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Dengue
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Aedes aegypti
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9921“…Evidence shows that there is an overlap in transitional health states, due to the persistence of infectious diseases (e.g., dengue, cholera, malaria, etc.,) in parallel with the increase in chronic degenerative diseases. …”
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9922“…The review summarizes the state of the art of the AVPs tested in zoonotic (coronaviruses, Rift Valley fever viruses, Eastern Equine Encephalitis Virus, Dengue and Junín virus) and also non-zoonotic farm animal viruses (avian and cattle viruses). …”
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9923“…We conducted systematic benchmarking of five traditional machine learning (ElasticNet, K-nearest neighbors, support vector machine, Random Forest and AdaBoost) and three deep learning models (convolutional neural network (CNN), Residual Net and graph neural network) using three independent prior validated immunogenic peptide collections (dengue virus, cancer neoantigen and SARS-CoV-2). We chose the CNN as the best prediction model, based on its adaptivity for small and large datasets and performance relative to existing methods. …”
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9924por Sullivan, Con, Soos, Brandy-Lee, Millard, Paul J., Kim, Carol H., King, Benjamin L.“…In addition to studying several fish viruses, zebrafish infection models have been developed for several human viruses, including influenza A, noroviruses, chikungunya, Zika, dengue, herpes simplex virus type 1, Sindbis, and hepatitis C virus. …”
Publicado 2021
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9925por Chonephetsarath, Somsanith, Raksakoon, Chadchalerm, Sumruayphol, Suchada, Dujardin, Jean-Pierre, Potiwat, Rutcharin“…SIMPLE SUMMARY: Mosquitoes of the genus Aedes include important vectors of human disease viruses, including dengue, chikungunya and Zika. Surveillance programs used to detect and control these pests need accurate, fast and low-cost techniques to track the primary target and monitor possible re-infestations. …”
Publicado 2021
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9926por Lima, Yuri, Pinheiro, Wallace, Barbosa, Carlos Eduardo, Magalhães, Matheus, Chaves, Miriam, de Souza, Jano Moreira, Rodrigues, Sérgio, Xexéo, Geraldo“…BACKGROUND: Aedes aegypti is a vector for the transmission of diseases such as dengue fever, chikungunya, Zika fever, and yellow fever. …”
Publicado 2021
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9927por Jacques, Iracema J. A. A., Katz, Leila, Sena, Marília A., Guimarães, Ana B. G., Silva, Yasmim L., Albuquerque, Gabriela D. M., Pereira, Raisa O., de Albuquerque, Camila A. M. C., Silva, Maria Almerice L., Oliveira, Paula A. S., Albuquerque, Maria de Fátima P. M., Cordeiro, Marli T., Marques, Ernesto T. A., França, Rafael F. O., Martelli, Celina M. T., Castanha, Priscila M. S., Braga, Cynthia“…We conducted a prospective study to track active or recent Zika (ZIKV), dengue (DENV), or chikungunya (CHIKV) virus infection among hospitalized pregnant women (PW) with obstetric complications in a hospital at the epicenter of Zika outbreak and ZIKV-related microcephaly in Brazil. …”
Publicado 2021
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9928“…The binding epitopes of mAbs A1, B1, C1, and 9E-1 are located at E(238-257), E(410-431), E(258-277), and E(340-356), respectively. mAb 9E-1 performs 1.4- to 47-fold strong affinity to ZIKV E protein compared to another three mAbs. mAbs A1, C1, and 9E-1 do not have cross-reactivity against the recombinant E proteins of dengue virus serotypes 2, 3, and 4. Although these four mAbs do not have ZIKV neutralizing activity, mAbs B1 and 9E-1 have been developed as the lateral flow immunochromatographic assay for specific detection of ZIKV E protein and virions. …”
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9929“…Three coronaviruses (SARS-CoV, MERS-CoV, and SARS-CoV-2), three influenza viruses (2009H1N1, H5N1 and H7N9), Ebola virus, human immunodeficiency virus, dengue virus, Zika virus, West Nile virus, hepatitis B virus, hepatitis C virus, and enterovirus 71 were included in this analysis. …”
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9930por Boillat-Blanco, N., Mbarack, Z., Samaka, J., Mlaganile, T., Kazimoto, T., Mamin, A., Genton, B., Kaiser, L., D'Acremont, V.“…We identified 643 diagnoses: 264 (41%) acute respiratory infections (36 (5.6%) pneumonia, 39 (6.1%) tuberculosis), 71 (11%) infections with another focus (31 (4.8%) gastrointestinal, 26 (4.0%) urogenital, 8 (1.2%) central nervous system) and 252 (39%) infections without focus (134 (21%) dengue, 30 (4.7%) malaria, 28 (4.4%) typhoid). Of the 519 individuals, 318 (61%), 179 (34%), 30 (6%) and 15 (3%), respectively, had a viral, bacterial, parasitic and fungal acute infection. …”
Publicado 2021
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9931por Wang, Xiaoming, Zhou, Guofa, Zhong, Daibin, Li, Yiji, Octaviani, Stacia, Shin, Andrew T., Morgan, Timothy, Nguyen, Kiet, Bastear, Jessica, Doyle, Melissa, Cummings, Robert F., Yan, Guiyun“…Knowledge of whether USDS habitats are suitable for newly introduced dengue vectors Aedes aegypti and Ae. albopictus will help guide surveillance and control efforts. …”
Publicado 2021
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9932por Saavedra-Rodriguez, Karla, Campbell, Corey L., Lozano, Saul, Penilla-Navarro, Patricia, Lopez-Solis, Alma, Solis-Santoyo, Francisco, Rodriguez, Americo D., Perera, Rushika, Black IV, William C.“…Pyrethroids are one of the few classes of insecticides available to control Aedes aegypti, the major vector of dengue, chikungunya, and Zika viruses. Unfortunately, evolving mechanisms of pyrethroid resistance in mosquito populations threaten our ability to control disease outbreaks. …”
Publicado 2021
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9933“…Recent studies have shown that MCs are involved in pathogenic responses to several viruses including herpes simplex viruses, dengue virus, vaccinia virus and influenza virus. …”
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9934por Winter, Nikhella, Stewart, Akilah T. M., Igiede, Jessica, Wiltshire, Rachel M., Hapairai, Limb K., James, Lester D., Mohammed, Azad, Severson, David W., Duman-Scheel, Molly“…Dengue, Zika, chikungunya and yellow fever viruses continue to be a major public health burden. …”
Publicado 2021
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9935por Itokawa, Kentaro, Furutani, Shogo, Takaoka, Aki, Maekawa, Yoshihide, Sawabe, Kyoko, Komagata, Osamu, Tomita, Takashi, de Lima Filho, José Luiz, Alves, Luiz Carlos, Kasai, Shinji“…BACKGROUND: Aedes aegypti is a remarkably effective mosquito vector of epidemiologically important arboviral diseases including dengue fever, yellow fever and Zika. The present spread of resistance against pyrethroids, the primary insecticides used for mosquito control, in global populations of this species is of great concern. …”
Publicado 2021
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9936por Vicenti, Ilaria, Martina, Maria Grazia, Boccuto, Adele, De Angelis, Marta, Giavarini, Giorgia, Dragoni, Filippo, Marchi, Serena, Trombetta, Claudia Maria, Crespan, Emmanuele, Maga, Giovanni, Eydoux, Cecilia, Decroly, Etienne, Montomoli, Emanuele, Nencioni, Lucia, Zazzi, Maurizio, Radi, Marco“…Among the synthesized compounds, 6i showed low micromolar potency against Dengue, Zika, West Nile and Influenza A viruses (IC(50) = 0.5–5.3 μM) with high selectivity index. …”
Publicado 2021
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9937por Ávila-López, Mariana B., García-Maldonado, José Q., Estrada-Medina, Héctor, Hernández-Mena, David I., Cerqueda-García, Daniel, Vidal-Martínez, Víctor M.“…BACKGROUND: Biological control using entomopathogenic nematodes (EPN) has demonstrated good potential to contribute to the integral control of mosquito larvae, which as adults are vectors of diseases such as Dengue fever, Zika and Chikungunya. However, until now there are no records of the presence of EPN or their killing capacity in Yucatán state, southern México. …”
Publicado 2021
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9938por Karlebach, Guy, Aronow, Bruce, Baylin, Stephen B., Butler, Daniel, Foox, Jonathan, Levy, Shawn, Meydan, Cem, Mozsary, Christopher, Saravia-Butler, Amanda M, Taylor, Deanne M, Wurtele, Eve, Mason, Christopher E, Beheshti, Afshin, Robinson, Peter N“…Here, we investigate 17 published experimental and clinical datasets related to SARS-CoV-2 infection as well as datasets from the betacoronaviruses SARS-CoV and MERS as well as Streptococcus pneumonia, HCV, Zika virus, Dengue virus, influenza H3N2, and RSV. We show that genes showing differential alternative splicing in SARS-CoV-2 have a similar functional profile to those of SARS-CoV and MERS and affect a diverse set of genes and biological functions, including many closely related to virus biology. …”
Publicado 2021
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9939“…The sterile insect technique (SIT) has been developed as a component of area-wide integrated pest management approaches to control the populations of Aedes albopictus, a mosquito vector capable of transmission of dengue, Zika and chikungunya viruses. One of the key factors for the success of SIT is the requirement of high biological quality sterile males, which upon their release would be able to compete with wild males for matings with wild females in the field. …”
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9940por Cavazzoni, Cecilia B., Bozza, Vicente B.T., Lucas, Tostes C.V., Conde, Luciana, Maia, Bruno, Mesin, Luka, Schiepers, Ariën, Ersching, Jonatan, Neris, Romulo L.S., Conde, Jonas N., Coelho, Diego R., Lima, Tulio M., Alvim, Renata G.F., Castilho, Leda R., de Paula Neto, Heitor A., Mohana-Borges, Ronaldo, Assunção-Miranda, Iranaia, Nobrega, Alberto, Victora, Gabriel D., Vale, Andre M.“…Besides antigen-specific responses to viral antigens, humoral immune response in virus infection can generate polyreactive and autoreactive antibodies. Dengue and Zika virus infections have been linked to antibody-mediated autoimmune disorders, including Guillain-Barré syndrome. …”
Publicado 2021
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