Antimicrobial resistance (AMR) describes the ability of bacteria to become immune to antimicrobial treatments. Current testing for AMR is based on culturing methods that are very slow because they assess the average response of billions of bacteria. In principle, if tests were available that could assess the response of individual bacteria, they could be much faster. Here, we propose an electro-photonic approach for the analysis and the monitoring of susceptibility at the single-bacterium level. Our method employs optical tweezers based on photonic crystal cavities for the trapping of individual bacteria. While the bacteria are trapped, antibiotics can be added to the medium and the corresponding changes in the optical properties and motili...
International audienceBecause of antibiotics misuse, the dramatic growth of antibioresistance threat...
International audienceBecause of antibiotics misuse, the dramatic growth of antibioresistance threat...
The miniaturisation of optical trapping systems allows the manipulation and analysis of nano and mic...
Antimicrobial resistance (AMR) describes the ability of bacteria to become immune to antimicrobial t...
Antimicrobial Resistance (AMR) is an important societal and medical burden being faced by every heal...
Antimicrobial Resistance (AMR) is an important societal and medical burden being faced by every heal...
Antimicrobial Resistance (AMR) is an important societal and medical burden being faced by every heal...
Photonic biosensors are a major topic of research that continues to make exciting advances. Technolo...
Growing antimicrobial resistance (AMR) is a serious global threat to human health. Current methods t...
Photonic biosensors are a major topic of research that continues to make exciting advances. Technolo...
The lack of rapid antibiotic susceptibility tests adversely affects the treatment of bacterial infec...
The sustained misuse and overuse of antibacterial agents is accelerating the emergence of antimicrob...
Pathogenic bacteria are biological cells that can cause infectious diseases. Antimicrobial resistanc...
There is an urgent need to develop novel methods for assessing the response of bacteria to antibioti...
International audienceBecause of antibiotics misuse, the dramatic growth of antibioresistance threat...
International audienceBecause of antibiotics misuse, the dramatic growth of antibioresistance threat...
International audienceBecause of antibiotics misuse, the dramatic growth of antibioresistance threat...
The miniaturisation of optical trapping systems allows the manipulation and analysis of nano and mic...
Antimicrobial resistance (AMR) describes the ability of bacteria to become immune to antimicrobial t...
Antimicrobial Resistance (AMR) is an important societal and medical burden being faced by every heal...
Antimicrobial Resistance (AMR) is an important societal and medical burden being faced by every heal...
Antimicrobial Resistance (AMR) is an important societal and medical burden being faced by every heal...
Photonic biosensors are a major topic of research that continues to make exciting advances. Technolo...
Growing antimicrobial resistance (AMR) is a serious global threat to human health. Current methods t...
Photonic biosensors are a major topic of research that continues to make exciting advances. Technolo...
The lack of rapid antibiotic susceptibility tests adversely affects the treatment of bacterial infec...
The sustained misuse and overuse of antibacterial agents is accelerating the emergence of antimicrob...
Pathogenic bacteria are biological cells that can cause infectious diseases. Antimicrobial resistanc...
There is an urgent need to develop novel methods for assessing the response of bacteria to antibioti...
International audienceBecause of antibiotics misuse, the dramatic growth of antibioresistance threat...
International audienceBecause of antibiotics misuse, the dramatic growth of antibioresistance threat...
International audienceBecause of antibiotics misuse, the dramatic growth of antibioresistance threat...
The miniaturisation of optical trapping systems allows the manipulation and analysis of nano and mic...