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Imaging with FDG labeled leukocytes: is it clinically useful?
1PET/Biomedical Cyclotron Unit, Department of Nuclear Medicine, Erasme CUB-Hospital, Free University of Brussels, Brussels, Belgium. ndumarey@netscape.net
Insights
Labeled leukocyte imaging, particularly with fluorodeoxyglucose (FDG) PET/CT, shows high accuracy for detecting infections. Further research is warranted due to its clinical utility and advantages over conventional methods.
Area of Science:
- Nuclear Medicine
- Medical Imaging
- Immunology
Background:
- Labeled leukocytes are effective for detecting infectious and inflammatory conditions.
- Chemotaxis of activated leukocytes guides them to infection sites.
- Inflammatory cells' uptake of fluorodeoxyglucose (FDG) enables leukocyte labeling.
Purpose of the Study:
- To evaluate the feasibility and value of leukocyte positron emission tomography (PET)/computed tomography (CT) imaging for infection detection.
- To assess the accuracy of leukocyte PET/CT compared to conventional methods.
- To determine the potential of leukocyte PET/CT as an infection imaging agent.
Main Methods:
- Labeling leukocytes ex vivo with [(18F)]FDG.
- Utilizing the principles of chemotaxis for cell trafficking to lesions.
- Acquiring images on a hybrid PET/CT scanner for anatomical correlation.
Main Results:
- Leukocyte PET/CT imaging demonstrates feasibility and potential value in detecting infection.
- The method shows high accuracy in available data.
- Advantages over conventional nuclear medicine and radiological methods are evident.
Conclusions:
- Leukocyte PET/CT imaging is a valuable tool for specific infection detection with anatomical precision.
- Despite not being the ideal agent, its benefits warrant further investigation in larger prospective studies.
- This imaging modality is likely useful for specific subsets of infected patients.
Abstract:
In vivo and in vitro labeled leukocytes have been shown to be very effective in detecting different infectious and inflammatory conditions. The model of labeled leukocyte imaging is based on the powerful mechanisms of chemotaxis exerted on activated leukocytes by chemo-attractants. The avidity of inflammatory cells for fluorodeoxyglucose (FDG) has led to the concept of labeling leukocytes with [(18F)]FDG ex vivo. This concept combines cell-bound radionuclide trafficking from the blood pool compartment to the lesion with the high resolution of positron emission tomography (PET) imaging. The further benefits of having a correlated anatomical map by implementing the acquisition on a hybrid PET/computed tomography (CT) device are obvious. The feasibility and the potential value of leukocyte PET(/CT) imaging in infection have been demonstrated. The available data suggest a high accuracy of the method. Still, leukocyte PET/CT should not be considered as the endpoint of infection imaging, since it only meets a part of the criteria of the ideal infection imaging agent. However, the common clinical need for specific detection of infection with anatomical precision, the availability of the components necessary for performing leukocyte PET/CT, their lack of toxicity or adverse effects and the absence of more superior tracers on the commercial market make it worthwhile to further investigate leukocyte PET/CT imaging in larger prospective series. The advantages of leukocyte PET/CT over the more conventional nuclear medicine and radiological methods makes this imaging tool likely to be useful in certain subsets of infected patients.
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