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Updated: May 10, 2026
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Visualization and Quantification of Brown and Beige Adipose Tissues in Mice using [18F]FDG Micro-PET/MR Imaging
Published on: July 1, 2021
Comparative analysis of folate derived PET imaging agents with [(18)F]-2-fluoro-2-deoxy-d-glucose using a rodent
Sumith A Kularatne1, Marie-José Bélanger, Xiangjun Meng
1Department of Chemistry, Purdue University , 560 Oval Drive, West Lafayette, Indiana 47907, United States.
Abstract:
Activated macrophages play a significant role in initiation and progression of inflammatory diseases and may serve as the basis for the development of targeted diagnostic methods for imaging sites of inflammation. Folate receptor beta (FR-β) is differentially expressed on activated macrophages associated with inflammatory disease states yet is absent in either quiescent or resting macrophages. Because folate binds with high affinity to FR-β, development of folate directed imaging agents has proceeded rapidly in the past decade. However, reports of PET based imaging agents for use in inflammatory conditions remain limited. To investigate whether FR-β expressing macrophages could be exploited for PET based inflammatory imaging, two separate folate-targeted PET imaging agents were developed, 4-[(18)F]-fluorophenylfolate and [(68)Ga]-DOTA-folate, and their ability to target activated macrophages were examined in a rodent inflammatory paw model. We further compared inflamed tissue uptake with 2-[(18)F]fluoro-2-deoxy-d-glucose ([(18)F]-FDG). microPET analysis demonstrated that both folate-targeted PET tracers had higher uptake in the inflamed paw compared to the control paw. When these radiotracers were compared to [(18)F]-FDG, both folate PET tracers had a higher signal-to-noise ratio (SNR) than [(18)F]-FDG, suggesting that folate tracers may be superior to [(18)F]-FDG in detecting diseases with an inflammatory component. Moreover, both folate-PET imaging agents also bind to FR-α which is overexpressed on multiple human cancers. Therefore, these folate derived PET tracers may also find use for localizing and staging FR(+) cancers, monitoring response to therapy, and for selecting patients for tandem folate-targeted therapies.
Insights
New folate-targeted PET imaging agents show promise for detecting inflammation and cancer. These agents demonstrate higher uptake in inflamed tissues and improved signal-to-noise ratios compared to standard imaging methods.
Area of Science:
- Nuclear Medicine
- Radiochemistry
- Immunology
Background:
- Activated macrophages are key in inflammatory diseases.
- Folate receptor beta (FR-β) is specifically expressed on activated macrophages.
- Targeting FR-β offers a potential diagnostic strategy for inflammation.
Purpose of the Study:
- To develop and evaluate novel folate-targeted PET imaging agents for activated macrophages.
- To compare the efficacy of these agents against standard PET imaging tracers in an inflammatory model.
Main Methods:
- Development of two folate-targeted PET tracers: 4-[(18)F]-fluorophenylfolate and [(68)Ga]-DOTA-folate.
- Evaluation in a rodent inflammatory paw model using microPET imaging.
- Comparison of tracer uptake with 2-[(18)F]fluoro-2-deoxy-d-glucose ([(18)F]-FDG).
Main Results:
- Both folate-PET tracers showed higher uptake in inflamed paws compared to control paws.
- Folate tracers exhibited a superior signal-to-noise ratio (SNR) over [(18)F]-FDG.
- The developed agents also bind to FR-α, relevant for cancer imaging.
Conclusions:
- Folate-targeted PET imaging agents are effective for visualizing activated macrophages in inflammatory conditions.
- These tracers may offer advantages over [(18)F]-FDG for inflammatory disease detection.
- The dual-targeting capability (FR-β and FR-α) broadens their application to include cancer imaging and therapy selection.
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