Current epidemiological status of mosquito-borne arboviruses in Gulf countries: a systematic review and meta-analysis

Franklinos LH et al. The effect of global change on mosquito-borne disease. Lancet Infect Dis. 2019;19(9):e302–12.

Liu J et al. Insights into mosquito-borne arbovirus receptors.Cell Insight. 2024:100196.

Vega Rúa A, B.A.J.O.C.o.I.C.-A.t.i.V. Okech, The spread of mosquito-borne diseases: a major and global public health problem. Olfactory Concepts of Insect Control-Alternative to insecticides. 2019:1–27.

Poungou N, et al. Mosquito-borne arboviruses occurrence and distribution in the last three decades in Central Africa: a systematic. Literature Rev. Microorganisms. 2023;12(1):4.

Google Scholar 

Pierson TC, Diamond MSJNm. The continued threat of emerging flaviviruses. Nature microbiology. 2020;5(6):796–812.

CAS  Google Scholar 

Madewell Z. Arboviruses and their vectors. Southern Medical Journal.2020;113(10):520.

CAS  Google Scholar 

Daubney R, Hudson J. Enzootic hepatitis or Rift Valley fever. An un-described virus disease of sheep, cattle and man from East Africa.Journal of Pathology and Bacteriology. 1931.

Himeidan YE et al. Recent outbreaks of rift valley fever in East Africa and the Middle East. Frontiers in public health. 2014;2:169.

Archer BN et al. Epidemiologic investigations into outbreaks of Rift Valley fever in humans, South Africa, 2008–2011.Emerging Infectious Diseases. 2013;19(12):1918.

WHO. Efficacy trials of Rift Valley fever vaccines and therapeutics. Guidance on clinical trial design. World Health Organization Meeting Report. 2019; Available from: https://cdn.who.int/media/docs/default-source/blue-print/rift-valley-fever-blueprint-trial-design-meeting-report-2019.pdf?sfvrsn=ee74e0fb_3

Laith A-E et al. Mosquito-borne diseases: assessing risk and strategies to control their spread in the Middle East.Journal of Biosafety and Biosecurity. 2024.

Al-Abri SS et al. Control of the 2018–2019 dengue fever outbreak in Oman: a country previously without local transmission.International Journal of Infectious Diseases. 2020;90:97–103.

Grabenstein JD, A.S.J.T M, Tomar, Disease I. Global geotemporal distribution of chikungunya disease, 2011–2022. Travel Medicine and Infectious Disease. 2023;54:102603.

Page MJ et al. PRISMA 2020 explanation and elaboration: updated guidance and exemplars for reporting systematic reviews.bmj. 2021;372.

Hajissa K et al. Seroprevalence of SARS-CoV-2 antibodies in Africa: a systematic review and meta-analysis.International journal of environmental research and public health. 2022;19(12):7257.

Hajissa K et al. Prevalence of intestinal protozoan parasites among school children in Africa: a systematic review and meta-analysis. PLoS neglected tropical diseases.2022;16(2):e0009971.

Viechtbauer W. J.J.o.s.s., Conducting meta-analyses in R with the metafor package. Journal of statistical software.2010;36:1–48.

Al-Ghamdi G. Incidence of West Nile virus in Al-Ahsa, Saudi Arabia. International Journal of Virology. 2014.

Al Azraqi TA, El AA, Mekki, Mahfouz AA. Rift Valley fever among children and adolescents in southwestern Saudi Arabia. J Infect Public Health. 2013;6(3):230–5.

Article  PubMed  Google Scholar 

Al Balushi L et al. A second local dengue fever outbreak: a field experience from Muscat Governorate in Oman, 2022. IJID regions. 2023;7:237–41.

Al-Afaleq AI, et al. Seroepidemiological study of Rift Valley fever (RVF) in animals in Saudi Arabia. Trop Anim Health Prod. 2012;44(7):1535–9.

Article  PubMed  Google Scholar 

Al-Azraqi TA, El AA, Mekki, Mahfouz AA. Rift Valley fever in Southwestern Saudi Arabia: a sero-epidemiological study seven years after the outbreak of 2000–2001. Acta Trop. 2012;123(2):111–6.

Article  PubMed  Google Scholar 

Al-Azraqi TA, El AA, Mekki, A.A.J.O.J PM, Mahfouz. Exposure of abattoirs workers to rift valley fever virus infection. Southwest Saudi Arabia.Open Journal of Preventive Medicine. 2013;3:28–31.

Google Scholar 

Al-Azraqi TA, et al. Seroprevalence of dengue virus infection in Aseer and Jizan regions. Southwest Saudi Arabia. Transactions of the Royal Society of Tropical Medicine and Hygiene. 2013;107(6):368–71.

Google Scholar 

Alguridi HI, et al. The first genomic characterization of the Chikungunya Virus in Saudi Arabia. J Epidemiol Glob Health. 2023;13(2):191–9.

Article  PubMed  PubMed Central  Google Scholar 

Alhaj M, et al. Surveillance study on Rift Valley fever in Jazan region. Saudi Arabia. Int J Adv Sci Tech Res. 2015;5(4):1–13.

Google Scholar 

Alhaj MS et al. The circulation of Rift Valley fever virus in sentinel animals in Saudi Arabia: a reterospective cohrt study.Basrah Journal of Veterinary Research. 2019;18(2):80–92.

Alkharsah KR, Al-Afaleq AIJI. and d. resistance, Serological evidence of West Nile virus infection among humans, horses, and pigeons in Saudi Arabia. Infection and drug resistance. 2021:5595–5601.

Almasri M et al. Hajj abattoirs in Makkah: risk of zoonotic infections among occupational workers. Veterinary medicine and science. 2019;5(3):428–34.

Alqahtani AS. Seroprevalence of Dengue virus among pregnant mothers and their-newborn infants in the southwest of Saudi Arabia.Clin. Exp. Obstet. Gynecol. 2020.

Alqahtani A. Invest some Zoonotic viruses South Western Saudi Arabia. Am J Anim Vet Sci.2020;15:108–12.

Google Scholar 

Al-Raddadi R et al. Seroprevalence of dengue fever and the associated sociodemographic, clinical, and environmental factors in Makkah, Madinah, Jeddah, and Jizan, Kingdom of Saudi Arabia. Acta tropica. 2019;189:54–64.

Al-Saeed MS et al. Phylogenetic characterization of circulating Dengue and Alkhumra Hemorrhagic Fever viruses in western Saudi Arabia and lack of evidence of Zika virus in the region: a retrospective study, 2010‐2015.Journal of medical virology. 2017.89(8):1339–46.

Alshabi A et al. Epidemiological screening and serotyping analysis of dengue fever in the Southwestern region of Saudi Arabia.Saudi Journal of Biological Sciences. 2022;29(1):204–10.

Ashshi AMJBT. Serodetection of Dengue virus and its antibodies among blood donors in the western region of Saudi Arabia: a preliminary study. Blood Transfusion. 2015;13(1):135.

Ashshi M. A., Seroprevalence of asymptomatic dengue virus infection and its antibodies among healthy/eligible Saudi blood donors: findings from holy makkah city.Virology: research and treatment.2017;8:1178122X17691261.

Ayyub M, et al. Characteristics of dengue fever in a large public hospital. Jeddah Saudi Arabia. Journal of Ayub Medical College Abbottabad.2006;18(2):9–13.

Google Scholar 

Azhar E et al. Virological diagnosis of dengue fever in Jeddah, Saudi Arabia: comparison between RT-PCR and virus isolation in cell culture. Robert Koch-Institut J Journal of Infectious Diseases and Immunity.2010.

Azhar EI, et al. A seroepidemiological study of rift valley fever virus among slaughter houses’. Workers Saudi Arabia. Int. J. Med. Med. Sci. 2010;2(4):111–5.

Google Scholar 

Boshra H et al. Seroprevalence of sheep and goat pox, peste des petits ruminants and Rift Valley fever in Saudi Arabia.PLoS One. 2015;10(10):e0140328.

Dafalla O, et al. Distribution of Dengue Virus Serotypes in Jazan Region. Southwest Saudi Arabia. Ann Public Health Rep.2021;5:201–15.

Google Scholar 

Dafalla O et al. The emergence of an imported variant of dengue virus serotype 2 in the Jazan region, southwestern Saudi Arabia. Tropical diseases, travel medicine and vaccines.2023;9(1):5.

Dargham SR et al. Seroprevalence of West Nile virus among healthy blood donors from different national populations residing in Qatar. International Journal of Infectious Diseases. 2021;103:502–6.

EL MEKKI AA, Path F. Laboratory evidence of recent Dengue virus infections in Southwestern Saudi Arabia. Med J Cairo Univ. 2014;82(2):99–102.

Google Scholar 

El-Badry AA, et al. Molecular and seroprevalence of imported dengue virus infection in Al-Madinah. Saudi Arabia. Comparative Clinical Pathology.2014;23:861–8.

CAS  Google Scholar 

Elfadil A et al. The persistence of rift valley fever in the Jazan region of Saudi Arabia. Revue Scientifique et Technique (International Office of Epizootics).2006;25(3):1131–6.

Elsheikh AA, et al. Seroprevalence of 2 zoonotic diseases in Southwestern Saudi Arabia. Rift Valley fever and brucellosis. Saudi Med J. 2011;32(7):740–1.

PubMed  Google Scholar 

Gamil MA, et al. Prevalence of dengue fever in Jizan area. Saudi Arabia. Journal of Pure and Applied Microbiology.2014;8(1):225–31.

Google Scholar 

Hakami AM et al. Molecular identification and characterization of different dengue virus serotypes reported in Jazan Area, Kingdom of Saudi Arabia. J. Exp. Biol. Agricult. Sci. 2018;6(5):828–35.

Hakami AM et al. Detection and serotyping of dengue virus circulating in febrile human subjects in Jazan area, Kingdom of Saudi Arabia. J. Exp. Biol. Agricult. Sci. 2018.

Hakami AR, et al. Detection of Chikungunya virus in the Southern region. Saudi Arabia. Virology Journal. 2021;18:1–7.

Google Scholar 

Haroun M et al. Occurrence of equine West Nile virus among horses in Qatar: a preliminary investigation.Eur Sci J. 2017;13(3):118–25.

Hemida MG et al. West Nile virus infection in horses in Saudi Arabia (in 2013–2015). Zoonoses and public health.2019;66(2):248–53.

Humphrey JM et al. Dengue and chikungunya seroprevalence among Qatari nationals and immigrants residing in Qatar. PloS one.2019;14(1):e0211574.

Jamjoom GA, et al. Seroepidemiology of asymptomatic dengue virus infection in Jeddah. Saudi Arabia. Virology: research and treatment.2016;7:VRT.

Google Scholar 

Madani TA et al. Rift Valley fever epidemic in Saudi Arabia: epidemiological, clinical, and laboratory characteristics. Clinical Infectious Diseases. 2003;37(8):1084–1092.

Memish ZA et al. Elevated antibodies against Rift Valley fever virus among humans with exposure to ruminants in Saudi Arabia.The American Journal of Tropical Medicine and Hygiene. 2015;92(4):739.

Mohamed AM et al. Serological survey of Rift Valley fever among sacrifice animals in holy Mecca during pilgrimage season.International Journal of Tropical Medicine. 2011;6(4):85–9.

Mohamed A et al. Seroepidemiological survey on Rift Valley fever among small ruminants and their close human contacts in Makkah, Saudi Arabia, in 2011. Rev Sci Tech.2014;33(3):903–15.

Organji SR et al. Circulation of dengue virus serotypes in the city of Makkah, Saudi Arabia, as determined by reverse transcription polymerase chain reaction. Canadian Journal of Infectious Diseases and Medical Microbiology.2017;2017(1):1646701.

Zailayee A, et al. Dengue virus infect Western Region Saudi Arabia. Journal of Infectious Diseases.2008;12:e328–9.

Google Scholar 

Alhaeli A et al. The epidemiology of dengue fever in Saudi Arabia: a systematic review.Journal of infection and public health. 2016;9(2):117–24.

Mwanyika GO et al. Dengue virus infection and associated risk factors in Africa: a systematic review and meta-analysis. Viruses. 2021;13(4):536.

Ebogo-Belobo JT et al. Contemporary epidemiological data of Rift Valley fever virus in humans, mosquitoes and other animal species in Africa: a systematic review and meta‐analysis. Veterinary Medicine and Science.2023;9(5):2309–28.

Clark MH et al. Systematic literature review of Rift Valley fever virus seroprevalence in livestock, wildlife and humans in Africa from 1968 to 2016.PLoS neglected tropical diseases. 2018;12(7):e0006627.

Olive M-M, Goodman SM, J.-M.J.J.o.w.d. Reynes. The role of wild mammals in the maintenance of Rift Valley fever virus. Journal of wildlife diseases. 2012;48(2):241–66.

Google Scholar 

Skalinski LM et al. Chikungunya seroprevalence in population-based studies: a systematic review and meta-analysis. Archives of Public Health. 2023;81(1):80.

Abdullahi IN et al. Prevalence pattern of Chikungunya virus infection in Nigeria: a four decade systematic review and meta-analysis.Pathogens and global health. 2020;114(3):120–5.

Simo F et al. Chikungunya virus infection prevalence in Africa: a contemporaneous systematic review and meta-analysis. Public health.2019;166:79–88.

Fuller TL et al. Behavioral, climatic, and environmental risk factors for Zika and Chikungunya virus infections in Rio De Janeiro, Brazil, 2015-16. PloS one.2017;12(11):e0188002.

Morgan J, Strode C, J.E.J.P.N.T D, Salcedo-Sora. Climatic and socio-economic factors supporting the co-circulation of dengue, Zika and chikungunya in three different ecosystems in Colombia.PLoS Neglected Tropical Diseases. 2021. 15(3): p. e0009259.

Tapasvi P et al. Prevalence of chikungunya in the city of Ahmedabad, India, during the 2006 outbreak: a community-based study. Dengue Bulletin.2010. 34: pp. 40–5.

Gomes PD et al. High prevalence of arthralgia among infants with Chikungunya disease during the 2019 outbreak in northern region of the state of Rio de Janeiro. Frontiers in Pediatrics. 2022. 10: p. 944818.

Comments (0)

No login
gif