Type I interferons and MAVS signaling are necessary for tissue resident memory CD8+ T cell responses to RSV infection is a research paper published in PLoS Pathogens (2022). On theSindex it has a DataRank of 0. It has been cited 44 times.
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european respiratory society
Grant: LTRF 201901-00546
wellcome trust
Grant: 109058/Z/15/Z
national heart and lung institute
Grant: PhD Fellowship
Medical Research Council
Grant: G0800311
Regulation of interferon production in the lung during respiratory syncytial virus infection
Medical Research Council
Grant: MR/V000659/1
Lung resident memory CD8+ T cells during viral infections - generation and functionality regulated by localisation and type I IFNs
Rosetrees Trust and Stoneygate Trust
Grant: M370 and M370-F1
cancer research uk
Grant: A27217
Rosetrees
Grant: M370
Rosetrees
Grant: M370-F1
Cancer Research UK
Grant: 27217
Wellcome Trust
Grant: unidentified
unidentified
Wellcome Trust
Grant: 109058
Imperial, Molecular and Cellular Basis of Infection.
UK-Russia Young Medics Association
Wellcome Trust
FWCI
6.02
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 7 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 8 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 7 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 6 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 6 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 4 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 5 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 8 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 5 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 1 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 1 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 2 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 2 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 4 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 3 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge
Additional file 3 of A novel “prime and pull” strategy mediated by the combination of two dendritic cell-targeting designs induced protective lung tissue-resident memory T cells against H1N1 influenza virus challenge