Discovery of Influenza A Virus Sequence Pairs and Their Combinations for Simultaneous Heterosubtypic Targeting that Hedge against Antiviral Resistance
10.1371/journal.pcbi.1004663
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sg-nus-scholar.10635-1619252024-04-03T10:36:43Z Discovery of Influenza A Virus Sequence Pairs and Their Combinations for Simultaneous Heterosubtypic Targeting that Hedge against Antiviral Resistance Wee K.B. Lee R.T.C. Lin J. Pramono Z.A.D. Maurer-Stroh S. BIOLOGICAL SCIENCES antivirus agent antivirus agent antiviral resistance Article chicken controlled study cross reaction gene expression gene mutation human Influenza A virus Influenza B virus Monte Carlo method nonhuman pig RNA binding RNA sequence sequence alignment thermostability virus cell interaction virus titration animal antiviral resistance biology computer simulation conserved sequence drug effects gene expression profiling genetics host pathogen interaction influenza Influenza A virus nucleotide sequence orthomyxovirus infection virology Animals Antiviral Agents Base Sequence Chickens Computational Biology Computer Simulation Conserved Sequence Drug Resistance, Viral Gene Expression Profiling Host-Pathogen Interactions Humans Influenza A virus Influenza, Human Orthomyxoviridae Infections Swine 10.1371/journal.pcbi.1004663 PLoS Computational Biology 12 1 e1004663 2019-11-08T08:45:45Z 2019-11-08T08:45:45Z 2016 Article Wee K.B., Lee R.T.C., Lin J., Pramono Z.A.D., Maurer-Stroh S. (2016). Discovery of Influenza A Virus Sequence Pairs and Their Combinations for Simultaneous Heterosubtypic Targeting that Hedge against Antiviral Resistance. PLoS Computational Biology 12 (1) : e1004663. ScholarBank@NUS Repository. https://doi.org/10.1371/journal.pcbi.1004663 1553734X https://scholarbank.nus.edu.sg/handle/10635/161925 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Unpaywall 20191101 |
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antivirus agent antivirus agent antiviral resistance Article chicken controlled study cross reaction gene expression gene mutation human Influenza A virus Influenza B virus Monte Carlo method nonhuman pig RNA binding RNA sequence sequence alignment thermostability virus cell interaction virus titration animal antiviral resistance biology computer simulation conserved sequence drug effects gene expression profiling genetics host pathogen interaction influenza Influenza A virus nucleotide sequence orthomyxovirus infection virology Animals Antiviral Agents Base Sequence Chickens Computational Biology Computer Simulation Conserved Sequence Drug Resistance, Viral Gene Expression Profiling Host-Pathogen Interactions Humans Influenza A virus Influenza, Human Orthomyxoviridae Infections Swine |
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antivirus agent antivirus agent antiviral resistance Article chicken controlled study cross reaction gene expression gene mutation human Influenza A virus Influenza B virus Monte Carlo method nonhuman pig RNA binding RNA sequence sequence alignment thermostability virus cell interaction virus titration animal antiviral resistance biology computer simulation conserved sequence drug effects gene expression profiling genetics host pathogen interaction influenza Influenza A virus nucleotide sequence orthomyxovirus infection virology Animals Antiviral Agents Base Sequence Chickens Computational Biology Computer Simulation Conserved Sequence Drug Resistance, Viral Gene Expression Profiling Host-Pathogen Interactions Humans Influenza A virus Influenza, Human Orthomyxoviridae Infections Swine Wee K.B. Lee R.T.C. Lin J. Pramono Z.A.D. Maurer-Stroh S. Discovery of Influenza A Virus Sequence Pairs and Their Combinations for Simultaneous Heterosubtypic Targeting that Hedge against Antiviral Resistance |
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10.1371/journal.pcbi.1004663 |
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BIOLOGICAL SCIENCES |
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BIOLOGICAL SCIENCES Wee K.B. Lee R.T.C. Lin J. Pramono Z.A.D. Maurer-Stroh S. |
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Article |
author |
Wee K.B. Lee R.T.C. Lin J. Pramono Z.A.D. Maurer-Stroh S. |
author_sort |
Wee K.B. |
title |
Discovery of Influenza A Virus Sequence Pairs and Their Combinations for Simultaneous Heterosubtypic Targeting that Hedge against Antiviral Resistance |
title_short |
Discovery of Influenza A Virus Sequence Pairs and Their Combinations for Simultaneous Heterosubtypic Targeting that Hedge against Antiviral Resistance |
title_full |
Discovery of Influenza A Virus Sequence Pairs and Their Combinations for Simultaneous Heterosubtypic Targeting that Hedge against Antiviral Resistance |
title_fullStr |
Discovery of Influenza A Virus Sequence Pairs and Their Combinations for Simultaneous Heterosubtypic Targeting that Hedge against Antiviral Resistance |
title_full_unstemmed |
Discovery of Influenza A Virus Sequence Pairs and Their Combinations for Simultaneous Heterosubtypic Targeting that Hedge against Antiviral Resistance |
title_sort |
discovery of influenza a virus sequence pairs and their combinations for simultaneous heterosubtypic targeting that hedge against antiviral resistance |
publishDate |
2019 |
url |
https://scholarbank.nus.edu.sg/handle/10635/161925 |
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1795374122256039936 |