Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Linda van Oosten"'
Autor:
Cyrielle Fougeroux, Louise Goksøyr, Manja Idorn, Vladislav Soroka, Sebenzile K. Myeni, Robert Dagil, Christoph M. Janitzek, Max Søgaard, Kara-Lee Aves, Emma W. Horsted, Sayit Mahmut Erdoğan, Tobias Gustavsson, Jerzy Dorosz, Stine Clemmensen, Laurits Fredsgaard, Susan Thrane, Elena E. Vidal-Calvo, Paul Khalifé, Thomas M. Hulen, Swati Choudhary, Michael Theisen, Susheel K. Singh, Asier Garcia-Senosiain, Linda Van Oosten, Gorben Pijlman, Bettina Hierzberger, Tanja Domeyer, Blanka W. Nalewajek, Anette Strøbæk, Magdalena Skrzypczak, Laura F. Andersson, Søren Buus, Anette Stryhn Buus, Jan Pravsgaard Christensen, Tim J. Dalebout, Kasper Iversen, Lene H. Harritshøj, Benjamin Mordmüller, Henrik Ullum, Line S. Reinert, Willem Adriaan de Jongh, Marjolein Kikkert, Søren R. Paludan, Thor G. Theander, Morten A. Nielsen, Ali Salanti, Adam F. Sander
Publikováno v:
Nature Communications, Vol 12, Iss 1, Pp 1-11 (2021)
Here the authors generate a capsid-like particle based vaccine candidate displaying the receptor-binding domain of the SARS-CoV-2 spike protein and show induction of neutralizing antibodies after intramuscular prime-boost immunization in mice.
Externí odkaz:
https://doaj.org/article/c047e4469bfc4df49317bf7ddb5a7a95
Autor:
Linda van Oosten, Jort J. Altenburg, Cyrielle Fougeroux, Corinne Geertsema, Fred van den End, Wendy A. C. Evers, Adrie H. Westphal, Simon Lindhoud, Willy van den Berg, Daan C. Swarts, Laurens Deurhof, Andreas Suhrbier, Thuy T. Le, Shessy Torres Morales, Sebenzile K. Myeni, Marjolein Kikkert, Adam F. Sander, Willem Adriaan de Jongh, Robert Dagil, Morten A. Nielsen, Ali Salanti, Max Søgaard, Timo M. P. Keijzer, Dolf Weijers, Michel H. M. Eppink, René H. Wijffels, Monique M. van Oers, Dirk E. Martens, Gorben P. Pijlman
Publikováno v:
mBio, Vol 12, Iss 5 (2021)
Vaccines pave the way out of the SARS-CoV-2 pandemic. We have developed a virus-like particle (VLP)-based vaccine using the baculovirus-insect cell expression system, a robust production platform known for its scalability, low cost, and safety. Bacul
Externí odkaz:
https://doaj.org/article/9d799f0e15554e7aafc11f877069c7c0
Autor:
Jort J. Altenburg, Maarten Klaverdijk, Damien Cabosart, Laurent Desmecht, Sonja S. Brunekreeft‐Terlouw, Joshua Both, Vivian I. P. Tegelbeckers, Marieke L. P. M. Willekens, Linda van Oosten, Tessy A. H. Hick, Tom M. H. van der Aalst, Gorben P. Pijlman, Monique M. van Oers, René H. Wijffels, Dirk E. Martens
Publikováno v:
Biotechnology Progress 39 (2023) 2
Biotechnology Progress, 39(2)
Biotechnology Progress, 39(2)
Real-time, detailed online information on cell cultures is essential for understanding modern biopharmaceutical production processes. The determination of key parameters, such as cell density and viability, is usually based on the offline sampling of
Autor:
null Jort J. Altenburg, null Maarten Klaverdijk, null Damien Cabosart, null Laurent Desmecht, null Sonja S. Brunekreeft‐Terlouw, null Joshua Both, null Vivian I. P. Tegelbeckers, null Marieke L. P. M. Willekens, null Linda van Oosten, null Tessy A. H. Hick, null Tom M. H. van der Aalst, null Gorben P. Pijlman, null Monique M. van Oers, null René H. Wijffels, null Dirk E. Martens
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::97a8b22c100f47103a9c0bf413634da9
https://doi.org/10.1002/btpr.3318/v2/response1
https://doi.org/10.1002/btpr.3318/v2/response1
Autor:
Linda van Oosten, Kexin Yan, Daniel J. Rawle, Thuy T. Le, Jort J. Altenburg, Cyrielle Fougeroux, Louise Goksøyr, Willem Adriaan de Jongh, Morten A. Nielsen, Adam F. Sander, Gorben P. Pijlman, Andreas Suhrbier
Publikováno v:
van Oosten, L, Yan, K, Rawle, D J, Le, T T, Altenburg, J J, Fougeroux, C, Goksøyr, L, de Jongh, W A, Nielsen, M A, Sander, A F, Pijlman, G P & Suhrbier, A 2022, ' An S1-Nanoparticle Vaccine Protects against SARS-CoV-2 Challenge in K18-hACE2 Mice ', Journal of Virology, vol. 96, no. 14, 00844-22 . https://doi.org/10.1128/jvi.00844-22
Journal of Virology 96 (2022) 14
Journal of Virology
Journal of Virology, 96(14)
Journal of Virology 96 (2022) 14
Journal of Virology
Journal of Virology, 96(14)
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::e75d317a5ed3d6eb2fa9bf46ccced70e
https://curis.ku.dk/ws/files/317092972/jvi.00844_22.pdf
https://curis.ku.dk/ws/files/317092972/jvi.00844_22.pdf
Autor:
Monique M. van Oers, Thuy T. Le, Robert Dagil, Cyrielle Fougeroux, Willy A. M. van den Berg, Marjolein Kikkert, Adam F. Sander, Adrie H. Westphal, Simon Lindhoud, Andreas Suhrbier, Ali Salanti, Willem A. de Jongh, M.H.M. Eppink, Jort J Altenburg, Dolf Weijers, René H. Wijffels, Dirk E. Martens, Corinne Geertsema, Fred van den End, Gorben P. Pijlman, Timo M P Keijzer, Linda van Oosten, Sebenzile K. Myeni, Wendy A. C. Evers, Max Søgaard, Daan C. Swarts, Morten Nielsen, Laurens Deurhof, Shessy Torres Morales
Publikováno v:
mBio
mBio, 12(5)
mBio, Vol 12, Iss 5 (2021)
van Oosten, L, Altenburg, J J, Fougeroux, C, Geertsema, C, van den End, F, Evers, W A C, Westphal, A H, Lindhoud, S, van den Berg, W, Swarts, D C, Deurhof, L, Suhrbier, A, Le, T T, Torres Morales, S, Myeni, S K, Kikkert, M, Sander, A F, de Jongh, W A, Dagil, R, Nielsen, M A, Salanti, A, Søgaard, M, Keijzer, T M P, Weijers, D, Eppink, M H M, Wijffels, R H, van Oers, M M, Martens, D E & Pijlman, G P 2021, ' Two-component nanoparticle vaccine displaying glycosylated spike S1 domain induces neutralizing antibody response against SARS-CoV-2 variants ', mBio, vol. 12, no. 5, e0181321 . https://doi.org/10.1128/mBio.01813-21
mBio, 12(5). AMER SOC MICROBIOLOGY
mBio 12 (2021) 5
mBio, 12(5)
mBio, Vol 12, Iss 5 (2021)
van Oosten, L, Altenburg, J J, Fougeroux, C, Geertsema, C, van den End, F, Evers, W A C, Westphal, A H, Lindhoud, S, van den Berg, W, Swarts, D C, Deurhof, L, Suhrbier, A, Le, T T, Torres Morales, S, Myeni, S K, Kikkert, M, Sander, A F, de Jongh, W A, Dagil, R, Nielsen, M A, Salanti, A, Søgaard, M, Keijzer, T M P, Weijers, D, Eppink, M H M, Wijffels, R H, van Oers, M M, Martens, D E & Pijlman, G P 2021, ' Two-component nanoparticle vaccine displaying glycosylated spike S1 domain induces neutralizing antibody response against SARS-CoV-2 variants ', mBio, vol. 12, no. 5, e0181321 . https://doi.org/10.1128/mBio.01813-21
mBio, 12(5). AMER SOC MICROBIOLOGY
mBio 12 (2021) 5
Vaccines pave the way out of the SARS-CoV-2 pandemic. Besides mRNA and adenoviral vector vaccines, effective protein-based vaccines are needed for immunization against current and emerging variants. We have developed a virus-like particle (VLP)-based
Autor:
Cyrielle Fougeoux, Louise Goksøyr, Manja Idorn, Vladislav Soroka, Sebenzile K. Myeni, Robert Dagil, Christoph M. Janitzek, Teit Søgaard, Kara-Lee Aves, Emma W. Horsted, Sayit Mahmut Erdoğan, Tobias Gustavsson, Jerzy Dorosz, Stine Clemmensen, Laurits Larsen, Susan Thrane, Elena E. Vidal-Calvo, Paul Khalifé, Thomas M. Hulen, Swati Choudhary, Michael Theisen, Susheel Singh, Asier Garcia-Senosiain, Linda Van Oosten, Gorben Pijlman, Bettina Hierzberger, Tanja Domeyer, Blanka W. Nalewajek, Anette Strøbæk, Magdalena Skrzypczak, Laura F. Andersson, Tim Dalebout, Kasper Iversen, Lene H. Harritshøj, Benjamin Mordmüller, Henrik Ullum, Line Reinert, Willem Adriaan de Jongh, Marjolein Kikkert, Soren Paludan, Thor Theander, Morten Nielsen, Ali Salanti, Adam Sander
The rapid development of a SARS-CoV-2 vaccine is a global priority. Here, we developed two capsid-like particle (CLP)-based vaccines displaying the receptor-binding domain (RBD) of the SARS-CoV-2 spike protein. RBD antigens were displayed on AP205 CL
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::9fa692aa0e0459551e3a1c2cc1dc4e00
https://doi.org/10.21203/rs.3.rs-45062/v1
https://doi.org/10.21203/rs.3.rs-45062/v1
Autor:
Robert Dagil, Gorben P. Pijlman, Søren R. Paludan, Susan Thrane, Anette Strøbæk, Tim J. Dalebout, Blanka W. Nalewajek, Tanja Domeyer, Laura F. Andersson, Sebenzile K. Myeni, Susheel K. Singh, Anette Stryhn Buus, Michael Theisen, Vladislav Soroka, Thomas M. Hulen, Søren Buus, Emma W. Horsted, Stine B. Clemmensen, Thor G. Theander, Laurits Fredsgaard, Cyrielle Fougeroux, Magdalena Skrzypczak, Ali Salanti, Benjamin Mordmüller, Manja Idorn, Louise Goksøyr, Kasper Iversen, Max Søgaard, Jerzy Dorosz, Asier Garcia-Senosiain, Sayit Mahmut Erdoğan, Line S. Reinert, Tobias Gustavsson, Morten Nielsen, Lene Holm Harritshøj, Bettina Hierzberger, Marjolein Kikkert, Henrik Ullum, Paul Khalifé, Swati Choudhary, Adam F. Sander, Kara Lee Aves, Christoph M. Janitzek, Willem A. de Jongh, Elena Ethel Vidal-Calvo, Jan Pravsgaard Christensen, Linda van Oosten
Publikováno v:
Nature Communications 12 (2021) 1
Nature Communications
Nature Communications, 12(1)
Nature Communications, 12(1). NATURE RESEARCH
Fougeroux, C, Goksøyr, L, Idorn, M, Soroka, V, Myeni, S K, Dagil, R, Janitzek, C M, Søgaard, M, Aves, K-L, Horsted, E W, Erdogan, S M, Gustavsson, T, Dorosz, J, Clemmensen, S, Fredsgaard, L, Thrane, S, Vidal-Calvo, E E, Khalifé, P, Hulen, T M, Choudhary, S, Theisen, M, Singh, S K, Garcia-Senosiain, A, Van Oosten, L, Pijlman, G, Hierzberger, B, Domeyer, T, Nalewajek, B W, Strøbæk, A, Skrzypczak, M, Andersson, L F, Buus, S, Buus, A S, Christensen, J P, Dalebout, T J, Iversen, K, Harritshøj, L H, Mordmüller, B, Ullum, H, Reinert, L S, de Jongh, W A, Kikkert, M, Paludan, S R, Theander, T G, Nielsen, M A, Salanti, A & Sander, A F 2021, ' Capsid-like particles decorated with the SARS-CoV-2 receptor-binding domain elicit strong virus neutralization activity ', Nature Communications, vol. 12, no. 1, pp. 324 . https://doi.org/10.1038/s41467-020-20251-8
Fougeroux, C, Goksøyr, L, Idorn, M, Soroka, V, Myeni, S K, Dagil, R, Janitzek, C M, Søgaard, M, Aves, K L, Horsted, E W, Erdoğan, S M, Gustavsson, T, Dorosz, J, Clemmensen, S, Fredsgaard, L, Thrane, S, Vidal-Calvo, E E, Khalifé, P, Hulen, T M, Choudhary, S, Theisen, M, Singh, S K, Garcia-Senosiain, A, Van Oosten, L, Pijlman, G, Hierzberger, B, Domeyer, T, Nalewajek, B W, Strøbæk, A, Skrzypczak, M, Andersson, L F, Buus, S, Buus, A S, Christensen, J P, Dalebout, T J, Iversen, K, Harritshøj, L H, Mordmüller, B, Ullum, H, Reinert, L S, de Jongh, W A, Kikkert, M, Paludan, S R, Theander, T G, Nielsen, M A, Salanti, A & Sander, A F 2021, ' Capsid-like particles decorated with the SARS-CoV-2 receptor-binding domain elicit strong virus neutralization activity ', Nature Communications, vol. 12, no. 1, 324 . https://doi.org/10.1038/s41467-020-20251-8
Nature Communications, Vol 12, Iss 1, Pp 1-11 (2021)
Nature Communications
Nature Communications, 12(1)
Nature Communications, 12(1). NATURE RESEARCH
Fougeroux, C, Goksøyr, L, Idorn, M, Soroka, V, Myeni, S K, Dagil, R, Janitzek, C M, Søgaard, M, Aves, K-L, Horsted, E W, Erdogan, S M, Gustavsson, T, Dorosz, J, Clemmensen, S, Fredsgaard, L, Thrane, S, Vidal-Calvo, E E, Khalifé, P, Hulen, T M, Choudhary, S, Theisen, M, Singh, S K, Garcia-Senosiain, A, Van Oosten, L, Pijlman, G, Hierzberger, B, Domeyer, T, Nalewajek, B W, Strøbæk, A, Skrzypczak, M, Andersson, L F, Buus, S, Buus, A S, Christensen, J P, Dalebout, T J, Iversen, K, Harritshøj, L H, Mordmüller, B, Ullum, H, Reinert, L S, de Jongh, W A, Kikkert, M, Paludan, S R, Theander, T G, Nielsen, M A, Salanti, A & Sander, A F 2021, ' Capsid-like particles decorated with the SARS-CoV-2 receptor-binding domain elicit strong virus neutralization activity ', Nature Communications, vol. 12, no. 1, pp. 324 . https://doi.org/10.1038/s41467-020-20251-8
Fougeroux, C, Goksøyr, L, Idorn, M, Soroka, V, Myeni, S K, Dagil, R, Janitzek, C M, Søgaard, M, Aves, K L, Horsted, E W, Erdoğan, S M, Gustavsson, T, Dorosz, J, Clemmensen, S, Fredsgaard, L, Thrane, S, Vidal-Calvo, E E, Khalifé, P, Hulen, T M, Choudhary, S, Theisen, M, Singh, S K, Garcia-Senosiain, A, Van Oosten, L, Pijlman, G, Hierzberger, B, Domeyer, T, Nalewajek, B W, Strøbæk, A, Skrzypczak, M, Andersson, L F, Buus, S, Buus, A S, Christensen, J P, Dalebout, T J, Iversen, K, Harritshøj, L H, Mordmüller, B, Ullum, H, Reinert, L S, de Jongh, W A, Kikkert, M, Paludan, S R, Theander, T G, Nielsen, M A, Salanti, A & Sander, A F 2021, ' Capsid-like particles decorated with the SARS-CoV-2 receptor-binding domain elicit strong virus neutralization activity ', Nature Communications, vol. 12, no. 1, 324 . https://doi.org/10.1038/s41467-020-20251-8
Nature Communications, Vol 12, Iss 1, Pp 1-11 (2021)
The rapid development of a SARS-CoV-2 vaccine is a global priority. Here, we develop two capsid-like particle (CLP)-based vaccines displaying the receptor-binding domain (RBD) of the SARS-CoV-2 spike protein. RBD antigens are displayed on AP205 CLPs