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Isolated Pancreatic Islet Treatment and Apoptosis Measurement
Published on: May 2, 2025
Comparison of radiolabeled isatin analogs for imaging apoptosis with positron emission tomography
Delphine L Chen1, Dong Zhou, Wenhua Chu
1Mallinckrodt Institute of Radiology, Washington University School of Medicine, St. Louis, MO 63110, USA.
Introduction:
Caspase-3 is one of the executioner caspases activated as a result of apoptosis. Radiolabeled isatins bind to caspase-3 with high affinity and are potential tracers for use with positron emission tomography to image apoptosis. We compared the ability of two novel radiolabeled isatins, [18F]WC-IV-3 and [11C]WC-98, to detect caspase-3 activation in a rat model of cycloheximide-induced liver injury.
Methods:
Male Sprague-Dawley rats were treated with cycloheximide and then imaged with microPET 3 h later with [18F]WC-IV-3 and [11C]WC-98. Biodistribution studies were also performed simultaneously, with caspase-3 activation verified by fluorometric enzyme assay and Western blots.
Results:
MicroPET imaging studies demonstrated similar behavior of both tracers but with a lower maximum peak with [11C]WC-98 than with [18F]WC-IV-3. Biodistribution studies demonstrated increased uptake of both tracers in the liver and spleen, but this was statistically significant only in the liver with both compounds. The level of [18F]WC-IV-3 uptake appeared to correlate roughly with rates of caspase-3 activation by the enzyme assay, but the magnitude of difference between treated and control groups was lower than that observed in previously published data with [18F]WC-II-89, another radiolabeled isatin analog. Activation was also confirmed in the liver and spleen but not in fat by Western blot.
Conclusion:
[18F]WC-IV-3 uptake appears to correlate with increased caspase-3 enzyme activity, but the dynamic range of uptake of these two tracers appears to be less than that seen with [18F]WC-II-89. Studies are ongoing to verify these results in other animal models of apoptosis.
Insights
Two novel radiolabeled isatins, [18F]WC-IV-3 and [11C]WC-98, were evaluated for imaging caspase-3 activation in rats. While [18F]WC-IV-3 showed correlation with caspase-3 activity, its dynamic range was less than a previous analog.
Area of Science:
- Biomedical Imaging
- Molecular Imaging
- Radiochemistry
Background:
- Caspase-3 is a key executioner caspase in apoptosis.
- Radiolabeled isatins show high affinity for caspase-3, enabling potential PET imaging of apoptosis.
- Novel tracers [18F]WC-IV-3 and [11C]WC-98 were developed.
Purpose of the Study:
- To compare the efficacy of [18F]WC-IV-3 and [11C]WC-98 in detecting caspase-3 activation.
- To assess these tracers in a rat model of cycloheximide-induced liver injury.
Main Methods:
- Male Sprague-Dawley rats were induced with liver injury using cycloheximide.
- MicroPET imaging was performed using [18F]WC-IV-3 and [11C]WC-98.
- Biodistribution studies, fluorometric enzyme assays, and Western blots were conducted to verify caspase-3 activation.
Main Results:
- Both tracers exhibited similar imaging behavior, with [18F]WC-IV-3 showing a higher peak signal than [11C]WC-98.
- [18F]WC-IV-3 uptake in the liver correlated with caspase-3 activation, though the dynamic range was narrower than previously reported [18F]WC-II-89.
- Increased tracer uptake was observed in the liver and spleen, with statistical significance in the liver.
Conclusions:
- [18F]WC-IV-3 uptake correlates with caspase-3 enzyme activity.
- The dynamic range of [18F]WC-IV-3 and [11C]WC-98 is less than that of [18F]WC-II-89.
- Further studies in other apoptosis models are warranted to validate these findings.
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