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Global Threat of Carbapenem-Resistant Gram-Negative Bacteria
Shio-Shin Jean1,2, Dorji Harnod3,4, Po-Ren Hsueh5,6,7,8
1Department of Emergency and Critical Care Medicine, Min-Sheng General Hospital, Taoyuan, Taiwan.
Abstract:
Infections caused by multidrug-resistant (MDR) and extensively drug-resistant (XDR) Gram-negative bacteria (GNB), including carbapenem-resistant (CR) Enterobacterales (CRE; harboring mainly blaKPC, blaNDM, and blaOXA-48-like genes), CR- or MDR/XDR-Pseudomonas aeruginosa (production of VIM, IMP, or NDM carbapenemases combined with porin alteration), and Acinetobacter baumannii complex (producing mainly OXA-23, OXA-58-like carbapenemases), have gradually worsened and become a major challenge to public health because of limited antibiotic choice and high case-fatality rates. Diverse MDR/XDR-GNB isolates have been predominantly cultured from inpatients and hospital equipment/settings, but CRE has also been identified in community settings and long-term care facilities. Several CRE outbreaks cost hospitals and healthcare institutions huge economic burdens for disinfection and containment of their disseminations. Parenteral polymyxin B/E has been observed to have a poor pharmacokinetic profile for the treatment of CR- and XDR-GNB. It has been determined that tigecycline is suitable for the treatment of bloodstream infections owing to GNB, with a minimum inhibitory concentration of ≤ 0.5 mg/L. Ceftazidime-avibactam is a last-resort antibiotic against GNB of Ambler class A/C/D enzyme-producers and a majority of CR-P. aeruginosa isolates. Furthermore, ceftolozane-tazobactam is shown to exhibit excellent in vitro activity against CR- and XDR-P. aeruginosa isolates. Several pharmaceuticals have devoted to exploring novel antibiotics to combat these troublesome XDR-GNBs. Nevertheless, only few antibiotics are shown to be effective in vitro against CR/XDR-A. baumannii complex isolates. In this era of antibiotic pipelines, strict implementation of antibiotic stewardship is as important as in-time isolation cohorts in limiting the spread of CR/XDR-GNB and alleviating the worsening trends of resistance.
Insights
Multidrug-resistant Gram-negative bacteria (GNB) infections pose a significant public health threat due to limited treatment options. Combating these resistant infections requires new antibiotics and strict antibiotic stewardship.
Area of Science:
- Microbiology and Infectious Diseases
- Antimicrobial Resistance
- Public Health
Background:
- Multidrug-resistant (MDR) and extensively drug-resistant (XDR) Gram-negative bacteria (GNB) present a growing global health challenge.
- Carbapenem-resistant Enterobacterales (CRE), resistant *Pseudomonas aeruginosa*, and *Acinetobacter baumannii* are key pathogens with limited effective treatments.
- These resistant infections lead to high mortality rates and substantial healthcare costs.
Purpose of the Study:
- To review the current landscape of infections caused by MDR/XDR-GNB.
- To discuss the challenges in treating these infections, including limited antibiotic choices and treatment efficacy.
- To highlight the importance of antibiotic stewardship and infection control measures.
Main Methods:
- Literature review of recent studies on MDR/XDR-GNB epidemiology, resistance mechanisms, and treatment options.
- Analysis of current therapeutic strategies, including polymyxins, tigecycline, ceftazidime-avibactam, and ceftolozane-tazobactam.
- Discussion of the role of antibiotic stewardship and infection control in managing resistant GNB.
Main Results:
- MDR/XDR-GNB infections are increasingly prevalent in healthcare settings and sometimes in the community.
- Existing antibiotics have limitations in efficacy and pharmacokinetic profiles for treating these infections.
- Novel antibiotics are under development, but *Acinetobacter baumannii* remains particularly challenging to treat.
- Effective *in vitro* activity is observed for ceftazidime-avibactam and ceftolozane-tazobactam against certain GNB.
Conclusions:
- Urgent need for novel therapeutic agents to combat MDR/XDR-GNB infections.
- Strict implementation of antibiotic stewardship programs is crucial for controlling resistance.
- Infection control measures, including isolation, are essential to limit the spread of these resistant pathogens.
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