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Generating Transposon Insertion Libraries in Gram-Negative Bacteria for High-Throughput Sequencing
Published on: July 7, 2020
Risk factors for acquisition of multiply drug-resistant gram-negative bacteria
1Department of Clinical Microbiology, Aberdeen Royal Infirmary, UK.
Abstract:
Some bacteria are naturally resistant to many antibiotics and most can become multiply resistant. Multiply resistant gram-negative bacteria have proved a particular problem over the last 30 years, but the development of new agents has lessened their significance for most clinicians. Now, however, clinical practice is threatened by the lack of new classes of antibiotics, the widespread emergence of resistance and the advent of plasmid-mediated cephalosporinases by which the spread of resistance is likely to be rapid. Increased use of prophylaxis in immunosuppressed and intensive care patients is likely to aggravate the problem, as is the use of new broad-spectrum agents in the community. More directed and restricted antibiotic use and better education of patients and prescriber are necessary to contain the problem of antibiotic resistance. Improved surveillance of sensitivity trends is essential. Many outbreaks also are associated with poor infection control techniques. The cost of outbreaks due to multiply resistant organisms and lack of compliance with infection control procedures needs to be properly studied. While many predisposing factors for the acquisition of these organisms and the development of infection are understood, the multifactorial nature of illness in many patients complicates the issue, necessitating further study of risk factors and preventative and therapeutic measures.
Insights
Antibiotic resistance in bacteria is a growing threat to clinical practice, driven by a lack of new drugs and widespread resistance. Containing this requires restricted antibiotic use, better education, and improved infection control.
Area of Science:
- Microbiology
- Infectious Diseases
- Pharmacology
Background:
- Multiply resistant gram-negative bacteria pose a significant clinical challenge.
- The emergence of plasmid-mediated cephalosporinases accelerates resistance spread.
- Limited development of new antibiotic classes exacerbates the problem.
Purpose of the Study:
- To highlight the escalating threat of antibiotic resistance in clinical practice.
- To identify factors contributing to the spread of multiply resistant bacteria.
- To propose strategies for containing antibiotic resistance.
Main Methods:
- Literature review and synthesis of current trends in antibiotic resistance.
- Analysis of factors influencing resistance development and spread.
- Discussion of clinical implications and potential solutions.
Main Results:
- Clinical practice is threatened by widespread resistance and a lack of new antibiotics.
- Increased prophylaxis and broad-spectrum agent use aggravate the resistance problem.
- Poor infection control contributes significantly to outbreaks.
Conclusions:
- Restricted antibiotic use, enhanced prescriber and patient education, and improved surveillance are crucial.
- Further research into risk factors and preventative measures for resistant infections is necessary.
- Addressing the multifactorial nature of illness is key to managing resistant organisms.
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