Evolution is essential to the appearance of complexity and ultimately Life. It relies on the propagation of the properties, traits and characteristics that allow an organism to survive in a challenging environment. It is evolution that shaped our world over about four billion years by slow and iterative adaptation. While natural evolution based on selection is slow and gradual, directed evolution allows the fast and streamlined optimization of a phenotype under selective conditions. The potential of directed evolution for the discovery and optimization of enzymes is mostly limited by the throughput of the tools and methods available for screening. Over the past twenty years, versatile tools based on droplet microfluidics have been developed...
Directed evolution is a powerful algorithm for tailoring industrially important biocatalysts. Method...
Microfluidic ultrahigh-throughput screening of enzyme activities provides information on libraries w...
Natural evolution relies on the improvement of biological entities by rounds of diversification and ...
Natural enzymes have evolved over millions of years to allow for their effective operation within sp...
International audienceThe process of optimizing the properties of biological molecules is paramount ...
High-throughput screening (HTS) of enzymatic activity is important for directed evolution-based enzy...
We present droplet adaptive laboratory evolution (DrALE), a directed evolution method used to improv...
This work describes the development of high-throughput droplet microfluidic platforms fine-tuned for...
Billions of years of Darwinian evolution has led to the emergence of highly sophisticated and divers...
SummaryWe demonstrate the utility of a microfluidic platform in which water-in-oil droplet compartme...
The ability to engineer enzymes has wide ranging applications in industry and biotechnology. Recentl...
SummaryDirected evolution studies often make use of water-in-oil compartments, which conventionally ...
A high-throughput method for single cell screening by microfluidic droplet sorting is applied to a w...
Biocatalysts, biologically derived catalysts, are of great importance for a wide range of industrial...
International audienceThe explosive growth in our knowledge of genomes, proteomes, and metabolomes i...
Directed evolution is a powerful algorithm for tailoring industrially important biocatalysts. Method...
Microfluidic ultrahigh-throughput screening of enzyme activities provides information on libraries w...
Natural evolution relies on the improvement of biological entities by rounds of diversification and ...
Natural enzymes have evolved over millions of years to allow for their effective operation within sp...
International audienceThe process of optimizing the properties of biological molecules is paramount ...
High-throughput screening (HTS) of enzymatic activity is important for directed evolution-based enzy...
We present droplet adaptive laboratory evolution (DrALE), a directed evolution method used to improv...
This work describes the development of high-throughput droplet microfluidic platforms fine-tuned for...
Billions of years of Darwinian evolution has led to the emergence of highly sophisticated and divers...
SummaryWe demonstrate the utility of a microfluidic platform in which water-in-oil droplet compartme...
The ability to engineer enzymes has wide ranging applications in industry and biotechnology. Recentl...
SummaryDirected evolution studies often make use of water-in-oil compartments, which conventionally ...
A high-throughput method for single cell screening by microfluidic droplet sorting is applied to a w...
Biocatalysts, biologically derived catalysts, are of great importance for a wide range of industrial...
International audienceThe explosive growth in our knowledge of genomes, proteomes, and metabolomes i...
Directed evolution is a powerful algorithm for tailoring industrially important biocatalysts. Method...
Microfluidic ultrahigh-throughput screening of enzyme activities provides information on libraries w...
Natural evolution relies on the improvement of biological entities by rounds of diversification and ...