Trenker, R.; Rokkam, D.; Morin, A.; Balasubrahmanyam, P.; Paredes, V.; Cheng, I.; de Waal Malefyt, R.; Oft, M.; Lupardus, P.; Vivona, S.
Structure-Guided Stapling of Dimeric Conformations and Linker Engineering Enhance Thermostability and Fine-Tune Activity of Bispecific VHH Cytokine Agonists. Antibodies 2025, 14, 74.
https://doi.org/10.3390/antib14030074
AMA Style
Trenker R, Rokkam D, Morin A, Balasubrahmanyam P, Paredes V, Cheng I, de Waal Malefyt R, Oft M, Lupardus P, Vivona S.
Structure-Guided Stapling of Dimeric Conformations and Linker Engineering Enhance Thermostability and Fine-Tune Activity of Bispecific VHH Cytokine Agonists. Antibodies. 2025; 14(3):74.
https://doi.org/10.3390/antib14030074
Chicago/Turabian Style
Trenker, Raphael, Deepti Rokkam, Andrew Morin, Priyanka Balasubrahmanyam, Verenice Paredes, Ivan Cheng, Rene de Waal Malefyt, Martin Oft, Patrick Lupardus, and Sandro Vivona.
2025. "Structure-Guided Stapling of Dimeric Conformations and Linker Engineering Enhance Thermostability and Fine-Tune Activity of Bispecific VHH Cytokine Agonists" Antibodies 14, no. 3: 74.
https://doi.org/10.3390/antib14030074
APA Style
Trenker, R., Rokkam, D., Morin, A., Balasubrahmanyam, P., Paredes, V., Cheng, I., de Waal Malefyt, R., Oft, M., Lupardus, P., & Vivona, S.
(2025). Structure-Guided Stapling of Dimeric Conformations and Linker Engineering Enhance Thermostability and Fine-Tune Activity of Bispecific VHH Cytokine Agonists. Antibodies, 14(3), 74.
https://doi.org/10.3390/antib14030074