Integrated human-virus metabolic stoichiometric modelling predicts host-based antiviral targets against Chikungunya, Dengue and Zika viruses

scholarly article by Sean Aller et al published 12 September 2018 in Journal of the Royal Society Interface

Integrated human-virus metabolic stoichiometric modelling predicts host-based antiviral targets against Chikungunya, Dengue and Zika viruses is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1098/RSIF.2018.0125
P932PMC publication ID6170780
P698PubMed publication ID30209043

P50authorOrkun S SoyerQ56207718
P2093author name stringAndrew Scott
Mitali Sarkar-Tyson
Sean Aller
P2860cites workZika Virus Associated with MicrocephalyQ22683189
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Optimal flux spaces of genome-scale stoichiometric models are determined by a few subnetworksQ42101147
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Serum Metabolic Alterations upon Zika InfectionQ42700475
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P433issue146
P407language of work or nameEnglishQ1860
P921main subjectbiophysicsQ7100
Zika virusQ202864
biotechnologyQ7108
chikungunyaQ243257
biomedical engineeringQ327092
bioengineeringQ580689
Chikungunya virusQ15794049
P5008on focus list of Wikimedia projectWikiProject Zika CorpusQ54439832
P304page(s)20180125
P577publication date2018-09-12
P1433published inJournal of the Royal Society InterfaceQ2492390
P1476titleIntegrated human-virus metabolic stoichiometric modelling predicts host-based antiviral targets against Chikungunya, Dengue and Zika viruses
P478volume15

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cites work (P2860)
Q66679640Current status and applications of genome-scale metabolic models
Q91753420Metabolic Model of the Phytophthora infestans-Tomato Interaction Reveals Metabolic Switches during Host Colonization
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