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Methods for Evaluating the Role of c-Fos and Dusp1 in Oncogene Dependence
Published on: January 7, 2019
Preclinical evaluation of targeted therapies in Sdhb-mutated tumors
Sophie Moog1, Betty Salgues2,3, Yasmine Braik-Djellas1
1Université de Paris Cité, PARCC INSERM UMR970, Paris, France.
Abstract:
Therapies for metastatic SDHB-dependent pheochromocytoma and paraganglioma (PPGL) are limited and poorly efficient. New targeted therapies and identification of early non-invasive biomarkers of response are thus urgently needed for these patients. We characterized an in vivo allograft model of spontaneously immortalized murine chromaffin cells (imCC) with inactivation of the Sdhb gene by dynamic contrast-enhanced MRI (DCE-MRI) and 18FDG-PET. We evaluated the response to several therapies: IACS-010759 (mitochondrial respiratory chain complex I inhibitor), sunitinib (tyrosine kinase inhibitor with anti-angiogenic activity), talazoparib (poly ADP ribose polymerase (PARP) inhibitor) combined or not to temozolomide (alkylating agent), pharmacological inhibitors of HIF2a (PT2385 and PT2977 (belzutifan)) and molecular inactivation of HIF2a (imCC Sdhb-/- shHIF2a). Multimodal imaging was performed, including magnetic resonance spectroscopy (1H-MRS) to monitor the level of succinate in vivo. The allografted model of Sdhb-/- imCC reflected SDHB-deficient tumors, with increased angiogenesis and a particular avidity for 18FDG. After 14 days of treatment, IACS-010759, sunitinib and talazoparib at high doses allowed a significant reduction of the tumor volumes. In contrast to the tumor growth inhibition observed in Sdhb-/- shHIF2a imCC tumors, pharmacological inhibitors of HIF2a (PT2385 and belzutifan) showed no antitumor action in this model, alone or in combination with sunitinib. 1H-MRS, but not DCE-MRI, enabled the monitoring response to sunitinib, which was the best treatment in this study, promoting a decrease in succinate levels detected in vivo. This study paves the way for new therapeutic options and reveals a potential new early biomarker of response to treatment in SDHB-dependent PPGL.
Insights
New therapies targeting SDHB-deficient pheochromocytoma and paraganglioma (PPGL) are crucial. Sunitinib showed promise as a treatment, with 1H-MRS identifying early response by monitoring succinate levels.
Area of Science:
- Oncology
- Biochemistry
- Medical Imaging
Background:
- Metastatic SDHB-dependent pheochromocytoma and paraganglioma (PPGL) have limited and inefficient treatment options.
- There is an urgent need for novel targeted therapies and early non-invasive biomarkers for SDHB-deficient PPGL patients.
- SDHB deficiency leads to increased angiogenesis and metabolic alterations in PPGL.
Purpose of the Study:
- To characterize an in vivo allograft model of SDHB-deficient PPGL using multimodal imaging.
- To evaluate the efficacy of various targeted therapies, including mitochondrial inhibitors, tyrosine kinase inhibitors, PARP inhibitors, and HIF2a inhibitors.
- To identify potential early non-invasive biomarkers for treatment response.
Main Methods:
- Development of an in vivo allograft model using Sdhb-deficient murine chromaffin cells (imCC).
- Dynamic contrast-enhanced MRI (DCE-MRI), 18FDG-PET, and 1H-magnetic resonance spectroscopy (1H-MRS) for in vivo monitoring.
- Evaluation of therapies: IACS-010759, sunitinib, talazoparib +/- temozolomide, and HIF2a inhibitors (PT2385, belzutifan).
Main Results:
- The Sdhb-/- imCC allograft model accurately reflected SDHB-deficient tumors with increased angiogenesis and 18FDG avidity.
- IACS-010759, sunitinib, and high-dose talazoparib significantly reduced tumor volumes.
- Sunitinib demonstrated the best therapeutic outcome, decreasing in vivo succinate levels, which were detectable by 1H-MRS but not DCE-MRI.
Conclusions:
- Targeted therapies like sunitinib show significant potential for treating SDHB-deficient PPGL.
- 1H-MRS is a viable tool for monitoring treatment response by tracking succinate levels.
- This study provides a foundation for new therapeutic strategies and early response biomarkers in SDHB-dependent PPGL.
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