On-target restoration of a split T cell-engaging antibody for precision immunotherapy

The restriction of appropriate tumour-specific antigens is a current limitation for T cell-engaging immunotherapy. Here, the authors have designed a new system constituted by two halve antibodies, which engage T cells once binding to two different antigens, to specifically eliminate double positive...

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Autores principales: Agnes Banaszek, Thomas G. P. Bumm, Boris Nowotny, Maria Geis, Kim Jacob, Matthias Wölfl, Johannes Trebing, Kirstin Kucka, Dina Kouhestani, Tea Gogishvili, Bastian Krenz, Justina Lutz, Leo Rasche, Dirk Hönemann, Hannes Neuweiler, Julia C. Heiby, Ralf C. Bargou, Harald Wajant, Hermann Einsele, Gert Riethmüller, Gernot Stuhler
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/2c0baf0c95d243a58f06fcb336d652c2
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spelling oai:doaj.org-article:2c0baf0c95d243a58f06fcb336d652c22021-12-02T16:57:44ZOn-target restoration of a split T cell-engaging antibody for precision immunotherapy10.1038/s41467-019-13196-02041-1723https://doaj.org/article/2c0baf0c95d243a58f06fcb336d652c22019-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13196-0https://doaj.org/toc/2041-1723The restriction of appropriate tumour-specific antigens is a current limitation for T cell-engaging immunotherapy. Here, the authors have designed a new system constituted by two halve antibodies, which engage T cells once binding to two different antigens, to specifically eliminate double positive cells in preclinical leukemia and breast cancer mouse models.Agnes BanaszekThomas G. P. BummBoris NowotnyMaria GeisKim JacobMatthias WölflJohannes TrebingKirstin KuckaDina KouhestaniTea GogishviliBastian KrenzJustina LutzLeo RascheDirk HönemannHannes NeuweilerJulia C. HeibyRalf C. BargouHarald WajantHermann EinseleGert RiethmüllerGernot StuhlerNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-10 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Agnes Banaszek
Thomas G. P. Bumm
Boris Nowotny
Maria Geis
Kim Jacob
Matthias Wölfl
Johannes Trebing
Kirstin Kucka
Dina Kouhestani
Tea Gogishvili
Bastian Krenz
Justina Lutz
Leo Rasche
Dirk Hönemann
Hannes Neuweiler
Julia C. Heiby
Ralf C. Bargou
Harald Wajant
Hermann Einsele
Gert Riethmüller
Gernot Stuhler
On-target restoration of a split T cell-engaging antibody for precision immunotherapy
description The restriction of appropriate tumour-specific antigens is a current limitation for T cell-engaging immunotherapy. Here, the authors have designed a new system constituted by two halve antibodies, which engage T cells once binding to two different antigens, to specifically eliminate double positive cells in preclinical leukemia and breast cancer mouse models.
format article
author Agnes Banaszek
Thomas G. P. Bumm
Boris Nowotny
Maria Geis
Kim Jacob
Matthias Wölfl
Johannes Trebing
Kirstin Kucka
Dina Kouhestani
Tea Gogishvili
Bastian Krenz
Justina Lutz
Leo Rasche
Dirk Hönemann
Hannes Neuweiler
Julia C. Heiby
Ralf C. Bargou
Harald Wajant
Hermann Einsele
Gert Riethmüller
Gernot Stuhler
author_facet Agnes Banaszek
Thomas G. P. Bumm
Boris Nowotny
Maria Geis
Kim Jacob
Matthias Wölfl
Johannes Trebing
Kirstin Kucka
Dina Kouhestani
Tea Gogishvili
Bastian Krenz
Justina Lutz
Leo Rasche
Dirk Hönemann
Hannes Neuweiler
Julia C. Heiby
Ralf C. Bargou
Harald Wajant
Hermann Einsele
Gert Riethmüller
Gernot Stuhler
author_sort Agnes Banaszek
title On-target restoration of a split T cell-engaging antibody for precision immunotherapy
title_short On-target restoration of a split T cell-engaging antibody for precision immunotherapy
title_full On-target restoration of a split T cell-engaging antibody for precision immunotherapy
title_fullStr On-target restoration of a split T cell-engaging antibody for precision immunotherapy
title_full_unstemmed On-target restoration of a split T cell-engaging antibody for precision immunotherapy
title_sort on-target restoration of a split t cell-engaging antibody for precision immunotherapy
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/2c0baf0c95d243a58f06fcb336d652c2
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