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Published on: July 21, 2018
Metabolic imaging allows early prediction of response to vandetanib
Martin A Walter1, Matthias R Benz, Isabel J Hildebrandt
1Institute of Nuclear Medicine, University Hospital, Bern, Switzerland. m.a.walter@gmx.net
Unlabelled:
The RET (rearranged-during-transfection protein) protooncogene triggers multiple intracellular signaling cascades regulating cell cycle progression and cellular metabolism. We therefore hypothesized that metabolic imaging could allow noninvasive detection of response to the RET inhibitor vandetanib in vivo.
Methods:
The effects of vandetanib treatment on the full-genome expression and the metabolic profile were analyzed in the human medullary thyroid cancer cell line TT. In vitro, transcriptional changes of pathways regulating cell cycle progression and glucose, dopa, and thymidine metabolism were correlated to the results of cell cycle analysis and the uptake of (3)H-deoxyglucose, (3)H-3,4-dihydroxy-L-phenylalanine, and (3)H-thymidine under vandetanib treatment. In vivo, the tumor metabolism under vandetanib was monitored by small-animal PET of tumor-bearing mice.
Results:
Vandetanib treatment resulted in the transcriptional downregulation of various effector pathways with consecutive downregulation of cyclin expression and a G(0)/G(1) arrest. In vitro, vandetanib treatment resulted in the decreased expression of genes regulating glucose, 3,4-dihydroxy-L-phenylalanine, and thymidine metabolism, with a subsequent reduction in the functional activity of the corresponding pathways. In vivo, metabolic imaging with PET was able to assess changes in the tumoral glucose metabolism profile as early as 3 d after initiation of vandetanib treatment.
Conclusion:
We describe a metabolic imaging approach for the noninvasive detection of successful vandetanib treatment. Our results suggest that PET may be useful for identifying patients who respond to vandetanib early in the course of treatment.
Insights
Metabolic imaging using PET can noninvasively detect early responses to vandetanib treatment in rearranged-during-transfection (RET) cancers. This approach helps identify patients responding to vandetanib therapy quickly.
Area of Science:
- Oncology
- Molecular Biology
- Medical Imaging
Background:
- The rearranged-during-transfection (RET) protooncogene is crucial in cell cycle and metabolism.
- RET signaling pathways are implicated in various cancers, including medullary thyroid cancer.
- Targeted therapies like vandetanib aim to inhibit RET signaling.
Observation:
- Vandetanib treatment affects gene expression and metabolic profiles in medullary thyroid cancer cells.
- In vitro studies correlated transcriptional changes with metabolic activity and cell cycle arrest.
- In vivo studies utilized small-animal Positron Emission Tomography (PET) to monitor tumor metabolism.
Findings:
- Vandetanib downregulates effector pathways, leading to cell cycle arrest (G0/G1).
- Metabolic activity related to glucose, dopa, and thymidine metabolism decreased following vandetanib treatment.
- PET imaging detected significant changes in tumor glucose metabolism within 3 days of vandetanib initiation.
Implications:
- Metabolic imaging offers a noninvasive method to assess vandetanib treatment efficacy.
- PET scans can provide early identification of patient response to vandetanib.
- This approach may optimize treatment strategies for RET-driven cancers.
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