Nationwide surveillance identifies yellow fever and chikungunya viruses transmitted by various species of Aedes mosquitoes in Nigeria
Nwangwu, U.; Oguzie, J. U.; Nwachukwu, W. E.; Onwude, C. O.; Dogunro, F. A.; Diallo, M.; Ezihe, C. K.; Agashi, N. O.; Eloy, E. I.; Anokwu, S. O.; Anioke, C. C.; Ikechukwu, L. C.; Nwosu, C. M.; Nwaogo, O. N.; Ngwu, I. M.; Onyeanusi, R. N.; Okoronkwo, A. I.; Orizu, F. U.; Etiki, M. O.; Onuora, E. N.; Adeorike, S. T.; Okeke, P. C.; Chukwuekezie, O. C.; Ochu, J. C.; Ibrahim, S. S.; Ifedayo, A.; Ihekweazu, C.; Happi, C.
Show abstract
BackgroundSince its reemergence in 2017, yellow fever (YF) has been active in Nigeria. The Nigeria Centre for Disease Control (NCDC) has coordinated responses to the outbreaks with the support of the World Health Organization (WHO). The National Arbovirus and Vectors Research Centre (NAVRC) handles the vector component of these responses. This study sought to identify the vectors driving YF transmission and any of the targeted arboviruses and their distribution across states. MethodsEggs, larvae and pupae as well as adult mosquitoes were collected in observational, analytical, and cross-sectional surveys conducted in sixteen YF outbreak states between 2017 and 2020. Adult mosquitoes (field-collected or reared from immature stages) were morphologically identified, and arboviruses were detected using RT-qPCR at the African Centre of Excellence for Genomics of Infectious Diseases (ACEGID). ResultsAedes mosquitoes were collected in eleven of the sixteen states surveyed and the mosquitoes in nine states were found infected with arboviruses. A total of seven Aedes species were collected from different parts of the country. Aedes aegypti was the most dominant (51%) species, whereas Aedes africanus was the least (0.2%). Yellow fever virus (YFV) was discovered in 33 ([~]26%) out of the 127 Aedes mosquito pools. In addition to YFV, the Chikungunya virus (CHIKV) was found in nine pools. Except for Ae. africanus, all the Aedes species tested positive for at least one arbovirus. YFV-positive pools were found in six (6) Aedes species while CHIKV-positive pools were only recorded in two Aedes species. Edo State had the most positive pools (16), while Nasarawa, Imo, and Anambra states had the least (1 positive pool). Breteau and house indices were higher than normal transmission thresholds in all but one state. ConclusionIn Nigeria, there is a substantial risk of arbovirus transmission by Aedes mosquitoes, with YFV posing the largest threat at the moment. This risk is heightened by the fact that YFV and CHIKV have been detected in vectors across outbreak locations. Hence, there is an urgent need to step up arbovirus surveillance and control activities in the country. Author summaryEpidemics of arboviral infections are fast becoming the norm across Africa, especially in Nigeria, where sporadic epidemics of Aedes-borne Yellow Fever (YF) have been on the rise since 2017. A nationwide surveillance was conducted to detect the arboviruses and the vectors transmitting them during large YF outbreaks across Nigeria. Aedes mosquitoes collected from 57 local government areas/outbreak locations, covering 16 out of the 36 states in Nigeria, were reared to adulthood, morphologically identified to species level and assayed using qRT-PCR to detect six epidemiologically important arboviruses (Dengue, Chikungunya (CHIKV), Zika, YF, West Nile and Onyong nyong). Seven Aedes species (including Ae. aegypti, Ae. albopictus, Ae. circumluteolus, Ae. vittatus, Ae. simpsoni complex, Ae. luteocephalus, and Ae. africanus), were caught, with Ae. aegypti and Ae. albopictus the most widespread and predominant. Only YF and CHKV were found in mosquito pools from 9 states, with only Ae. aegypti pools positive for CHKV, while YF virus was found predominantly in this species and Ae. albopictus. This study provides a baseline for widespread distribution of the major Aedes vectors, and their arboviral transmission profiles, which can enhance evidence-based control measures, and strengthen nationwide surveillance systems to forestall future outbreaks of public health magnitude.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Assessment of Culicidae collection methods for xenomonitoring lymphatic filariasis in malaria co-infection context in Burkina Faso 98%
- Bionomics of Aedes aegypti during the 2016-2017 dengue outbreaks in Ouagadougou, Burkina Faso 97%
- Serological evidence of exposure to Rift Valley, Dengue and Chikungunya Viruses among agropastoral communities in Manyara and Morogoro regions in Tanzania: A community Survey 97%
Similar papers in this journal
- Larval ecology and bionomics of Anopheles funestus in highland and lowland sites in western Kenya 98%
- Zika and dengue viruses infecting wild-caught mosquitoes in an environmental protection area in Brazil 97%
- Feeding behavior of Aedes (Aedimorphus) vexans arabiensis, a Rift valley fever virus vector in the Ferlo pastoral ecosystem of Senegal. 97%
Similar papers in this journal
- An assessment of adult mosquito collection techniques for studying species abundance and diversity in Maferinyah, Guinea 98%
- First report of Theileria annulata in Nigeria: findings from cattle ticks in Zamfara and Sokoto States 97%
- Geographical distribution of Anopheles stephensi in eastern Ethiopia 97%
Similar papers in this journal
- Urban ecology of arboviral mosquito vectors along the Kenyan coast 95%
- Two Decades of Endemic Dengue in Bangladesh (2000-2022): Trends, Seasonality, and impact of Temperature and Rainfall Patterns on transmission dynamics 95%
- Aedes albopictus (Skuse) susceptibility status to agrochemical-insecticides used in durian planting systems in southern Thailand 94%
Similar papers in this journal
- Seroprevalence and parasite rates of Plasmodium malariae in a high malaria transmission setting of southern Nigeria. 96%
- Field efficacy of guppies and pyriproxyfen (Sumilarv(R) 2MR) combined with community engagement on dengue vectors in Cambodia: a randomized controlled trial 95%
- Early-evening biting by Anopheles stephensi in Southern Ethiopia: A Challenge for Bed Net Use as Vector Control in Africa 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.