Affinity proteins are invaluable tools in biotechnological and medical applications. This thesis is about combinatorial protein engineering principles for the generation of novel affinity proteins to purify mouse immunoglobulin, detect a potential cancer marker protein or inhibit a cell proliferation pathway. In a first study, ribosome display was for the first time applied to the selection of so-called affibody molecules, including the design of a ribosome display gene cassette, initial test enrichment experiments and the selection of binders against murine IgG1. One of the selected binders (ZMAB25) showed a highly selective binding profile to murine IgG1, which was exploited in the recovery of two different mouse monoclonal IgG1 antibodie...
Proteins are essential components in most processes in living organisms. The detection and quantific...
As many genome sequencing efforts today are completed, we are now provided with the genetic maps for...
Antibodies leverage on their unique architecture to bind with an array of antigens. The strength of ...
Affinity proteins are invaluable tools in biotechnological and medical applications. This thesis is ...
Directed evolution is a powerful method for engineering of specific affinity proteins such as antibo...
Directed evolution is a powerful method for engineering of specific affinity proteins such as antibo...
Directed evolution is a powerful method for engineering of specific affinity proteins such as antibo...
Directed evolution is a powerful method for engineering of specific affinity proteins such as antibo...
Directed evolution is today an established strategy for generation of new affinity proteins. This th...
Directed evolution is today an established strategy for generation of new affinity proteins. This th...
Small stable protein domains are attractive scaffolds for engineering affinity proteins due to their...
Proteins that specifically recognize and bind to other molecules or structures are important tools i...
Proteins that specifically recognize and bind to other molecules or structures are important tools i...
Proteins that specifically recognize and bind to other molecules or structures are important tools i...
This thesis describes the development and use ofnon-immunoglobulin affinity proteins denoted affibod...
Proteins are essential components in most processes in living organisms. The detection and quantific...
As many genome sequencing efforts today are completed, we are now provided with the genetic maps for...
Antibodies leverage on their unique architecture to bind with an array of antigens. The strength of ...
Affinity proteins are invaluable tools in biotechnological and medical applications. This thesis is ...
Directed evolution is a powerful method for engineering of specific affinity proteins such as antibo...
Directed evolution is a powerful method for engineering of specific affinity proteins such as antibo...
Directed evolution is a powerful method for engineering of specific affinity proteins such as antibo...
Directed evolution is a powerful method for engineering of specific affinity proteins such as antibo...
Directed evolution is today an established strategy for generation of new affinity proteins. This th...
Directed evolution is today an established strategy for generation of new affinity proteins. This th...
Small stable protein domains are attractive scaffolds for engineering affinity proteins due to their...
Proteins that specifically recognize and bind to other molecules or structures are important tools i...
Proteins that specifically recognize and bind to other molecules or structures are important tools i...
Proteins that specifically recognize and bind to other molecules or structures are important tools i...
This thesis describes the development and use ofnon-immunoglobulin affinity proteins denoted affibod...
Proteins are essential components in most processes in living organisms. The detection and quantific...
As many genome sequencing efforts today are completed, we are now provided with the genetic maps for...
Antibodies leverage on their unique architecture to bind with an array of antigens. The strength of ...