In vitro selection technology has transformed the development of therapeutic monoclonal antibodies. Using methods such as phage, ribosome, and yeast display, high affinity binders can be selected from diverse repertoires. Here, we review strategies for the next-generation sequencing (NGS) of phage- and other antibody-display libraries, as well as NGS platforms and analysis tools. Moreover, we discuss recent examples relating to the use of NGS to assess library diversity, clonal enrichment, and affinity maturation
Antibody discovery by phage display consists of two phases, i.e., the binding phase and the amplific...
The phage display is becoming a very powerful technology. Filamentous phages can present on their su...
Recently it has become possible to query the great diversity of natural antibody repertoires using n...
Phage display bypasses the immune response by bringing the entire immune repertoire to a target anti...
Next-Generation Sequencing and bioinformatics are powerful tools for analyzing the large number of D...
Antibodies leverage on their unique architecture to bind with an array of antigens. The strength of ...
<div><p>Phage display technology has been widely used for antibody affinity maturation for decades. ...
We have created a high quality phage display library containing over 1010 human antibodies and descr...
3non vitro display technologies have put together the generation of large antibody libraries with se...
During the last 12 years, antibody combinatorial libraries have provided a new approach for the cons...
During the last 15 years in vitro technologies opened powerful routes to combine the generation of l...
During the last 15 years in vitro technologies opened powerful routes to combine the generation of l...
Since the initial description of phage display technology for the generation of human antibodies, a ...
Phage display technology has been widely used for antibody affinity maturation for de-cades. The lim...
We have created a high quality phage display library containing over 1010 human antibodies and descr...
Antibody discovery by phage display consists of two phases, i.e., the binding phase and the amplific...
The phage display is becoming a very powerful technology. Filamentous phages can present on their su...
Recently it has become possible to query the great diversity of natural antibody repertoires using n...
Phage display bypasses the immune response by bringing the entire immune repertoire to a target anti...
Next-Generation Sequencing and bioinformatics are powerful tools for analyzing the large number of D...
Antibodies leverage on their unique architecture to bind with an array of antigens. The strength of ...
<div><p>Phage display technology has been widely used for antibody affinity maturation for decades. ...
We have created a high quality phage display library containing over 1010 human antibodies and descr...
3non vitro display technologies have put together the generation of large antibody libraries with se...
During the last 12 years, antibody combinatorial libraries have provided a new approach for the cons...
During the last 15 years in vitro technologies opened powerful routes to combine the generation of l...
During the last 15 years in vitro technologies opened powerful routes to combine the generation of l...
Since the initial description of phage display technology for the generation of human antibodies, a ...
Phage display technology has been widely used for antibody affinity maturation for de-cades. The lim...
We have created a high quality phage display library containing over 1010 human antibodies and descr...
Antibody discovery by phage display consists of two phases, i.e., the binding phase and the amplific...
The phage display is becoming a very powerful technology. Filamentous phages can present on their su...
Recently it has become possible to query the great diversity of natural antibody repertoires using n...