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Immunity|January 12, 2021
Group 1 innate lymphoid-cell-derived interferon-γ maintains anti-viral vigilance in the mucosal epitheliumJohn P Shannon, Sophia M Vrba, Glennys V Reynoso, et al.Nature Immunology|March 20, 2019
Lymph node conduits transport virions for rapid T cell activationGlennys V Reynoso, Andrea S Weisberg, John P Shannon, et al.Journal of Immunology (Baltimore, Md. : 1950)|July 18, 2018
Influenza A Virus Negative Strand RNA Is Translated for CD8<sup>+</sup> T Cell ImmunosurveillanceHeather D Hickman, Jacqueline W Mays, James Gibbs, et al.Nature Communications|May 29, 2021
A sand fly salivary protein acts as a neutrophil chemoattractantAnderson B Guimaraes-Costa, John P Shannon, Ingrid Waclawiak, et al.Nature Medicine|July 18, 2017
SNP-mediated disruption of CTCF binding at the IFITM3 promoter is associated with risk of severe influenza in humansE Kaitlynn Allen, Adrienne G Randolph, Tushar Bhangale, et al.Cell|August 24, 2019
The Bone Marrow Protects and Optimizes Immunological Memory during Dietary RestrictionNicholas Collins, Seong-Ji Han, Michel Enamorado, et al.Frontiers in Immunology|January 31, 2022
Persistent Oxidative Stress and Inflammasome Activation in CD14<sup>high</sup>CD16<sup>-</sup> Monocytes From COVID-19 PatientsSilvia Lucena Lage, Eduardo Pinheiro Amaral, Kerry L Hilligan, et al.Cell Reports|February 16, 2023
Zika virus spreads through infection of lymph node-resident macrophagesGlennys V Reynoso, David N Gordon, Anurag Kalia, et al.Science (New York, N.Y.)|September 16, 2021
Response to Comments on "Aberrant type 1 immunity drives susceptibility to mucosal fungal infections"Timothy J Break, Vasileios Oikonomou, Nicolas Dutzan, et al.Science (New York, N.Y.)|January 15, 2021
Aberrant type 1 immunity drives susceptibility to mucosal fungal infectionsTimothy J Break, Vasileios Oikonomou, Nicolas Dutzan, et al.Pageof 2