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Published on: September 30, 2022
Radiolabeled Antimicrobials for Infection Imaging: A Scoping Review
Sichen Liu1,2, James Townley3, Chuen-Yen Lau4
1Laboratory of Clinical Immunology and Microbiology, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
Abstract:
Imaging of infections has the potential to improve clinical outcomes, but pathogen-specific imaging strategies are currently unavailable. Given their target specificity, antimicrobials may be useful as molecular imaging ligands to target infections. Despite substantial development efforts, no antimicrobial-based ligands are approved for clinical use. This scoping review comprehensively surveys radiolabeled antimicrobials across antibacterial, antimycobacterial, antiviral, and antifungal drug classes, examining their progression through the translational pipeline. The review utilized PubMed and Google Scholar databases (1970-2025), following PRISMA Extension for Scoping Reviews (PRISMA-ScR) guidelines. Two reviewers independently screened titles, abstracts, and full-text articles; data were extracted, and content duplicates were removed. In total, 143 preclinical and 25 clinical articles met the selection criteria. In clinical studies, most tracers showed suboptimal specificity for infections, while some proved useful for pharmacokinetic characterization. Among preclinical studies, radiolabeled plazomicin and echinocandins (caspofungin and anidulafungin) exhibited the greatest number of preferred characteristics. In conclusion, ideal antimicrobial pharmacologic properties can be counterproductive for imaging, where rapid background clearance and a high target-to-non-target ratio (T/NT) are essential. Many radioligands demonstrate good tissue penetration but suboptimal washout, limiting their diagnostic value. In vivo pharmacokinetic applications during active infections are promising, though significant challenges remain for infection imaging.
Insights
Radiolabeled antimicrobials show promise for infection imaging, but many lack specificity. While some tracers aid pharmacokinetic studies, challenges in background clearance and target-to-non-target ratios limit diagnostic use.
Area of Science:
- Medical Imaging
- Infectious Diseases
- Pharmacology
Background:
- Pathogen-specific imaging for infections is needed to improve clinical outcomes.
- Antimicrobials, due to their target specificity, are potential molecular imaging ligands for infections.
- No antimicrobial-based ligands are currently approved for clinical infection imaging.
Purpose of the Study:
- To comprehensively survey radiolabeled antimicrobials across various drug classes.
- To examine the translational progression of these agents from preclinical to clinical studies.
- To identify agents with characteristics suitable for infection imaging.
Main Methods:
- Scoping review of PubMed and Google Scholar (1970-2025) following PRISMA-ScR guidelines.
- Independent screening of titles, abstracts, and full-text articles by two reviewers.
- Data extraction and removal of duplicate content from 143 preclinical and 25 clinical articles.
Main Results:
- Clinical studies showed suboptimal specificity for most tracers, though some aided pharmacokinetic characterization.
- Preclinical studies identified radiolabeled plazomicin and echinocandins (caspofungin, anidulafungin) as promising.
- Many radioligands had good tissue penetration but poor washout, limiting diagnostic value.
Conclusions:
- Ideal antimicrobial properties for pharmacology may hinder imaging due to requirements for rapid clearance and high target-to-non-target ratios.
- While in vivo pharmacokinetic applications are promising, significant challenges persist for effective infection imaging.
- Further development is needed to overcome limitations in specificity and washout for clinical application.
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