arthropod vectors
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2021 ◽  
Vol 11 (4) ◽  
pp. 371-381
Author(s):  
Yusuf Amuda Tajudeen ◽  
Iyiola Olatunji Oladunjoye ◽  
Mutiat Oluwakemi Mustapha ◽  
Sheriff Taye Mustapha ◽  
Nimat Toyosi Ajide-Bamigboye

Background: The rapid circulation of arboviruses in the human population has been linked with changes in climatic, environmental, and socio-economic conditions. These changes are known to alter the transmission cycles of arboviruses involving the anthropophilic vectors and thus facilitate an extensive geographical distribution of medically important arboviral diseases, thereby posing a significant health threat. Using our current understanding and assessment of relevant literature, this review aimed to understand the underlying factors promoting the spread of arboviruses and how the three most renowned interdisciplinary and holistic approaches to health such as One Health, Eco-Health, and Planetary Health can be a panacea for control of arboviruses. Methods: A comprehensive structured search of relevant databases such as Medline, PubMed, WHO, Scopus, Science Direct, DOAJ, AJOL, and Google Scholar was conducted to identify recent articles on arboviruses and holistic approaches to health using the keywords including "arboviral diseases", "arbovirus vectors", "arboviral infections", "epidemiology of arboviruses", "holistic approaches", "One Health", "Eco-Health", and "Planetary Health" Results: Changes in climatic factors like temperature, humidity, and precipitation support the growth, breeding, and fecundity of arthropod vectors transmitting the arboviral diseases. Increased human migration and urbanization due to socio-economic factors play an important role in population increase leading to the rapid geographical distribution of arthropod vectors and transmission of arboviral diseases. Medical factors like misdiagnosis and misclassification also contribute to the spread of arboviruses. Conclusion: This review highlights two important findings: First, climatic, environmental, socio-economic, and medical factors influence the constant distributions of arthropod vectors. Second, either of the three holistic approaches or a combination of any two can be adopted on arboviral disease control. Our findings underline the need for holistic approaches as the best strategy to mitigating and controlling the emerging and reemerging arboviruses.


2021 ◽  
Vol 15 (12) ◽  
pp. e0010016
Author(s):  
Michael Celone ◽  
Bernard Okech ◽  
Barbara A. Han ◽  
Brett M. Forshey ◽  
Assaf Anyamba ◽  
...  

Improving our understanding of Mayaro virus (MAYV) ecology is critical to guide surveillance and risk assessment. We conducted a PRISMA-adherent systematic review of the published and grey literature to identify potential arthropod vectors and non-human animal reservoirs of MAYV. We searched PubMed/MEDLINE, Embase, Web of Science, SciELO and grey-literature sources including PAHO databases and dissertation repositories. Studies were included if they assessed MAYV virological/immunological measured occurrence in field-caught, domestic, or sentinel animals or in field-caught arthropods. We conducted an animal seroprevalence meta-analysis using a random effects model. We compiled granular georeferenced maps of non-human MAYV occurrence and graded the quality of the studies using a customized framework. Overall, 57 studies were eligible out of 1523 screened, published between the years 1961 and 2020. Seventeen studies reported MAYV positivity in wild mammals, birds, or reptiles and five studies reported MAYV positivity in domestic animals. MAYV positivity was reported in 12 orders of wild-caught vertebrates, most frequently in the orders Charadriiformes and Primate. Sixteen studies detected MAYV in wild-caught mosquito genera including Haemagogus, Aedes, Culex, Psorophora, Coquillettidia, and Sabethes. Vertebrate animals or arthropods with MAYV were detected in Brazil, Panama, Peru, French Guiana, Colombia, Trinidad, Venezuela, Argentina, and Paraguay. Among non-human vertebrates, the Primate order had the highest pooled seroprevalence at 13.1% (95% CI: 4.3–25.1%). From the three most studied primate genera we found the highest seroprevalence was in Alouatta (32.2%, 95% CI: 0.0–79.2%), followed by Callithrix (17.8%, 95% CI: 8.6–28.5%), and Cebus/Sapajus (3.7%, 95% CI: 0.0–11.1%). We further found that MAYV occurs in a wide range of vectors beyond Haemagogus spp. The quality of evidence behind these findings was variable and prompts calls for standardization of reporting of arbovirus occurrence. These findings support further risk emergence prediction, guide field surveillance efforts, and prompt further in-vivo studies to better define the ecological drivers of MAYV maintenance and potential for emergence.


Author(s):  
N. P. Udeh ◽  
I. S. Ude ◽  
C. Obudulu ◽  
O. A. Okeke ◽  
C. C. Egwuagu ◽  
...  

A survey of some refuse dumpsites in Ifite, Awka, Anambra, Nigeria State were carried out for 5 weeks to determine the arthropod vectors associated with those refuse dumps and their relative abundance per site and species diversity. Five refuse dumpsites were randomly selected based on their composition and human activities within the environment. The sampled sites are Commissioners Quarters (site A), Second Market (site B), Miracle Junction (site C), Star-Lodge Junction (site D) and Wintess Hotel (site E). Fourteen species of arthropods were collected in eight orders and eleven families namely; Muscidae, Culicidae, Blattidae, Calliphoridae, Formicidae, Elateridae, Xystodesmidae, Polydesmidae, Acrididae, Lygaeidae and Selonopidae. The most abundant vector species encountered in all five study sites was Musca domestica, the dominant species, followed by Aedes. spp., and P. americana which occurred in all study sites except site A. Site A, M. domestica 12 (38.71%), followed by A. aegypti 6 (19.35%), site B, M. domestica 15 (25.42%), followed by A. aegypti 12 (20.34%) and P. Americana 10 (16.95%), site C, M. domestica 17 (28.89%), followed by A. aegypti 7 (15.56%) and P. Americana 5 (11.11%), site D, M. domestica 17 (27.42%), followed by A. aegypti 11 (17.74%) and P. americana 7 (11.29%), site E, M. domestica 30 (32.26%), followed by A. spp.,17 (18.28%) and P. Americana 16 (17.20%).The abundance of these vectors suggests the prevalence of arthropod vector borne disease in Ifite, Awka environment. Proper disposal of refuse dumps and public enlightenment on the dangers of indiscriminate dumping of refuse to the general public is highly recommended to avert health and environmental problems associated with these arthropod vectors.


Author(s):  
Mmabaledi Buxton ◽  
Malebogo Portia Buxton ◽  
Honest Machekano ◽  
Casper Nyamukondiwa ◽  
Ryan John Wasserman

Arthropod vectors play a crucial role in the transmission of many debilitating infections, causing significant morbidity and mortality globally. Despite the economic significance of arthropods to public health, public knowledge on vector biology, ecology and taxonomic status remains anecdotal and largely unexplored. The present study surveyed knowledge gaps regarding the biology and ecology of arthropod vectors in communities of Botswana, across all districts. Results showed that communities are largely aware of individual arthropod vectors; however, their ‘potential contribution’ in disease transmission in humans, livestock and wildlife could not be fully attested. As such, their knowledge was largely limited with regards to some aspects of vector biology, ecology and control. Communities were strongly concerned about the burden of mosquitoes, cockroaches, flies and ticks, with the least concerns about fleas, bedbugs and lice, although the same communities did not know of specific diseases potentially vectored by these arthropods. Knowledge on arthropod vector control was mainly limited to synthetic chemical pesticides for most respondents, regardless of their location. The limited knowledge on potentially pathogen-incriminated arthropod vectors reported here has large implications for bridging knowledge gaps on the bio-ecology of these vectors countrywide. This is potentially useful in reducing the local burden of associated diseases and preventing the risk of emerging and re-emerging infectious diseases under global change.


Pathogens ◽  
2021 ◽  
Vol 10 (8) ◽  
pp. 953
Author(s):  
Ghofrane Balti ◽  
Clemence Galon ◽  
Moufida Derghal ◽  
Hejer Souguir ◽  
Souheila Guerbouj ◽  
...  

Small wild mammals are an important element in the emergence and transmission of vector-borne pathogens (VBPs). Among these species, hedgehogs have been found to be a reservoir of VBPs and host of arthropod vectors. Surveillance of VBPs in wildlife and their arthropods are crucial in a one health context. We conducted an exploratory study to screen Atelerix algirus hedgehogs and their infesting ticks and fleas for VBPs using a high throughput microfluidic real-time PCR system. Tested biopsies from hedgehogs were found to be naturally infected by Theileria youngi, Hepatozoon sp., Ehrlichia ewingii, Coxiella burnetii, and Candidatus Ehrlichia shimanensis. Similarly, Haemaphysalis erinacei and Rhipicephalus sanguineus tick species were infected by Ehrlichia ewingii, Rickettsia spp., Rickettsia massiliae, Borrelia sp., Coxiella burnetii, Rickettsia lusitaniae and Anaplasma sp. Archaeopsylla erinacei fleas were infected by Rickettsia asembonensis, Coxiella burnetii, and Rickettsia massiliae. Co-infections by two and three pathogens were detected in hedgehogs and infesting ticks and fleas. The microfluidic real-time PCR system enabled us not only to detect new and unexpected pathogens, but also to identify co-infections in hedgehogs, ticks, and fleas. We suggest that hedgehogs may play a reservoir role for VBPs in Tunisia and contribute to maintaining enzootic pathogen cycles via arthropod vectors.


2021 ◽  
Author(s):  
Michael Celone ◽  
Bernard Okech ◽  
Barbara A Han ◽  
Brett Forshey ◽  
Assaf Anyamba ◽  
...  

Improving our understanding of Mayaro virus (MAYV) ecology is critical to guide surveillance and risk assessment. We conducted a PRISMA-adherent systematic review of the published and grey literature to identify potential arthropod vectors and non-human animal reservoirs of MAYV. We searched PubMed, Embase, Web of Science, SciELO and grey-literature sources including PAHO databases and dissertation repositories. Studies were included if they assessed MAYV virological/immunological measured occurrence in field-caught, domestic, or sentinel animals or in field-caught arthropods. We conducted an animal seroprevalence meta-analysis using a random effects model. We compiled granular georeferenced maps of non-human MAYV occurrence and graded the quality of the studies using a customized framework. Overall, 57 studies were eligible out of 1523 screened, published between the years 1961 and 2020. Seventeen studies reported MAYV positivity in wild mammals, birds, or reptiles and five studies reported MAYV positivity in domestic animals. MAYV positivity was reported in 12 orders of wild-caught vertebrates, most frequently in the orders Charadriiformes and Primate. Sixteen studies detected MAYV in wild-caught mosquito genera including Haemagogus, Aedes, Culex, Psorophora, Coquillettidia, and Sabethes. Vertebrate animals or arthropods with MAYV were detected in Brazil, Panama, Peru, French Guiana, Colombia, Trinidad, Venezuela, Argentina, and Paraguay. Among non-human vertebrates, the Primate order had the highest pooled prevalence (PP) at 13.1% (95% CI: 4.3-25.1%). From the three most studied primate genera we found the highest prevalence was in Alouatta (PP: 32.2%, 95% CI: 0.0-79.2%), followed by Callithrix (PP: 17.8%, 95% CI: 8.6-28.5%), and Cebus/Sapajus (PP: 3.7%, 95% CI: 0.0-11.1%). We further found that MAYV occurs in a wide range of vectors beyond Haemagogus spp. The quality of evidence behind these findings was variable and prompts calls for standardization of reporting of arbovirus occurrence. These findings support further risk emergence prediction, guide field surveillance efforts, and prompt further in-vivo studies to better define the ecological drivers of MAYV maintenance and potential for emergence.


Author(s):  
Yuliya Aleksandrovna Panferova ◽  
Regina Ravilevna Baimova ◽  
Elena Aleksandrovna Syuzyumova ◽  
Valeriya Igorevna Lomonosova ◽  
Gelena Anatolievna Lunina ◽  
...  

The prevalence of Q fever agent, Coxiella burnetii in blood-sucking ixodid ticks in the forest zones of St-Petersburg was investigated. Molecular markers of pathogen were determined in approximately 5 % of vectors, which could suggest of infection foci subsistence close to megalopolis. Data on Coxiella infection rates of arthropod vectors across the North Eurasia were analyzed.


2021 ◽  
Author(s):  
Surya Saha ◽  
W. Rodney Cooper ◽  
The AgriVectors Consortium ◽  
Wayne Hunter ◽  
Lukas Mueller

2021 ◽  
Vol 12 (2) ◽  
pp. 524-527
Author(s):  
Marja J. L. Kik ◽  
Ryanne I. Jaarsma ◽  
Jooske IJzer ◽  
Hein Sprong ◽  
Andrea Gröne ◽  
...  

Members of the genus Bartonella are Gram-negative facultative intracellular bacteria that are transmitted by arthropod vectors. Bartonella alsatica was detected in the spleens and livers of 7 out of 56 wild rabbits (Oryctolagus cuniculus) and in the liver of 1 out of 87 domestic rabbits in the Netherlands. The molecular evidence of B. alsatica infection in wild as well as domestic rabbits indicates the possibility of exposure to humans when these come in close contact with rabbits and possibly their fleas with subsequent risk of Bartonella infection and disease.


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