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Coronaviruses: an overview of their replication and pathogenesis AR Fehr, S Perlman Coronaviruses: methods and protocols, 1-23, 2015 | 5302 | 2015 |
Pathogenic human coronavirus infections: causes and consequences of cytokine storm and immunopathology R Channappanavar, S Perlman Seminars in immunopathology 39, 529-539, 2017 | 3144 | 2017 |
Virus taxonomy: ninth report of the International Committee on Taxonomy of Viruses AMQ King, E Lefkowitz, MJ Adams, EB Carstens Elsevier, 2011 | 3026 | 2011 |
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Coronaviruses post-SARS: update on replication and pathogenesis S Perlman, J Netland Nature reviews microbiology 7 (6), 439-450, 2009 | 2329 | 2009 |
Dysregulated type I interferon and inflammatory monocyte-macrophage responses cause lethal pneumonia in SARS-CoV-infected mice R Channappanavar, AR Fehr, R Vijay, M Mack, J Zhao, DK Meyerholz, ... Cell host & microbe 19 (2), 181-193, 2016 | 1703 | 2016 |
Commentary: Middle east respiratory syndrome coronavirus (mers-cov): announcement of the coronavirus study group RJ De Groot, SC Baker, RS Baric, CS Brown, C Drosten, L Enjuanes, ... Journal of virology 87 (14), 7790-7792, 2013 | 1692 | 2013 |
Severe acute respiratory syndrome coronavirus infection causes neuronal death in the absence of encephalitis in mice transgenic for human ACE2 J Netland, DK Meyerholz, S Moore, M Cassell, S Perlman Journal of virology 82 (15), 7264-7275, 2008 | 1608 | 2008 |
Another decade, another coronavirus S Perlman New England Journal of Medicine 382 (8), 760-762, 2020 | 1571 | 2020 |
Middle East respiratory syndrome A Zumla, DS Hui, S Perlman The Lancet 386 (9997), 995-1007, 2015 | 1526 | 2015 |
ACE2 receptor expression and severe acute respiratory syndrome coronavirus infection depend on differentiation of human airway epithelia HP Jia, DC Look, L Shi, M Hickey, L Pewe, J Netland, M Farzan, ... Journal of virology 79 (23), 14614-14621, 2005 | 1189 | 2005 |
Lethal Infection of K18-hACE2 Mice Infected with Severe Acute Respiratory Syndrome Coronavirus PB McCray Jr, L Pewe, C Wohlford-Lenane, M Hickey, L Manzel, L Shi, ... Journal of virology 81 (2), 813-821, 2007 | 1161 | 2007 |
Sex-based differences in susceptibility to severe acute respiratory syndrome coronavirus infection R Channappanavar, C Fett, M Mack, PP Ten Eyck, DK Meyerholz, ... The Journal of Immunology 198 (10), 4046-4053, 2017 | 1059 | 2017 |
Anti–spike IgG causes severe acute lung injury by skewing macrophage responses during acute SARS-CoV infection L Liu, Q Wei, Q Lin, J Fang, H Wang, H Kwok, H Tang, K Nishiura, J Peng, ... JCI insight 4 (4), e123158, 2019 | 987 | 2019 |
Animal models for COVID-19 C Muñoz-Fontela, WE Dowling, SGP Funnell, PS Gsell, AX Riveros-Balta, ... Nature 586 (7830), 509-515, 2020 | 881 | 2020 |
A transmembrane serine protease is linked to the severe acute respiratory syndrome coronavirus receptor and activates virus entry A Shulla, T Heald-Sargent, G Subramanya, J Zhao, S Perlman, ... Journal of virology 85 (2), 873-882, 2011 | 814 | 2011 |
IFN-I response timing relative to virus replication determines MERS coronavirus infection outcomes R Channappanavar, AR Fehr, J Zheng, C Wohlford-Lenane, ... The Journal of clinical investigation 129 (9), 3625-3639, 2019 | 660 | 2019 |
Immunopathogenesis of coronavirus infections: implications for SARS AA Dandekar, S Perlman Nature reviews immunology 5 (12), 917-927, 2005 | 650 | 2005 |
β-Coronaviruses use lysosomes for egress instead of the biosynthetic secretory pathway S Ghosh, TA Dellibovi-Ragheb, A Kerviel, E Pak, Q Qiu, M Fisher, ... Cell 183 (6), 1520-1535. e14, 2020 | 625 | 2020 |