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.

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.