AbstractIn recent years, several cell-based screening technologies for the isolation of antibodies with prescribed properties emerged. They rely on the multi-copy display of antibodies or antibody fragments on a cell surface in functional form followed by high through put screening and isolation of cell clones that carry an antibody variant with the desired affinity, specificity, and stability. Particularly yeast surface display in combination with high-throughput fluorescence-activated cell sorting has proven successful in the last fifteen years as a very powerful technology that has some advantages over classical generation of monoclonals using the hybridoma technology or bacteriophage-based antibody display and screening. Cell-based scre...
Generation of high-productivity cell lines remains a major bottleneck in therapeutic antibody develo...
The success of engineered monoclonal antibodies as biopharmaceuticals has generated considerable int...
Abstract The affinity engineering is a key step to increase the efficacy of therapeutic monoclonal ...
AbstractIn recent years, several cell-based screening technologies for the isolation of antibodies w...
3non vitro display technologies have put together the generation of large antibody libraries with se...
In vitro display technologies, best exemplified by phage and yeast display, were first described for...
. These authors contributed equally to this work. We describe a novel approach named REAL-Select for...
Abstract Background Yeast surface display (YSD) has proven to be a versatile platform technology for...
High throughput cell-based screening methodologies have become core development tools for the genera...
Due to their critical functions in biological processes such as signal transduction, catalysis, and ...
Yeast surface display techniques have been increasingly employed as a tool for both the discovery an...
Yeast-surface display (YSD) is commonly applied to screen Fab immune or naïve libraries for binders ...
We describe a novel approach named REAL-Select for the non-covalent display of IgG-molecules on the ...
Our increasing understanding of disease mechanisms coupled with technological advances has facilitat...
Monoclonal antibodies (mAbs) emerged as one of the most successful and frequently used biotherapeuti...
Generation of high-productivity cell lines remains a major bottleneck in therapeutic antibody develo...
The success of engineered monoclonal antibodies as biopharmaceuticals has generated considerable int...
Abstract The affinity engineering is a key step to increase the efficacy of therapeutic monoclonal ...
AbstractIn recent years, several cell-based screening technologies for the isolation of antibodies w...
3non vitro display technologies have put together the generation of large antibody libraries with se...
In vitro display technologies, best exemplified by phage and yeast display, were first described for...
. These authors contributed equally to this work. We describe a novel approach named REAL-Select for...
Abstract Background Yeast surface display (YSD) has proven to be a versatile platform technology for...
High throughput cell-based screening methodologies have become core development tools for the genera...
Due to their critical functions in biological processes such as signal transduction, catalysis, and ...
Yeast surface display techniques have been increasingly employed as a tool for both the discovery an...
Yeast-surface display (YSD) is commonly applied to screen Fab immune or naïve libraries for binders ...
We describe a novel approach named REAL-Select for the non-covalent display of IgG-molecules on the ...
Our increasing understanding of disease mechanisms coupled with technological advances has facilitat...
Monoclonal antibodies (mAbs) emerged as one of the most successful and frequently used biotherapeuti...
Generation of high-productivity cell lines remains a major bottleneck in therapeutic antibody develo...
The success of engineered monoclonal antibodies as biopharmaceuticals has generated considerable int...
Abstract The affinity engineering is a key step to increase the efficacy of therapeutic monoclonal ...