Geyer, F.K.; Borbeck, J.; Palka, W.; Zhou, X.; Takimoto, J.; Rabinovich, B.; Reifenhäuser, B.; Friedrich, K.; Kolmar, H.
Computational Prediction of Single-Domain Immunoglobulin Aggregation Propensities Facilitates Discovery and Humanization of Recombinant Nanobodies. Antibodies 2025, 14, 73.
https://doi.org/10.3390/antib14030073
AMA Style
Geyer FK, Borbeck J, Palka W, Zhou X, Takimoto J, Rabinovich B, Reifenhäuser B, Friedrich K, Kolmar H.
Computational Prediction of Single-Domain Immunoglobulin Aggregation Propensities Facilitates Discovery and Humanization of Recombinant Nanobodies. Antibodies. 2025; 14(3):73.
https://doi.org/10.3390/antib14030073
Chicago/Turabian Style
Geyer, Felix Klaus, Julian Borbeck, Wiktoria Palka, Xueyuan Zhou, Jeffrey Takimoto, Brian Rabinovich, Bernd Reifenhäuser, Karlheinz Friedrich, and Harald Kolmar.
2025. "Computational Prediction of Single-Domain Immunoglobulin Aggregation Propensities Facilitates Discovery and Humanization of Recombinant Nanobodies" Antibodies 14, no. 3: 73.
https://doi.org/10.3390/antib14030073
APA Style
Geyer, F. K., Borbeck, J., Palka, W., Zhou, X., Takimoto, J., Rabinovich, B., Reifenhäuser, B., Friedrich, K., & Kolmar, H.
(2025). Computational Prediction of Single-Domain Immunoglobulin Aggregation Propensities Facilitates Discovery and Humanization of Recombinant Nanobodies. Antibodies, 14(3), 73.
https://doi.org/10.3390/antib14030073