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Published on: December 1, 2017
Bacterial genome engineering and synthetic biology: combating pathogens
Malathy Krishnamurthy1, Richard T Moore1, Sathish Rajamani1
1Department of Target Discovery and Experimental Microbiology, Division of Molecular and Translational Sciences, U. S. Army Medical Research Institute of Infectious Diseases (USAMRIID), Fort Detrick, Frederick, MD, 21702, USA.
Multidrug-resistant (MDR) bacteria threaten global health, making infections harder to treat. Genome engineering and synthetic biology offer new strategies to combat these resistant pathogens and develop novel antibacterial therapies.
Area of Science:
- Microbiology
- Genetics
- Synthetic Biology
Background:
- Multidrug-resistant (MDR) bacteria pose a significant global health threat, complicating treatment of common infections.
- The rise of MDR infections, reported by WHO and CDC, necessitates urgent action to understand and combat drug resistance mechanisms.
- Antimicrobial resistance creates an economic burden, prompting global initiatives to improve awareness and understanding.
Purpose of the Study:
- To review the application of bacterial genome engineering and synthetic biology (SB) tools for combating MDR pathogens.
- To highlight advances in genetic engineering for targeting and editing bacterial genomes to understand drug resistance.
- To discuss the potential of SB technologies in developing novel antibacterial strategies.
Main Methods:
- Review of current literature on genome engineering tools like recombineering and CRISPR.
- Analysis of bacterial cell-cell signaling mechanisms for pathogen targeting.
- Exploration of synthetic biology applications in antibacterial strategy development.
Main Results:
- Genome engineering and SB tools show promise for diagnosing and treating recalcitrant bacterial infections.
- These technologies can aid in understanding and mitigating bacterial drug resistance mechanisms.
- Applications include novel antibiotic production, phage therapy, diagnostics, and vaccine development.
Conclusions:
- The increasing prevalence of MDR bacteria highlights the urgent need for novel therapeutics.
- Synthetic biology offers promising solutions for developing safe and effective antibacterial therapies.
- Advanced genome engineering and SB tools are crucial for addressing the challenge of antimicrobial resistance.
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