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10541por Sawadpongpan, Suteema, Jaratsittisin, Janejira, Hitakarun, Atitaya, Roytrakul, Sittiruk, Wikan, Nitwara, Smith, Duncan R.“…Moreover, baicalein also exerted a significant viral inactivation activity on ZIKV (as well as on dengue virus and Japanese encephalitis virus) virions. …”
Publicado 2023
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10542por Al-Eryani, Samira M., Irish, Seth R., Carter, Tamar E., Lenhart, Audrey, Aljasari, Adel, Montoya, Lucia Fernández, Awash, Abdullah A., Mohammed, Elmonshawe, Ali, Said, Esmail, Mohammed A., Hussain, Abdulhafid, Amran, Jamal G., Kayad, Samatar, Nouredayem, Mujahid, Adam, Mariam A., Azkoul, Lina, Assada, Methaq, Baheshm, Yasser A., Eltahir, Walid, Hutin, Yvan J.“…More investment for multisectoral approach and integrated surveillance and control should target all vectors particularly malaria and dengue vectors to guide interventions in urban areas.…”
Publicado 2023
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10543por Liu, Tonggong, Gao, Cheng, Wang, Jingzhe, Song, Jianning, Chen, Xi, Chen, Hongfang, Zhao, Xiaona, Tang, Huanwen, Gu, Dayong“…BACKGROUND: Chikungunya virus (CHIKV) and Dengue virus (DENV) have similar clinical symptoms, which often induce misdiagnoses. …”
Publicado 2023
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10544“…Flaviviruses are a diverse group of RNA viruses, which include the etiological agents of Zika, dengue and yellow fever that are transmitted by mosquitoes. …”
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10545“…Aedes vexans, a mosquito species native to China, also carries mosquito-borne viruses, such as dengue fever virus and Japanese encephalitis virus, but research on this mosquito has been inadequate. …”
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10546por Eickhoff, Christopher S., Meza, Krystal A., Terry, Frances E., Colbert, Chase G., Blazevic, Azra, Gutiérrez, Andres H., Stone, E. Taylor, Brien, James D., Pinto, Amelia K., El Sahly, Hana M., Mulligan, Mark J., Rouphael, Nadine, Alcaide, Maria L., Tomashek, Kay M., Focht, Chris, Martin, William D., Moise, Leonard, De Groot, Anne S., Hoft, Daniel F.“…Nearly all of the identified epitopes are unique to ZIKV and are not present in Dengue viruses. Collectively, we identified 31 immunogenic peptides restricted by the 6 major class I supertypes and 27 promiscuous class II epitopes. …”
Publicado 2023
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10547por Zhao, Minghui, Ran, Xin, Xing, Dan, Liao, Yun, Liu, Wei, Bai, Yu, Zhang, Qiang, Chen, Kan, Liu, Lan, Wu, Mingyu, Ma, Zu, Gao, Jian, Zhang, Hengduan, Zhao, Tongyan“…BACKGROUND: Aedes aegypti and Aedes albopictus are important vectors of human arboviruses, transmitting arboviral diseases such as yellow fever, dengue, chikungunya and Zika. These two mosquitoes coexist on Hainan Island and the Leizhou Peninsula in China. …”
Publicado 2023
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10548por Coalson, Jenna E., Richard, Danielle M., Hayden, Mary H., Townsend, John, Damian, Dan, Smith, Kirk, Monaghan, Andrew, Ernst, Kacey C.“…BACKGROUND: Understanding coupled human-environment factors which promote Aedes aegypti abundance is critical to preventing the spread of Zika, chikungunya, yellow fever and dengue viruses. High temperatures and aridity theoretically make arid lands inhospitable for Ae. aegypti mosquitoes, yet their populations are well established in many desert cities. …”
Publicado 2023
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10549por Isoe, Jun, Simington, Carter J., Oscherwitz, Max E., Peterson, Alyssa J., Rascón, Alberto A., Massani, Brooke B., Miesfeld, Roger L., Riehle, Michael A.“…BACKGROUND: Up to 40% of the world population live in areas where mosquitoes capable of transmitting the dengue virus, including Aedes aegypti, coexist with humans. …”
Publicado 2023
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10550por Salas-Rojas, Mónica, de Oliveira-Filho, Edmilson Ferreira, Almazán-Marín, Cenia, Rodas-Martínez, Alba Zulema, Aguilar-Setién, Álvaro, Drexler, Jan Felix“…BACKGROUND: Arthropod-borne flaviviruses like dengue virus (DENV) and yellow fever virus (YFV) are major human pathogens. …”
Publicado 2023
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10551por Morais, Vanessa dos Santos, Reis Santana, Lídia Maria, Bezerra, João Felipe, Cruz, Flavia Emmanuelle, Rocha de Souza, Themis, Tahmasebi, Roozbeh, Alves Raposo, Rafael Augusto, Marcatti, Roberta, Garcia Barbosa, Erick Matheus, Hefford, Philip Michael, Buccheri, Renata, Cerdeira Sabino, Ester, Charlys da Costa, Antonio“…BACKGROUND: Arthropod-borne viruses, known as arboviruses, pose substantial risks to global public health. Dengue (DENV), Chikungunya (CHIKV) and Zika (ZIKV) viruses stand out as significant concerns in Brazil and worldwide. …”
Publicado 2023
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10552por Granier, Christelle, Toesca, Johan, Mialon, Chloé, Ritter, Maureen, Freitas, Natalia, Boson, Bertrand, Pécheur, Eve-Isabelle, Cosset, François-Loïc, Denolly, Solène“…We found that, compared to alternative enveloped viruses such as Dengue virus (DENV), severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), hepatitis delta virus (HDV), and Crimean–Congo hemorrhagic fever virus (CCHFV) that infect the liver, HCV particles are intrinsically labile. …”
Publicado 2023
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10553por Tabata, Koshiro, Itakura, Yukari, Ariizumi, Takuma, Igarashi, Manabu, Kobayashi, Hiroko, Intaruck, Kittiya, Kishimoto, Mai, Kobayashi, Shintaro, Hall, William W., Sasaki, Michihito, Sawa, Hirofumi, Orba, Yasuko“…These mutations were subsequently introduced into subviral particles (SVPs) of dengue virus type 2 (DENV2), Zika virus (ZIKV), Japanese encephalitis virus (JEV), and West Nile virus (WNV). …”
Publicado 2023
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10554por Forshey, Brett M., Guevara, Carolina, Laguna-Torres, V. Alberto, Cespedes, Manuel, Vargas, Jorge, Gianella, Alberto, Vallejo, Efrain, Madrid, César, Aguayo, Nicolas, Gotuzzo, Eduardo, Suarez, Victor, Morales, Ana Maria, Beingolea, Luis, Reyes, Nora, Perez, Juan, Negrete, Monica, Rocha, Claudio, Morrison, Amy C., Russell, Kevin L., J. Blair, Patrick, Olson, James G., Kochel, Tadeusz J.“…Between May 2000 and December 2007, 20,880 participants were included in the study, with evidence for recent arbovirus infection detected for 6,793 (32.5%). Dengue viruses (Flavivirus) were the most common arbovirus infections, totaling 26.0% of febrile episodes, with DENV-3 as the most common serotype. …”
Publicado 2010
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10555por García-Munguía, Alberto M, Garza-Hernández, Javier A, Rebollar-Tellez, Eduardo A, Rodríguez-Pérez, Mario A, Reyes-Villanueva, Filiberto“…In the present study eight Mexican strains of Beauveria bassiana were assessed against Aedes aegypti by direct exposure of females to 6 × 10(8 )conidia ml (-1 )on a filter paper, afterwards, the transmission of the least and most virulent isolates was evaluated by mating behavior from virgin, fungus-contaminated male to females, to examine this ethological pattern as a new approach to deliver conidia against the dengue vector. METHODS: In an exposure chamber with a filter paper impregnated with 6 × 10(8 )conidia ml (-1 )of the least and most virulent strains of B. bassiana, 6-8 day old males of A. aegypti were exposed for 48 hours, and then transferred individually (each one was a replicate) to another chamber and confined with twenty healthy females of the same age. …”
Publicado 2011
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10556por Stanke, Carla, Kerac, Marko, Prudhomme, Christel, Medlock, Jolyon, Murray, Virginia“…Main categories of findings include: nutrition-related effects (including general malnutrition and mortality, micronutrient malnutrition, and anti-nutrient consumption); water-related disease (including E coli, cholera and algal bloom); airborne and dust-related disease (including silo gas exposure and coccidioidomycosis); vector borne disease (including malaria, dengue and West Nile Virus); mental health effects (including distress and other emotional consequences); and other health effects (including wildfire, effects of migration, and damage to infrastructure). …”
Publicado 2013
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10557por Maciejewski, Ross, Afzal, Shehzad, Fairfield, Adam J., Ghafoor, Arif, Ebert, David S., Ayyaz, Naeem, Ahmed, Maaz“…Our ongoing work is focusing on the adoption of such a system to other regions of the country and the development of disease spread simulations (particularly Dengue Fever) utilizing baseline data collected by our partners. …”
Publicado 2013
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10558por Frey, Kenneth G, Herrera-Galeano, Jesus Enrique, Redden, Cassie L, Luu, Truong V, Servetas, Stephanie L, Mateczun, Alfred J, Mokashi, Vishwesh P, Bishop-Lilly, Kimberly A“…Our results indicate that the Roche-454 Titanium platform is capable of detecting Dengue virus at titers as low as 1X10(2.5) pfu/mL, corresponding to an estimated 5.4X10(4) genome copies/ml maximum. …”
Publicado 2014
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10559por Winskill, Peter, Harris, Angela F, Morgan, Siân A, Stevenson, Jessica, Raduan, Norzahira, Alphey, Luke, McKemey, Andrew R, Donnelly, Christl A“…BACKGROUND: Control of the world’s most important vector-borne viral disease, dengue, is a high priority. A lack of vaccines or effective vector control methods means that novel solutions to disease control are essential. …”
Publicado 2014
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10560por Després, Laurence, Stalinski, Renaud, Tetreau, Guillaume, Paris, Margot, Bonin, Aurélie, Navratil, Vincent, Reynaud, Stéphane, David, Jean-Philippe“…The aim of the present study was to identify transcription level and polymorphism variations associated with resistance to Bti toxins in the dengue vector Aedes aegypti. We used RNA sequencing (RNA-seq) for comparing a laboratory-selected strain showing elevated resistance to Bti toxins and its parental non-selected susceptible strain. …”
Publicado 2014
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