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Dengue
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9201por Possas, Cristina“…The immunologically naïve status of populations in the Americas, previous infection with dengue virus, and the increased activity of Aedes aegypti might be the contributing factors for such an outbreak in Brazil. …”
Publicado 2016
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9202por Jupille, Henri, Seixas, Gonçalo, Mousson, Laurence, Sousa, Carla A., Failloux, Anna-Bella“…Together with chikungunya virus (CHIKV) and dengue virus (DENV), ZIKV is transmitted by Aedes mosquitoes. …”
Publicado 2016
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9203por Tian, Hongliang, Ji, Xiaoyun, Yang, Xiaoyun, Zhang, Zhongxin, Lu, Zuokun, Yang, Kailin, Chen, Cheng, Zhao, Qi, Chi, Heng, Mu, Zhongyu, Xie, Wei, Wang, Zefang, Lou, Huiqiang, Yang, Haitao, Rao, Zihe“…Strikingly, although ZIKV and dengue virus (DENV) apo-helicases share conserved residues for RNA binding, their different manners of motor domain rotations result in distinct individual modes for RNA recognition. …”
Publicado 2016
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9204por Goo, Leslie, Dowd, Kimberly A., Smith, Alexander R. Y., Pelc, Rebecca S., DeMaso, Christina R., Pierson, Theodore C.“…Other globally relevant flaviviruses include dengue virus (DENV) and West Nile virus (WNV). High-resolution structures of ZIKV reveal many similarities to DENV and suggest some differences, including an extended glycan loop (D. …”
Publicado 2016
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9205“…Amodiaquine, prochlorperazine, quinacrine, and berberine are few promising drugs approved by Food and Drug Administration against dengue virus which also belong to Flaviviridae family. …”
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9206por Wang, Jin, Dong, Hongping, Chionh, Yok Hian, McBee, Megan E., Sirirungruang, Sasilada, Cunningham, Richard P., Shi, Pei-Yong, Dedon, Peter C.“…Using this platform, we found misincorporated dNs occurring at 1 per 10(3) to 10(5) ribonucleotide (nt) in mRNA, rRNAs and tRNA in human cells, Escherichia coli, Saccharomyces cerevisiae and, most abundantly, in the RNA genome of dengue virus. The frequency of dNs varied widely among organisms and sequence contexts, and partly reflected the in vitro discrimination efficiencies of different RNA polymerases against 2′-deoxyribonucleoside 5′-triphosphates (dNTPs). …”
Publicado 2016
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9207por Zhang, Feiran, Hammack, Christy, Ogden, Sarah C., Cheng, Yichen, Lee, Emily M., Wen, Zhexing, Qian, Xuyu, Nguyen, Ha Nam, Li, Yujing, Yao, Bing, Xu, Miao, Xu, Tianlei, Chen, Li, Wang, Zhiqin, Feng, Hao, Huang, Wei-Kai, Yoon, Ki-jun, Shan, Chao, Huang, Luoxiu, Qin, Zhaohui, Christian, Kimberly M., Shi, Pei-Yong, Xu, Mingjiang, Xia, Menghang, Zheng, Wei, Wu, Hao, Song, Hongjun, Tang, Hengli, Ming, Guo-Li, Jin, Peng“…Here we systematically profiled transcriptomes of human neural progenitor cells exposed to Asian ZIKV(C), African ZIKV(M), and dengue virus (DENV). In contrast to the robust global transcriptome changes induced by DENV, ZIKV has a more selective and larger impact on expression of genes involved in DNA replication and repair. …”
Publicado 2016
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9208por Falckenhayn, Cassandra, Carneiro, Vitor Coutinho, de Mendonça Amarante, Anderson, Schmid, Katharina, Hanna, Katharina, Kang, Seokyoung, Helm, Mark, Dimopoulos, George, Fantappié, Marcelo Rosado, Lyko, Frank“…Mosquito host factors play key roles in virus control and it has been suggested that dengue virus replication is regulated by Dnmt2-mediated DNA methylation. …”
Publicado 2016
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9209por Muetze, Tanja, Goenawan, Ivan H., Wiencko, Heather L., Bernal-Llinares, Manuel, Bryan, Kenneth, Lynn, David J.“…In a case study, we use CHAT to construct a network of genes that are differentially expressed in Dengue fever, a viral infection. CHAT was used to identify and compare contextual and degree-based hubs in this network. …”
Publicado 2016
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9210por Battaglia, Vincenza, Gabrieli, Paolo, Brandini, Stefania, Capodiferro, Marco R., Javier, Pio A., Chen, Xiao-Guang, Achilli, Alessandro, Semino, Ornella, Gomulski, Ludvik M., Malacrida, Anna R., Gasperi, Giuliano, Torroni, Antonio, Olivieri, Anna“…Its spread is a major public health concern, given that this species is a competent vector for numerous arboviruses, including those causing dengue, chikungunya, West Nile, and the recently emerged Zika fever. …”
Publicado 2016
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9211“…Water quality and waterborne diseases like hepatitis, cholera, typhoid, malaria and dengue fever are increasing due to chaotic urbanization, industrialization, poor hygienic conditions, and inappropriate water management. …”
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9212por Chan, Kamfai, Weaver, Scott C., Wong, Pui-Yan, Lie, Sherly, Wang, Eryu, Guerbois, Mathilde, Vayugundla, Siva Praneeth, Wong, Season“…In addition, the RT-RPA and RT-PCR assays do not cross-react with dengue and chikungunya viral RNA. This low-cost system lacks complicated, sensitive and high cost components, making it suitable for resource-limited settings. …”
Publicado 2016
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9213por Escobar, Luis E., Romero-Alvarez, Daniel, Leon, Renato, Lepe-Lopez, Manuel A., Craft, Meggan E., Borbor-Cordova, Mercy J., Svenning, Jens-Christian“…More than half of the world population is at risk of vector-borne diseases including dengue fever, chikungunya, zika, yellow fever, leishmaniasis, chagas disease, and malaria, with highest incidences in tropical regions. …”
Publicado 2016
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9214por Fournet, Florence, Rican, Stéphane, Vaillant, Zoé, Roudot, Anna, Meunier-Nikiema, Aude, Kassié, Daouda, Dabiré, Roch K., Salem, Gérard“…Dengue is an emerging infectious disease of global significance. …”
Publicado 2016
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9215por Sacramento, Carolina Q., de Melo, Gabrielle R., de Freitas, Caroline S., Rocha, Natasha, Hoelz, Lucas Villas Bôas, Miranda, Milene, Fintelman-Rodrigues, Natalia, Marttorelli, Andressa, Ferreira, André C., Barbosa-Lima, Giselle, Abrantes, Juliana L., Vieira, Yasmine Rangel, Bastos, Mônica M., de Mello Volotão, Eduardo, Nunes, Estevão Portela, Tschoeke, Diogo A., Leomil, Luciana, Loiola, Erick Correia, Trindade, Pablo, Rehen, Stevens K., Bozza, Fernando A., Bozza, Patrícia T., Boechat, Nubia, Thompson, Fabiano L., de Filippis, Ana M. B., Brüning, Karin, Souza, Thiago Moreno L.“…Zika virus (ZIKV) is a member of the Flaviviridae family, along with other agents of clinical significance such as dengue (DENV) and hepatitis C (HCV) viruses. Since ZIKV causes neurological disorders during fetal development and in adulthood, antiviral drugs are necessary. …”
Publicado 2017
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9216por Barletta, Ana Beatriz Ferreira, Nascimento-Silva, Maria Clara L., Talyuli, Octávio A. C., Oliveira, José Henrique M., Pereira, Luiza Oliveira Ramos, Oliveira, Pedro L., Sorgine, Marcos Henrique F.“…BACKGROUND: Aedes aegypti is the main vector of important arboviruses such as dengue, Zika and chikungunya. During infections mosquitoes can activate the immune pathways Toll, IMD and JAK/STAT to limit pathogen replication. …”
Publicado 2017
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9217por Häcker, Irina, Harrell II, Robert A., Eichner, Gerrit, Pilitt, Kristina L., O’Brochta, David A., Handler, Alfred M., Schetelig, Marc F.“…We applied the Cre/lox recombinase-mediated cassette exchange (RMCE) system to Aedes aegypti, the vector of dengue, chikungunya, and Zika viruses. In this context we created four target site lines for RMCE and evaluated their fitness costs. …”
Publicado 2017
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9218por Cortese, Mirko, Goellner, Sarah, Acosta, Eliana Gisela, Neufeldt, Christopher John, Oleksiuk, Olga, Lampe, Marko, Haselmann, Uta, Funaya, Charlotta, Schieber, Nicole, Ronchi, Paolo, Schorb, Martin, Pruunsild, Priit, Schwab, Yannick, Chatel-Chaix, Laurent, Ruggieri, Alessia, Bartenschlager, Ralf“…Analyses of human hepatic cells and neural progenitor cells infected with ZIKV revealed endoplasmic reticulum (ER) membrane invaginations containing pore-like openings toward the cytosol, reminiscent to RFs in Dengue virus-infected cells. Both the MR766 African strain and the H/PF/2013 Asian strain, the latter linked to neurological diseases, induce RFs of similar architecture. …”
Publicado 2017
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9219“…The mosquito Aedes aegypti (Ae. aegypti) is the most notorious vector of illness-causing viruses such as Dengue, Chikugunya, and Zika. Although numerous genetic expression studies utilizing quantitative real-time PCR (qPCR) have been conducted with regards to Ae. aegypti, a panel of genes to be used suitably as references for the purpose of expression-level normalization within this epidemiologically important insect is presently lacking. …”
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9220por Beaghton, Andrea, Hammond, Andrew, Nolan, Tony, Crisanti, Andrea, Godfray, H. Charles J., Burt, Austin“…There is a need for new interventions against the ongoing burden of vector-borne diseases such as malaria and dengue. One suggestion has been to develop genes encoding effector molecules that block parasite development within the vector, and then use the nuclease-based homing reaction as a form of gene drive to spread those genes through target populations. …”
Publicado 2017
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