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Author (down) Monath, T.P.; Vasconcelos, P.F.C. file  url
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  Title Yellow fever Type Journal Article
  Year 2015 Publication Journal of Clinical Virology : the Official Publication of the Pan American Society for Clinical Virology Abbreviated Journal J Clin Virol  
  Volume 64 Issue Pages 160-173  
  Keywords Africa/epidemiology; Endemic Diseases/prevention & control; Humans; Incidence; South America/epidemiology; Travel; Yellow Fever/*epidemiology/*physiopathology; *Yellow Fever Vaccine/immunology; Yellow fever virus/*pathogenicity; Epidemiology; Pathogenesis; Yellow fever  
  Abstract Yellow fever, a mosquito-borne flavivirus disease occurs in tropical areas of South America and Africa. It is a disease of major historical importance, but remains a threat to travelers to and residents of endemic areas despite the availability of an effective vaccine for nearly 70 years. An important aspect is the receptivity of many non-endemic areas to introduction and spread of yellow fever. This paper reviews the clinical aspects, pathogenesis, and epidemiology of yellow fever, with an emphasis on recent changes in the distribution and incidence of the disease. Recent knowledge about yellow fever 17D vaccine mechanism of action and safety are discussed.  
  Call Number Serial 1189  
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Author (down) Amaku, M.; Coutinho, F.A.B.; Massad, E. file  url
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  Title Why dengue and yellow fever coexist in some areas of the world and not in others? Type Journal Article
  Year 2011 Publication Bio Systems Abbreviated Journal Biosystems  
  Volume 106 Issue 2-3 Pages 111-120  
  Keywords Adaptive Immunity/*immunology; Aedes/*virology; Africa/epidemiology; Animals; Asia/epidemiology; Computer Simulation; *Demography; Dengue/*epidemiology/immunology/transmission; Humans; Insect Vectors/*virology; *Models, Biological; South America/epidemiology; Species Specificity; Yellow Fever/*epidemiology/immunology/transmission  
  Abstract Urban yellow fever and dengue coexist in Africa but not in Asia and South America. In this paper, we examine four hypotheses (and various combinations thereof) to explain the absence of yellow fever in urban areas of Asia and South America. In addition, we examine an additional hypothesis that offers an explanation of the coexistence of the infections in Africa while at the same time explaining their lack of coexistence in Asia. The hypotheses we tested to explain the nonexistence of yellow fever in Asia are the following: (1) the Asian Aedes aegypti is relatively incompetent to transmit yellow fever; (2) there would exist a competition between dengue and yellow fever viruses within the mosquitoes, as suggested by in vitro studies in which the dengue virus always wins; (3) when an A. aegypti mosquito that is infected by or latent for yellow fever acquires dengue, it becomes latent for dengue due to internal competition within the mosquito between the two viruses; (4) there is an important cross-immunity between yellow fever and other flaviviruses, dengue in particular, such that a person recovered from a bout of dengue exhibits a diminished susceptibility to yellow fever. This latter hypothesis is referred to below as the “Asian hypothesis.” Finally, we hypothesize that: (5) the coexistence of the infections in Africa is due to the low prevalence of the mosquito Aedes albopictus in Africa, as it competes with A. aegypti. We will refer to this latter hypothesis as the “African hypothesis.” We construct a model of transmission that allows all of the above hypotheses to be tested. We conclude that the Asian and the African hypotheses can explain the observed phenomena, whereas other hypotheses fail to do so.  
  Call Number Serial 1532  
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