Our ability to generate bacterial strains with unique and increasingly complex functions has rapidly expanded in recent times. The capacity for DNA synthesis is increasing and costing less; new tools are being developed for fast, large-scale genetic manipulation; and more tested genetic parts are available for use, as is the knowledge of how to use them effectively. These advances promise to unlock an exciting array of 'smart' bacteria for clinical use but will also challenge scientists to better optimize preclinical testing regimes for early identification and validation of promising strains and strategies. Here, we review recent advances in the development and testing of engineered bacterial diagnostics and therapeutics. We highlight new ...
The genomic revolution of the last twenty years has launched the biosciences into a new frontier. Fo...
Throughout the decades of its history, the advances in bacteria-based bio-industries have coincided ...
New antimicrobials need to be discovered to fight the advance of multidrug-resistant pathogens. A pr...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, Februar...
Microbiome research in the past decade has revealed an astounding prevalence of bacteria in various ...
Synthetic biology is a rapidly growing discipline that aims to rationally design the behavior of liv...
Recombinant DNA technology has created biological organisms with advanced genetic sequences and has ...
Although bacteria are generally regarded as the causative agents of infectious diseases, most bacter...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, 2018Cataloged from PDF...
The growing prevalence of antibiotic resistance calls for new approaches in the development of antim...
Synthetic biology is a growing field incorporating genetic engineering, cell and molecular biology, ...
The interest in the therapeutic use of probiotic microorganisms has been increased during the last d...
Since their discovery, bacteriophages have contributed enormously to our understanding of molecular ...
The demand for plasmid DNA (pDNA) is anticipated to increase significantly as DNA vaccines and non-v...
Research on fast-growing microbes holds promise for many industrial applications, including shorteni...
The genomic revolution of the last twenty years has launched the biosciences into a new frontier. Fo...
Throughout the decades of its history, the advances in bacteria-based bio-industries have coincided ...
New antimicrobials need to be discovered to fight the advance of multidrug-resistant pathogens. A pr...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, Februar...
Microbiome research in the past decade has revealed an astounding prevalence of bacteria in various ...
Synthetic biology is a rapidly growing discipline that aims to rationally design the behavior of liv...
Recombinant DNA technology has created biological organisms with advanced genetic sequences and has ...
Although bacteria are generally regarded as the causative agents of infectious diseases, most bacter...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biology, 2018Cataloged from PDF...
The growing prevalence of antibiotic resistance calls for new approaches in the development of antim...
Synthetic biology is a growing field incorporating genetic engineering, cell and molecular biology, ...
The interest in the therapeutic use of probiotic microorganisms has been increased during the last d...
Since their discovery, bacteriophages have contributed enormously to our understanding of molecular ...
The demand for plasmid DNA (pDNA) is anticipated to increase significantly as DNA vaccines and non-v...
Research on fast-growing microbes holds promise for many industrial applications, including shorteni...
The genomic revolution of the last twenty years has launched the biosciences into a new frontier. Fo...
Throughout the decades of its history, the advances in bacteria-based bio-industries have coincided ...
New antimicrobials need to be discovered to fight the advance of multidrug-resistant pathogens. A pr...