Egyptian Rousette IFN-ω Subtypes Elicit Distinct Antiviral Effects and Transcriptional Responses in Conspecific Cells is a research paper published in Frontiers in Immunology (2020). On theSindex it has a DataRank of 0. It has been cited 25 times.
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NIAID NIH HHS
Grant: R21 AI137793
NIAID NIH HHS
Grant: T32 AI007309
NIAID NIH HHS
Grant: UC7 AI095321
NIAID NIH HHS
Grant: R21 AI126457
National Institutes of Health
Grant: 1R21AI126457-01
Antiviral responses in iPSC-derived human primary cells to Ebola virus infection
National Institutes of Health
Grant: 2T32AI007309-11
RESEARCH TRAINING IN IMMUNOLOGY
National Institutes of Health
Grant: 1R21AI137793-01
Deciphering the pathogenic potential of Lloviu virus, a novel filovirus
National Institutes of Health
Defense Threat Reduction Agency
FWCI
0.36
Citation Percentile
0.7%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 9 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 8 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 4 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 5 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 7 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 6 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 1 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 3 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 2 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 15 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 17 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 16 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 14 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 13 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 11 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 12 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance
Additional file 10 of The extensive transgenerational transcriptomic effects of ocean acidification on the olfactory epithelium of a marine fish are associated with a better viral resistance