An engineered human Fc domain that behaves like a pH-toggle switch for ultra-long circulation persistence

Lee et al. report an engineered IgG1 Fc domain that behaves like an hFcRn binding pH toggle switch. The authors show that this new half-life extension Fc domain confers improved pharmacokinetics in new humanized knock-in mouse strains that recapitulate the key processes for antibody persistence in c...

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Autores principales: Chang-Han Lee, Tae Hyun Kang, Ophélie Godon, Makiko Watanabe, George Delidakis, Caitlin M. Gillis, Delphine Sterlin, David Hardy, Michel Cogné, Lynn E. Macdonald, Andrew J. Murphy, Naxin Tu, Jiwon Lee, Jonathan R. McDaniel, Emily Makowski, Peter M. Tessier, Aaron S. Meyer, Pierre Bruhns, George Georgiou
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Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/84d23b07351d4847b7e49dca2fbb568c
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spelling oai:doaj.org-article:84d23b07351d4847b7e49dca2fbb568c2021-12-02T16:58:19ZAn engineered human Fc domain that behaves like a pH-toggle switch for ultra-long circulation persistence10.1038/s41467-019-13108-22041-1723https://doaj.org/article/84d23b07351d4847b7e49dca2fbb568c2019-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13108-2https://doaj.org/toc/2041-1723Lee et al. report an engineered IgG1 Fc domain that behaves like an hFcRn binding pH toggle switch. The authors show that this new half-life extension Fc domain confers improved pharmacokinetics in new humanized knock-in mouse strains that recapitulate the key processes for antibody persistence in circulation.Chang-Han LeeTae Hyun KangOphélie GodonMakiko WatanabeGeorge DelidakisCaitlin M. GillisDelphine SterlinDavid HardyMichel CognéLynn E. MacdonaldAndrew J. MurphyNaxin TuJiwon LeeJonathan R. McDanielEmily MakowskiPeter M. TessierAaron S. MeyerPierre BruhnsGeorge GeorgiouNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-11 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Chang-Han Lee
Tae Hyun Kang
Ophélie Godon
Makiko Watanabe
George Delidakis
Caitlin M. Gillis
Delphine Sterlin
David Hardy
Michel Cogné
Lynn E. Macdonald
Andrew J. Murphy
Naxin Tu
Jiwon Lee
Jonathan R. McDaniel
Emily Makowski
Peter M. Tessier
Aaron S. Meyer
Pierre Bruhns
George Georgiou
An engineered human Fc domain that behaves like a pH-toggle switch for ultra-long circulation persistence
description Lee et al. report an engineered IgG1 Fc domain that behaves like an hFcRn binding pH toggle switch. The authors show that this new half-life extension Fc domain confers improved pharmacokinetics in new humanized knock-in mouse strains that recapitulate the key processes for antibody persistence in circulation.
format article
author Chang-Han Lee
Tae Hyun Kang
Ophélie Godon
Makiko Watanabe
George Delidakis
Caitlin M. Gillis
Delphine Sterlin
David Hardy
Michel Cogné
Lynn E. Macdonald
Andrew J. Murphy
Naxin Tu
Jiwon Lee
Jonathan R. McDaniel
Emily Makowski
Peter M. Tessier
Aaron S. Meyer
Pierre Bruhns
George Georgiou
author_facet Chang-Han Lee
Tae Hyun Kang
Ophélie Godon
Makiko Watanabe
George Delidakis
Caitlin M. Gillis
Delphine Sterlin
David Hardy
Michel Cogné
Lynn E. Macdonald
Andrew J. Murphy
Naxin Tu
Jiwon Lee
Jonathan R. McDaniel
Emily Makowski
Peter M. Tessier
Aaron S. Meyer
Pierre Bruhns
George Georgiou
author_sort Chang-Han Lee
title An engineered human Fc domain that behaves like a pH-toggle switch for ultra-long circulation persistence
title_short An engineered human Fc domain that behaves like a pH-toggle switch for ultra-long circulation persistence
title_full An engineered human Fc domain that behaves like a pH-toggle switch for ultra-long circulation persistence
title_fullStr An engineered human Fc domain that behaves like a pH-toggle switch for ultra-long circulation persistence
title_full_unstemmed An engineered human Fc domain that behaves like a pH-toggle switch for ultra-long circulation persistence
title_sort engineered human fc domain that behaves like a ph-toggle switch for ultra-long circulation persistence
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/84d23b07351d4847b7e49dca2fbb568c
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