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High-throughput single-cell sequencing for retroviral reservoir characterization
Lauren E Droske, Stephen D. Shank, View ORCID ProfileMelanie N Cash, Sergei L Kosakovsky Pond, Marco Salemi, Brittany Rife Magalis
doi: https://doi.org/10.1101/2022.05.04.490630
Lauren E Droske
aUniversity of Florida, Department of Pathology, Immunology, and Laboratory Medicine, Gainesville, 32610, USA
bUniversity of Florida, Emerging Pathogens Institute, Gainesville, 32610, USA
Stephen D. Shank
cTemple University, Department of Biology, Philadelphia, 19122, USA
dTemple University, Institute for Genomics and Evolutionary Medicine, Philadelphia, 19122, USA
Melanie N Cash
aUniversity of Florida, Department of Pathology, Immunology, and Laboratory Medicine, Gainesville, 32610, USA
bUniversity of Florida, Emerging Pathogens Institute, Gainesville, 32610, USA
Sergei L Kosakovsky Pond
cTemple University, Department of Biology, Philadelphia, 19122, USA
dTemple University, Institute for Genomics and Evolutionary Medicine, Philadelphia, 19122, USA
Marco Salemi
aUniversity of Florida, Department of Pathology, Immunology, and Laboratory Medicine, Gainesville, 32610, USA
bUniversity of Florida, Emerging Pathogens Institute, Gainesville, 32610, USA
Brittany Rife Magalis
aUniversity of Florida, Department of Pathology, Immunology, and Laboratory Medicine, Gainesville, 32610, USA
bUniversity of Florida, Emerging Pathogens Institute, Gainesville, 32610, USA
Article usage
Posted May 04, 2022.
High-throughput single-cell sequencing for retroviral reservoir characterization
Lauren E Droske, Stephen D. Shank, Melanie N Cash, Sergei L Kosakovsky Pond, Marco Salemi, Brittany Rife Magalis
bioRxiv 2022.05.04.490630; doi: https://doi.org/10.1101/2022.05.04.490630
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