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Dengue
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Epidemiología
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8541por Mease, Luke E, Coldren, Rodney L, Musila, Lillian A, Prosser, Trish, Ogolla, Fredrick, Ofula, Victor O, Schoepp, Randal J, Rossi, Cindy A, Adungo, Nicholas“…METHODS: Using a population-based, cross-sectional study design, we administered a detailed questionnaire and used ELISA to test the blood of 1,141 healthy Kenyan adults from three districts for the presence of anti-viral Immunoglobulin G (IgG) antibodies to the following viruses: dengue (DENV), West Nile (WNV), yellow fever (YFV), Chikungunya (CHIKV), and Rift Valley fever (RVFV). …”
Publicado 2011
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8542por Sharakhova, Maria V., Timoshevskiy, Vladimir A., Yang, Fan, Demin, Sergei Iu., Severson, David W., Sharakhov, Igor V.“…BACKGROUND: The mosquito Aedes aegypti is the primary global vector for dengue and yellow fever viruses. Sequencing of the Ae. aegypti genome has stimulated research in vector biology and insect genomics. …”
Publicado 2011
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8543por Doucoure, Souleymane, Mouchet, François, Cornelie, Sylvie, DeHecq, Jean Sébastien, Rutee, Abdul Hamid, Roca, Yelin, Walter, Annie, Hervé, Jean Pierre, Misse, Dorothée, Favier, François, Gasque, Philippe, Remoue, Franck“…BACKGROUND: The spread of Aedes albopictus, a vector for re-emergent arbovirus diseases like chikungunya and dengue, points up the need for better control strategies and new tools to evaluate transmission risk. …”
Publicado 2012
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8544por Martins, Ademir Jesus, Ribeiro, Camila Dutra e Mello, Bellinato, Diogo Fernandes, Peixoto, Alexandre Afranio, Valle, Denise, Lima, José Bento Pereira“…Aedes aegypti dispersion is the major reason for the increase in dengue transmission in South America. In Brazil, control of this mosquito strongly relies on the use of pyrethroids and organophosphates against adults and larvae, respectively. …”
Publicado 2012
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8545An Experimental Field Study of Delayed Density Dependence in Natural Populations of Aedes albopictus“…Aedes albopictus, a species known to transmit dengue and chikungunya viruses, is primarily a container-inhabiting mosquito. …”
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8546por Menzel, Nicolas, Fischl, Wolfgang, Hueging, Kathrin, Bankwitz, Dorothea, Frentzen, Anne, Haid, Sibylle, Gentzsch, Juliane, Kaderali, Lars, Bartenschlager, Ralf, Pietschmann, Thomas“…Strikingly, production of infectious Dengue virus, a relative of HCV, was also dependent on PLA2G4A. …”
Publicado 2012
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8547“…RESULTS: Identified EReNTDs of dengue, rabies, Chagas Disease, and cysticercosis disproportionately impact resource-poor settings with poor social determinants of health, spread through globalization, are impacted by vector control, lack available treatments, and threaten global health security. …”
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8548por Austin, S. Kyle, Dowd, Kimberly A., Shrestha, Bimmi, Nelson, Christopher A., Edeling, Melissa A., Johnson, Syd, Pierson, Theodore C., Diamond, Michael S., Fremont, Daved H.“…We previously developed a panel of neutralizing monoclonal antibodies against Dengue virus (DENV)-1, of which few exhibited inhibitory activity against all DENV-1 genotypes. …”
Publicado 2012
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8549por Marois, Eric, Scali, Christina, Soichot, Julien, Kappler, Christine, Levashina, Elena A, Catteruccia, Flaminia“…BACKGROUND: Mosquito transgenesis offers new promises for the genetic control of vector-borne infectious diseases such as malaria and dengue fever. Genetic control strategies require the release of large number of male mosquitoes into field populations, whether they are based on the use of sterile males (sterile insect technique, SIT) or on introducing genetic traits conferring refractoriness to disease transmission (population replacement). …”
Publicado 2012
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8550por Loucq, Christian“…Current researches on vaccines have more challenging targets like the dengue viruses, malaria, human immunodeficiency virus, the respiratory syncytial virus and nosocomial diseases. …”
Publicado 2013
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8551“…Since infections by other viruses in the Flaviviridae family, including Dengue and West Nile Virus, also disrupt P-bodies and are regulated by DDX6, we speculate that DDX6 may have a common function that support the replication of several Flaviviruses.…”
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8552por Smith, S. E., Gibson, M. S., Wash, R. S., Ferrara, F., Wright, E., Temperton, N., Kellam, P., Fife, M.“…It confers potent, cell-intrinsic resistance to infection by diverse enveloped viruses both in vitro and in vivo, including influenza viruses, West Nile virus, and dengue virus. IFITM3 prevents cytosolic entry of these viruses by blocking complete virus envelope fusion with cell endosome membranes. …”
Publicado 2013
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8553por Dunmire, Samantha K., Odumade, Oludare A., Porter, Jean L., Reyes-Genere, Juan, Schmeling, David O., Bilgic, Hatice, Fan, Danhua, Baechler, Emily C., Balfour, Henry H., Hogquist, Kristin A.“…Comparing the EBV response profile to multiple other acute viral infections, including influenza A (influenza), respiratory syncytial virus (RSV), human rhinovirus (HRV), attenuated yellow fever virus (YFV), and Dengue fever virus (DENV), revealed similarity only to DENV. …”
Publicado 2014
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8554por Juneja, Punita, Osei-Poku, Jewelna, Ho, Yung S., Ariani, Cristina V., Palmer, William J., Pain, Arnab, Jiggins, Francis M.“…The mosquito Aedes aegypti transmits some of the most important human arboviruses, including dengue, yellow fever and chikungunya viruses. It has a large genome containing many repetitive sequences, which has resulted in the genome being poorly assembled — there are 4,758 scaffolds, few of which have been assigned to a chromosome. …”
Publicado 2014
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8555“…Given the importance of Aedes aegypti as a vector of human pathogens including dengue and yellow fever, understanding the impact of environmental factors such as temperature, resource availability, and intraspecific competition during development is critical for population control purposes. …”
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8556por Furuta, Atsushi, Abdus Salam, Kazi, Hermawan, Idam, Akimitsu, Nobuyoshi, Tanaka, Junichi, Tani, Hidenori, Yamashita, Atsuya, Moriishi, Kohji, Nakakoshi, Masamichi, Tsubuki, Masayoshi, Peng, Poh Wee, Suzuki, Youichi, Yamamoto, Naoki, Sekiguchi, Yuji, Tsuneda, Satoshi, Noda, Naohiro“…Both hal3 and suvanine inhibited the ATPase, RNA binding, and serine protease activities of NS3 helicase with IC(50) values of 8, 8, and 14 µM, and 7, 3, and 34 µM, respectively. However, the dengue virus (DENV) NS3 helicase, which shares a catalytic core (consisting mainly of ATPase and RNA binding sites) with HCV NS3 helicase, was not inhibited by hal3 and suvanine, even at concentrations of 100 µM. …”
Publicado 2014
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8557por Pauvolid-Corrêa, Alex, Campos, Zilca, Juliano, Raquel, Velez, Jason, Nogueira, Rita Maria Ribeiro, Komar, Nicholas“…There were no seropositive equines for Bussuquara, Iguape, Yellow fever and all four Dengue virus serotypes. The detection of WNV-seropositive equines in ten ranches and ILHV and SLEV-seropositive equines in fourteen ranches of two different sub-regions of Pantanal is strong evidence of widespread circulation of these flaviviruses in the region.…”
Publicado 2014
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8558por Pagès, Frédéric, Polycarpe, Dominique, Dehecq, Jean-Sébastien, Picardeau, Mathieu, Caillère, Nadège, Jaffar-Bandjee, Marie-Christine, Michault, Alain, Filleul, Laurent“…This situation is in part due to the improvement of the system in the first years but also to a real increase in the number of detected cases due to the introduction of molecular methods and to increased biological investigation into the Dengue-like syndrome by medical practitioners on the island since the Chikungunya crisis in 2006. …”
Publicado 2014
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8559por Singhi, Sunit, Chaudhary, Dhruva, Varghese, George M., Bhalla, Ashish, Karthi, N., Kalantri, S., Peter, J. V., Mishra, Rajesh, Bhagchandani, Rajesh, Munjal, M., Chugh, T. D., Rungta, Narendra“…The committee decided to focus on most common infections on the basis of available epidemiologic data from India and overall experience of the group. These included dengue hemorrhagic fever, rickettsial infections/scrub typhus, malaria (usually falciparum), typhoid, and leptospira bacterial sepsis and common viral infections like influenza. …”
Publicado 2014
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8560por Brister, J. Rodney, Bao, Yiming, Zhdanov, Sergey A., Ostapchuck, Yuri, Chetvernin, Vyacheslav, Kiryutin, Boris, Zaslavsky, Leonid, Kimelman, Michael, Tatusova, Tatiana A.“…Over the past 2 years, the pre-existing influenza and Dengue virus resources have been combined into a single construct and West Nile virus added to the resultant resource. …”
Publicado 2014
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