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Dengue
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8801por De Burghgraeve, Tine, Kaptein, Suzanne J. F., Ayala-Nunez, Nilda V., Mondotte, Juan A., Pastorino, Boris, Printsevskaya, Svetlana S., de Lamballerie, Xavier, Jacobs, Michael, Preobrazhenskaya, Maria, Gamarnik, Andrea V., Smit, Jolanda M., Neyts, Johan“…There is an urgent need for potent inhibitors of dengue virus (DENV) replication for the treatment and/or prophylaxis of infections with this virus. …”
Publicado 2012
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8802“…Prevalence in humans remained lower than 5% for dengue, leishmaniasis and Japanese encephalitis, but substantially higher for diseases with longer duration of infection; malaria and the American and African trypanosomiasis. …”
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8803por Chen, Mu-Jean, Lin, Chuan-Yao, Wu, Yi-Ting, Wu, Pei-Chih, Lung, Shih-Chun, Su, Huey-Jen“…Yet, for vector-borne diseases, the relative risk of dengue fever and Japanese encephalitis increased with greater precipitation only up to 350 mm. …”
Publicado 2012
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8804por Hall-Mendelin, Sonja, Allcock, Richard, Kresoje, Nina, van den Hurk, Andrew F., Warrilow, David“…To demonstrate proof-of-principle, we analyzed Aedes aegypti or Aedes albopictus experimentally infected with dengue, yellow fever or chikungunya viruses. Random amplification was used to prepare sufficient template for sequencing on the Personal Genome Machine. …”
Publicado 2013
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8805por Lin, Ren-Jye, Chien, Hsu-Ling, Lin, Shyr-Yi, Chang, Bi-Lan, Yu, Han-Pang, Tang, Wei-Chun, Lin, Yi-Ling“…Overexpression of the human MCPIP1, but not MCPIP2, MCPIP3 or MCPIP4, inhibited Japanese encephalitis virus (JEV) and dengue virus (DEN) replication. The functional analysis of MCPIP1 revealed that the activities of RNase, RNA binding and oligomerization, but not deubiqutinase, are required for its antiviral potential. …”
Publicado 2013
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8806por Marinotti, Osvaldo, Jasinskiene, Nijole, Fazekas, Aniko, Scaife, Sarah, Fu, Guoliang, Mattingly, Stefanie T, Chow, Karissa, Brown, David M, Alphey, Luke, James, Anthony A“…BACKGROUND: Transgenic mosquito strains are being developed to contribute to the control of dengue and malaria transmission. One approach uses genetic manipulation to confer conditional, female-specific dominant lethality phenotypes. …”
Publicado 2013
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8807por Chang, Cynthia X. L., Tan, Anthony T., Or, Ming Yan, Toh, Kai Yee, Lim, Pei Yiing, Chia, Adeline S. E., Froesig, Thomas M., Nadua, Karen D., Oh, Hsueh‐Ling J., Leong, Hoe Nam, Hadrup, Sine R., Gehring, Adam J., Tan, Yee‐Joo, Bertoletti, Antonio, Grotenbreg, Gijsbert M.“…HLA tetramers with redirected specificity could detect antigen‐specific CD8(+) T‐cell responses against human cytomegalovirus, hepatitis B (HBV), dengue virus (DENV), and Epstein‐Barr virus (EBV) infections. …”
Publicado 2013
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8808Publicado 2011“…Recent events with the first cases of local transmission of chikungunya and dengue fever virus in southern France by Aedes albopictus, adding to the nuisance and potential vectors that can be encountered when traveling in tropical or sub-tropical countries, has shown the value of a reflection on the Personal protection against vectors (PPAV). …”
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8809“…In this study, we investigated retention and rearrangement of positionally overlapping genes between the mosquitoes Aedes aegypti (dengue virus vector) and Anopheles gambiae (malaria vector). …”
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8810“…We develop a mathematical model to numerically explore release strategies involving an R&R strain of the dengue vector Aedes aegypti. We show that repeated R&R releases may lead to a temporary decrease in mosquito population density and, in the absence of fitness costs associated with the anti-pathogen gene, a long-term decrease in competent vector population density. …”
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8811por Hotez, Peter J.“…Additional information highlights an emerging dengue fever pandemic. New United Nations resolutions on women and the non-communicable diseases (NCDs) have not yet embraced NTDs, which may actually be the most common afflictions of girls and women and represent a stealth cause of NCDs. …”
Publicado 2013
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8812por Paula, Adriano R, Carolino, Aline T, Silva, Carlos P, Pereira, César R, Samuels, Richard I“…BACKGROUND: Entomopathogenic fungi could be useful tools for reducing populations of the dengue mosquito Aedes aegypti. Here the efficiency of fungus (Metarhizium anisopliae) impregnated cloths (with and without imidacloprid [IMI]) was evaluated against adult A. aegypti in simulated human dwellings. …”
Publicado 2013
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8813por Butt, Tariq M., Greenfield, Bethany P. J., Greig, Carolyn, Maffeis, Thierry G. G., Taylor, James W. D., Piasecka, Justyna, Dudley, Ed, Abdulla, Ahmed, Dubovskiy, Ivan M., Garrido-Jurado, Inmaculada, Quesada-Moraga, Enrique, Penny, Mark W., Eastwood, Daniel C.“…Metarhizium anisopliae, a fungal pathogen of terrestrial arthropods, kills the aquatic larvae of Aedes aegypti, the vector of dengue and yellow fever. The fungus kills without adhering to the host cuticle. …”
Publicado 2013
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8814por Bollati, Michela, Alvarez, Karin, Assenberg, René, Baronti, Cécile, Canard, Bruno, Cook, Shelley, Coutard, Bruno, Decroly, Etienne, de Lamballerie, Xavier, Gould, Ernest A., Grard, Gilda, Grimes, Jonathan M., Hilgenfeld, Rolf, Jansson, Anna M., Malet, Hélène, Mancini, Erika J., Mastrangelo, Eloise, Mattevi, Andrea, Milani, Mario, Moureau, Grégory, Neyts, Johan, Owens, Raymond J., Ren, Jingshan, Selisko, Barbara, Speroni, Silvia, Steuber, Holger, Stuart, David I., Unge, Torsten, Bolognesi, Martino“…Besides yellow fever virus, a landmark case in the history of virology, members of the Flavivirus genus, such as West Nile virus and dengue virus, are increasingly gaining attention due to their re-emergence and incidence in different areas of the world. …”
Publicado 2010
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8815por Vega-Cabrera, Adriana, Cancino-Rodezno, Angeles, Porta, Helena, Pardo-Lopez, Liliana“…Bacillus thuringiensis (Bt) Cry toxins are used to control Aedes aegypti, an important vector of dengue fever and yellow fever. Bt Cry toxin forms pores in the gut cells, provoking larvae death by osmotic shock. …”
Publicado 2014
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8816por Boes, Kathryn E., Ribeiro, José M. C., Wong, Alex, Harrington, Laura C., Wolfner, Mariana F., Sirot, Laura K.“…The Asian tiger mosquito (Aedes albopictus) is an important vector for pathogens that affect human health, including the viruses that cause dengue and Chikungunya fevers. It is also one of the world's fastest-spreading invasive species. …”
Publicado 2014
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8817por Poh, Wan-Ting, Xia, Eryu, Chin-inmanu, Kwanrutai, Wong, Lai-Ping, Cheng, Anthony Youzhi, Malasit, Prida, Suriyaphol, Prapat, Teo, Yik-Ying, Ong, Rick Twee-Hee“…Comparisons on simulated and clinical data on dengue virus suggest that the novel approach provides a more accurate inference of the underlying number of variants within the quasispecies, which is vital for clinical efforts in mapping the within-host viral diversity. …”
Publicado 2013
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8818por Rajapakse, Senaka, Rodrigo, Chaturaka, Handunnetti, Shiroma M, Fernando, Sumadhya Deepika“…This is unfortunate, as many other diseases such as dengue, hanta virus, rickettsial infections, and even severe bacterial sepsis, can mimic leptospirosis. …”
Publicado 2015
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8819por Juneja, Punita, Ariani, Cristina V., Ho, Yung Shwen, Akorli, Jewelna, Palmer, William J., Pain, Arnab, Jiggins, Francis M.“…Aedes aegypti, the primary vector of dengue and yellow fever and a laboratory model for studying lymphatic filariasis, is genetically variable for its capacity to harbor the filarial nematode Brugia malayi. …”
Publicado 2015
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8820por Zhang, Dongjing, Zheng, Xiaoying, Xi, Zhiyong, Bourtzis, Kostas, Gilles, Jeremie R. L.“…The mosquito species Aedes albopictus is a major vector of the human diseases dengue and chikungunya. Due to the lack of efficient and sustainable methods to control this mosquito species, there is an increasing interest in developing and applying the sterile insect technique (SIT) and the incompatible insect technique (IIT), separately or in combination, as population suppression approaches. …”
Publicado 2015
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