chemical Factors on the Distribution of Simuliids in Kaduna State, Nigeria, Nigerian Journal of Entomology, 20: 61-73
Ciadamidaro S, Mancini L, & Rivosecchi L (2016), Black flies (Diptera, Simuliidae) as ecological indicators of stream ecosystem health in an urbanizing area (Rome, Italy). Ann 1st Super Sanita, 52(2):269-276
Prommi, T & Payakka, A (2015), Aquatic insect biodiversity and water quality parameters of streams in Northern Thailand, Sains Malaysiana; 44(5):707-717.
Opoku AA (2006), The ecology and biting activity of blackflies (Simuliidae) and the prevalence of onchocerciasis in an agricultural community in Ghana. WAJAE., 9:1-7
World Bank (2016), World Developing Indicators, World Bank, Washington DC, USA
WHO (2010), Hidden Cities: Unmasking and Overcoming Health Inequities in Urban Settings; WHO Geneva, Switzerland
United Nations (2018), Revision of World Urbanization Prospects, United Nations: NewYork, NY, USA, 2018.
Nwoke, B E B & Ehighibe, OC (1993), Sustainable urban development and human health: Septic tanks as a major breeding habitat of mosquito vectors of human diseases in South-eastern Nigeria. Angewandte Parasitol. 34: 1-10
Zaharia, L., G. Ioana-Toroimac, O. Cocoş, F. A. Ghiţă, and E. Mailat.( 2016), Urbanization effects on the river systems in the Bucharest City region (Romania). Ecosystem Health and Sustainability 2(11):e01247. 10.1002/ehs2.124
Barles, S., (2007) Urban metabolism and river systems: an historical perspective – Paris and the Seine, 1790– 1970. Hydrology and Earth System Sciences 11:1757–1769
Chen, X; Tu, X; Xie, P & Y. Li (2010), Advances in the study of the human activities affecting the variation of hydrological elements, Advances in Earth Science, 25(8): 800–811
Wang, L; Li, H; Dang, J; Zhao,Y; Zhu,Y& Qiao, P (2020), Effects of Urbanization on Water Quality and the Macrobenthos Community Structure in the Fenhe River, Shanxi Province, China, Research Article | Open Access, Volume 2020 |Article ID 8 6 5 3 4 8 6 | https://doi.org/10.1155/2020/8653486
Hu, G; Guo, J & Luo, X (2009), Distribution, sources, and risk assessment of polycyclic aromatic hydrocarbons (PAHs) in surface sediments from Baiyangdian lake, Research of Environmental Sciences, 22(3): 321–326
Covich, P; Palmer, MA & Crowl, TA (1999) The role of benthic invertebrate species in freshwater ecosystems- zoobenthic species influence energy flows and nutrient cycling, Bioscience, 49(2): 119–127
Docile, TN; Figueiró,R; Gil-Azevedo, LH & Nessimian, JL (2015), Water pollution and distribution of the blackfly (Diptera: Simuliidae) in the Atlantic Forest, Brazil, Rev Biol Trop; 63(3):683-693
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2023 Nigerian Journal of Parasitology
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.