Over the last three decades, protein engineering has established itself as an important tool for the development of enzymes and (therapeutic) proteins with improved characteristics. New mutagenesis techniques and computational design tools have greatly aided in the advancement of protein engineering. Yet, one of the pivotal components to further advance protein engineering strategies is the high-throughput screening of variants. Compartmentalization is one of the key features allowing miniaturization and acceleration of screening. This review focuses on novel screening technologies applied in protein engineering, highlighting flow cytometry- and microfluidics-based platforms
Therapeutic proteins are becoming increasingly important. They are desirable, as they typically poss...
Advances in the fields of proteomics and genomics have necessitated the development of high-throughp...
Drug discovery is an expensive and lengthy process. Among the different phases, drug discovery and p...
Over the last three decades, protein engineering has established itself as an important tool for the...
Abstract: Over the last three decades, protein engineering has established itself as an important to...
Over the last three decades, protein engineering has established itself as an important tool for the...
The ability to engineer enzymes has wide ranging applications in industry and biotechnology. Recentl...
Enzyme engineering is an important biotechnological process capable of generating tailored biocataly...
A high-throughput method for single cell screening by microfluidic droplet sorting is applied to a w...
In the last decades, the basic techniques of microfluidics for the study of cells such as cell cultu...
Enzymes are extremely valuable tools for industrial, environmental, and biotechnological application...
International audienceThe explosive growth in our knowledge of genomes, proteomes, and metabolomes i...
Cell factory development is critically important for efficient biological production of chemicals, b...
High-throughput screening (HTS) of enzymatic activity is important for directed evolution-based enzy...
DNA technologies such as cloning, DNA microarrays, and next generation sequencing have transformed t...
Therapeutic proteins are becoming increasingly important. They are desirable, as they typically poss...
Advances in the fields of proteomics and genomics have necessitated the development of high-throughp...
Drug discovery is an expensive and lengthy process. Among the different phases, drug discovery and p...
Over the last three decades, protein engineering has established itself as an important tool for the...
Abstract: Over the last three decades, protein engineering has established itself as an important to...
Over the last three decades, protein engineering has established itself as an important tool for the...
The ability to engineer enzymes has wide ranging applications in industry and biotechnology. Recentl...
Enzyme engineering is an important biotechnological process capable of generating tailored biocataly...
A high-throughput method for single cell screening by microfluidic droplet sorting is applied to a w...
In the last decades, the basic techniques of microfluidics for the study of cells such as cell cultu...
Enzymes are extremely valuable tools for industrial, environmental, and biotechnological application...
International audienceThe explosive growth in our knowledge of genomes, proteomes, and metabolomes i...
Cell factory development is critically important for efficient biological production of chemicals, b...
High-throughput screening (HTS) of enzymatic activity is important for directed evolution-based enzy...
DNA technologies such as cloning, DNA microarrays, and next generation sequencing have transformed t...
Therapeutic proteins are becoming increasingly important. They are desirable, as they typically poss...
Advances in the fields of proteomics and genomics have necessitated the development of high-throughp...
Drug discovery is an expensive and lengthy process. Among the different phases, drug discovery and p...