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A Review of Carbapenem Resistance in Enterobacterales and Its Detection Techniques
Oznur Caliskan-Aydogan1,2, Evangelyn C Alocilja1,2
1Department of Biosystems and Agricultural Engineering, Michigan State University, East Lansing, MI 48824, USA.
Abstract:
Infectious disease outbreaks have caused thousands of deaths and hospitalizations, along with severe negative global economic impacts. Among these, infections caused by antimicrobial-resistant microorganisms are a major growing concern. The misuse and overuse of antimicrobials have resulted in the emergence of antimicrobial resistance (AMR) worldwide. Carbapenem-resistant Enterobacterales (CRE) are among the bacteria that need urgent attention globally. The emergence and spread of carbapenem-resistant bacteria are mainly due to the rapid dissemination of genes that encode carbapenemases through horizontal gene transfer (HGT). The rapid dissemination enables the development of host colonization and infection cases in humans who do not use the antibiotic (carbapenem) or those who are hospitalized but interacting with environments and hosts colonized with carbapenemase-producing (CP) bacteria. There are continuing efforts to characterize and differentiate carbapenem-resistant bacteria from susceptible bacteria to allow for the appropriate diagnosis, treatment, prevention, and control of infections. This review presents an overview of the factors that cause the emergence of AMR, particularly CRE, where they have been reported, and then, it outlines carbapenemases and how they are disseminated through humans, the environment, and food systems. Then, current and emerging techniques for the detection and surveillance of AMR, primarily CRE, and gaps in detection technologies are presented. This review can assist in developing prevention and control measures to minimize the spread of carbapenem resistance in the human ecosystem, including hospitals, food supply chains, and water treatment facilities. Furthermore, the development of rapid and affordable detection techniques is helpful in controlling the negative impact of infections caused by AMR/CRE. Since delays in diagnostics and appropriate antibiotic treatment for such infections lead to increased mortality rates and hospital costs, it is, therefore, imperative that rapid tests be a priority.
Insights
Antimicrobial resistance (AMR), especially from carbapenem-resistant Enterobacterales (CRE), is a global threat. Rapid detection of CRE is crucial for preventing spread and reducing mortality and healthcare costs.
Area of Science:
- Microbiology
- Infectious Diseases
- Public Health
Background:
- Antimicrobial resistance (AMR) is a growing global concern, leading to significant deaths, hospitalizations, and economic losses.
- Carbapenem-resistant Enterobacterales (CRE) are a particularly urgent threat, driven by the horizontal gene transfer (HGT) of carbapenemase genes.
- CRE infections can occur in individuals with no prior exposure to carbapenems, highlighting the importance of environmental and host colonization spread.
Purpose of the Study:
- To review the factors contributing to AMR emergence, focusing on CRE.
- To outline the dissemination pathways of carbapenemases in humans, the environment, and food systems.
- To present current and emerging detection techniques for AMR/CRE and identify gaps in existing technologies.
Main Methods:
- Literature review on AMR emergence, CRE, carbapenemase dissemination, and detection methods.
- Analysis of factors contributing to the spread of carbapenem resistance.
- Evaluation of current and emerging diagnostic and surveillance technologies for CRE.
Main Results:
- CRE emergence is linked to antimicrobial misuse and overuse, facilitating gene transfer.
- Carbapenemases spread through human contact, environmental contamination, and food supply chains.
- Existing detection technologies have limitations, emphasizing the need for rapid and affordable methods.
Conclusions:
- Developing effective prevention and control measures requires understanding AMR/CRE spread in various ecosystems.
- Rapid and affordable detection techniques are essential for timely diagnosis and treatment, reducing mortality and costs.
- Prioritizing the development of rapid diagnostic tests is imperative to combat the impact of CRE infections.
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