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Published on: May 28, 2012
Chemiluminescent Carbapenem-Based Molecular Probe for Detection of Carbapenemase Activity in Live Bacteria
Sayantan Das1, Julian Ihssen2, Lukas Wick2
1School of Chemistry, Faculty of Exact Sciences, Tel Aviv University, Tel Aviv, 69978, Israel.
Abstract:
Carbapenemase-producing organisms (CPOs) pose a severe threat to antibacterial treatment due to the acquisition of antibiotic resistance. This resistance can be largely attributed to the antibiotic-hydrolyzing enzymes that the bacteria produce. Current carbapenem "wonder drugs", such as doripenem, ertapenem, meropenem, imipenem, and so on, are resistant to regular β-lactamases, but susceptible to carbapenemases. Even worse, extended exposure of bacteria to these drugs accelerates the spread of resistance genes. In order to preserve the clinical efficacy of antibacterial treatment, carbapenem drugs should be carefully regulated and deployed only in cases of a CPO infection. Early diagnosis is therefore of paramount importance. Herein, we report the design, synthesis, and activity of the first carbapenemase-sensitive chemiluminescent probe, CPCL, which may be used to monitor CPO activity. The design of our probe enables enzymatic cleavage of the carbapenem core, which is followed by a facile 1,8-elimination process and the emission of green light through rapid chemical excitation. We have demonstrated the ability of the probe to detect a number of clinically relevant carbapenemases and the successful identification of CPO present in bacterial cultures, such as those used for clinical diagnosis. We believe that our use of "turn-on" chemiluminescence activation will find significant application in future diagnostic assays and improve antibacterial treatment.
Insights
A novel chemiluminescent probe, CPCL, detects carbapenemase-producing organisms (CPOs) by sensing carbapenemase activity. This "turn-on" probe aids in early CPO diagnosis, crucial for preserving antibiotic efficacy.
Area of Science:
- Microbiology
- Chemical Biology
- Drug Discovery
Background:
- Carbapenemase-producing organisms (CPOs) are a major threat to antibacterial treatments due to acquired antibiotic resistance.
- Carbapenemase enzymes hydrolyze carbapenem antibiotics, rendering them ineffective.
- The spread of resistance genes is accelerated by exposure to carbapenem drugs.
Purpose of the Study:
- To develop a sensitive and specific method for early diagnosis of CPO infections.
- To create a tool for monitoring carbapenemase activity in real-time.
- To preserve the clinical efficacy of carbapenem antibiotics through targeted use.
Main Methods:
- Design and synthesis of a carbapenemase-sensitive chemiluminescent probe (CPCL).
- Demonstration of enzymatic cleavage of the carbapenem core by carbapenemases.
- Observation of light emission via a 1,8-elimination process and chemical excitation.
Main Results:
- CPCL successfully detected clinically relevant carbapenemases.
- The probe identified CPOs in bacterial cultures.
- The "turn-on" chemiluminescence activation was validated.
Conclusions:
- CPCL is the first carbapenemase-sensitive chemiluminescent probe for monitoring CPO activity.
- This probe enables early CPO detection, vital for appropriate clinical management.
- The chemiluminescent probe has significant potential for future diagnostic assays and improving antibacterial treatment strategies.

