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101por Porter, Ashleigh F, Pettersson, John H -O, Chang, Wei-Shan, Harvey, Erin, Rose, Karrie, Shi, Mang, Eden, John-Sebastian, Buchmann, Jan, Moritz, Craig, Holmes, Edward C“…The Flaviviridae family of positive-sense RNA viruses contains important pathogens of humans and other animals, including Zika virus, dengue virus, and hepatitis C virus. The Flaviviridae are currently divided into four genera—Hepacivirus, Pegivirus, Pestivirus, and Flavivirus—each with a diverse host range. …”
Publicado 2020
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102por Saha, Jayanti, Bhattacharjee, Sukanya, Pal Sarkar, Monalisha, Saha, Barnan Kumar, Basak, Hriday Kumar, Adhikary, Samarpita, Roy, Vivek, Mandal, Parimal, Chatterjee, Abhik, Pal, Ayon“…The main emphasis of this study was to comprehend the codon biology of the SARS-CoV-2 in the backdrop of the other PRVs like Poliovirus, Japanese encephalitis virus, Hepatitis C virus, Norovirus, Rubella virus, Semliki Forest virus, Zika virus, Dengue virus, Human rhinoviruses and the Betacoronaviruses since codon usage pattern along with the nucleotide composition prevalent within the viral genome helps to understand the biology and evolution of viruses. …”
Publicado 2021
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103“…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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104“…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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105por 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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106por Rahman, Md. Atiar, Shorobi, Fauzia Mahanaz, Uddin, Md. Nazim, Saha, Srabonti, Hossain, Md. Amjad“…This research investigated the usefulness of Quercetin against Hepatitis C virus, Dengue type 2 virus, Ebola virus, and Influenza A using computational models. …”
Publicado 2022
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107por Chia, Le Yi, Kumar, Palanirajan Vijayaraj, Maki, Marwan Abdelmahmoud Abdelkarim, Ravichandran, Guna, Thilagar, Sivasudha“…Apart from isolated naturally occurring cyclic peptides, chemically synthesized or modified cyclic peptides with antiviral activities targeting coronavirus, herpes simplex viruses, human immunodeficiency virus, Ebola virus, influenza virus, dengue virus, five main hepatitis viruses, termed as type A, B, C, D and E and chikungunya virus will be reviewed herein. …”
Publicado 2022
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108por Toyoda, Mako, Tan, Toong Seng, Motozono, Chihiro, Barabona, Godfrey, Yonekawa, Akiko, Shimono, Nobuyuki, Minami, Rumi, Nagasaki, Yoji, Miyashita, Yusuke, Oshiumi, Hiroyuki, Nakamura, Kimitoshi, Matsushita, Shuzo, Kuwata, Takeo, Ueno, Takamasa“…A virus plaque reduction neutralization test (PRNT) is a “gold standard” assay for analyzing neutralizing activity for authentic viruses that form plaques, like influenza virus, dengue virus, and SARS-CoV-2. However, this method is labor intensive and is not efficient for performing large-scale neutralization assays on patient specimens. …”
Publicado 2023
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109“…BACKGROUND: Dengue fever is a viral infection transmitted to humans through the bite of a mosquito infected with the dengue virus. Dengue is one of the most common infectious diseases in the world, and its incidence is rapidly increasing. …”
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110“…METHODS: To identify common mechanisms of immune functions disruption during infection by nine different viruses (cytomegalovirus, Ebstein-Barr virus, human T-cell leukemia virus type 1, Hepatitis B and C viruses, human immunodeficiency virus, Dengue virus, SARS-CoV, and SARS-CoV-2), we analyzed the corresponding transcription profiles from peripheral blood mononuclear cells (PBMC) using the originally developed pipeline that include transcriptome data collection, processing, normalization, analysis and search for master regulators of several viral infections. …”
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111por Montoya, Magelda, Gresh, Lionel, Mercado, Juan Carlos, Williams, Katherine L., Vargas, Maria José, Gutierrez, Gamaliel, Kuan, Guillermina, Gordon, Aubree, Balmaseda, Angel, Harris, Eva“…Four dengue virus serotypes (DENV1-4) circulate globally, causing more human illness than any other arthropod-borne virus. Dengue can present as a range of clinical manifestations from undifferentiated fever to Dengue Fever to severe, life-threatening syndromes. …”
Publicado 2013
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112por Giakoumelou, Sevi, Wheelhouse, Nick, Cuschieri, Kate, Entrican, Gary, Howie, Sarah E.M., Horne, Andrew W.“…RESULTS: The association of systemic infections with malaria, brucellosis, cytomegalovirus and human immunodeficiency virus, dengue fever, influenza virus and of vaginal infection with bacterial vaginosis, with increased risk of miscarriage has been demonstrated. …”
Publicado 2016
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113por Shean, Ryan C., Makhsous, Negar, Stoddard, Graham D., Lin, Michelle J., Greninger, Alexander L.“…The pipeline has been validated on human immunodeficiency virus, human parainfluenza virus 1–4, human metapneumovirus, human coronaviruses (229E/OC43/NL63/HKU1/SARS/MERS), human enteroviruses/rhinoviruses, measles virus, mumps virus, Hepatitis A-E Virus, Chikungunya virus, dengue virus, and West Nile virus, as well the human polyomaviruses BK/JC/MCV, human adenoviruses, and human papillomaviruses. …”
Publicado 2019
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114por Tippett Barr, Beth A., Herman-Roloff, Amy, Mburu, Margaret, Murnane, Pamela M., Sang, Norton, Bukusi, Elizabeth, Oele, Elizabeth, Odhiambo, Albert, Lewis-Kulzer, Jayne, Onyango, Clayton O., Hunsperger, Elizabeth, Odhiambo, Francesca, Joseph, Rachel H., Munyua, Peninah, Othieno, Kephas, Mulwa, Edwin, Akelo, Victor, Muok, Erick, Bulterys, Marc, Nzioka, Charles, Cohen, Craig R.“…Infectious comorbidities included HIV, tuberculosis, and malaria, but no current cases of influenza, respiratory syncytial virus, dengue fever, leptospirosis or chikungunya were identified. …”
Publicado 2022
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115“…CONCLUSIONS: Chikungunya virus, dengue virus, malaria, West Nile virus, and Zika virus have been documented in the Gulf Coast of the United States. …”
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116por Zumla, Alimuddin, Dar, Osman, Kock, Richard, Muturi, Matthew, Ntoumi, Francine, Kaleebu, Pontiano, Eusebio, Macete, Mfinanga, Sayoki, Bates, Matthew, Mwaba, Peter, Ansumana, Rashid, Khan, Mishal, Alagaili, Abdulaziz N., Cotten, Matthew, Azhar, Esam I., Maeurer, Markus, Ippolito, Giuseppe, Petersen, Eskild“…Over the past few decades new zoonotic infectious diseases of humans caused by pathogens arising from animal reservoirs have included West Nile virus, Yellow fever virus, Ebola virus, Nipah virus, Lassa Fever virus, Hanta virus, Dengue fever virus, Rift Valley fever virus, Crimean-Congo haemorrhagic fever virus, severe acute respiratory syndrome coronavirus, highly pathogenic avian influenza viruses, Middle East Respiratory Syndrome Coronavirus, and Zika virus. …”
Publicado 2016
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117por Hassert, Mariah, Steffen, Tara L., Scroggins, Stephen, Coleman, Abigail K., Shacham, Enbal, Brien, James D., Pinto, Amelia K.“…In this study, we investigated the impact of prior exposure to Zika virus, dengue virus serotypes 2 or 3, or the vaccine strain of yellow fever on pathogenesis and disease outcomes in a mouse model of Zika virus infection. …”
Publicado 2021
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118por 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, 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 2022
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119por Ayipo, Yusuf Oloruntoyin, Bakare, Ajibola Abdulahi, Badeggi, Umar Muhammad, Jimoh, Akeem Adebayo, Lawal, Amudat, Mordi, Mohd Nizam“…These include influenza, respiratory syncytial, adenovirus, severe acute respiratory syndromes (SARS), rotavirus, norovirus, measles, chikungunya, HIV, herpes simplex virus, dengue, polio, enterovirus and rift valley fever virus. …”
Publicado 2022
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120por Le-Trilling, Vu Thuy Khanh, Wohlgemuth, Kerstin, Rückborn, Meike U., Jagnjic, Andreja, Maaßen, Fabienne, Timmer, Lejla, Katschinski, Benjamin, Trilling, Mirko“…Several viruses evolved antagonists targeting STATs to antagonize IFNs (e.g., cytomegaloviruses, Zika virus, dengue virus, and several paramyxoviruses). We analyzed infections caused by MCMV expressing or lacking the STAT2 antagonist pM27 in STAT2-deficient and control mice to evaluate its importance for the host and the virus in vitro and in vivo. …”
Publicado 2018
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