Unlocking de novo antibody design with generative artificial intelligence
Shanehsazzadeh, Amir, Mcpartlon, Matt, Kasun, George, Steiger, Andrea K, Sutton, John M, Yassine, Edriss, Mccloskey, Cailen, Robel Haile, Shuai, Richard, Alverio, Julian, Rakocevic, Goran, Levine, Simon, Cejovic, Jovan, Gutierrez, Jahir M, Morehead, Alex, Dubrovskyi, Oleksii, Chung, Chelsea, Luton, Breanna K, Diaz, Nicolas, Kohnert, Christa, Consbruck, Rebecca, Carter, Hayley, Lacombe, Chase, Bist, Itti, Vilaychack, Phetsamay, Anderson, Zahra, Lichen Xiu, Bringas, Paul, Alarcon, Kimberly, Knight, Bailey, Macey Radach, Bateman, Katherine, Kopec-Belliveau, Gaelin, Chapman, Dalton, Bennett, Joshua, Ventura, Abigail B, Canales, Gustavo M, Gowda, Muttappa, Jackson, Kerianne A, Caguiat, Rodante, Brown, Amber, Douglas Ganini Da Silva, Guo, Zheyuan, Abdulhaqq, Shaheed, Klug, Lillian R, Gander, Miles, Yapici, Engin, Meier, Joshua, Bachas, Sharrol
Published in bioRxiv (07.01.2024)
Published in bioRxiv (07.01.2024)
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In vitro validated antibody design against multiple therapeutic antigens using generative inverse folding
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Published in bioRxiv (09.12.2023)
Published in bioRxiv (09.12.2023)
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