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OtherClinical Investigations (Human)

Initial studies with [11C]vorozole positron emission tomography detect over-expression of intra-tumoral aromatase in breast cancer

Anat Biegon, Kenneth R. Shroyer, Dinko Franceschi, Jasbeer Dhawan, Mouna Tahmi, Deborah Pareto, Patrick Bonilla, Krystal Airola and Jules Cohen
Journal of Nuclear Medicine November 2019, jnumed.119.231589; DOI: https://doi.org/10.2967/jnumed.119.231589
Anat Biegon
1 Stony Brook University School of Medicine, United States;
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Kenneth R. Shroyer
1 Stony Brook University School of Medicine, United States;
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Dinko Franceschi
2 Stony Brook University, United States;
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Jasbeer Dhawan
1 Stony Brook University School of Medicine, United States;
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Mouna Tahmi
1 Stony Brook University School of Medicine, United States;
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Deborah Pareto
3 Val d'Hebron Hospital, Spain;
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Patrick Bonilla
4 Nassau University Medical Center
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Krystal Airola
1 Stony Brook University School of Medicine, United States;
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Jules Cohen
1 Stony Brook University School of Medicine, United States;
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Abstract

Introduction: Aromatase inhibitors are the mainstay of hormonal therapy in estrogen receptor positive, postmenopausal breast cancer, although response rate is just over 50%. The goal of the present study was to validate and optimize positron emission tomography (PET) with 11C-vorozole for measuring aromatase expression in postmenopausal breast cancer. Methods: Ten newly diagnosed, postmenopausal women with biopsy confirmed breast cancer were administered 11C-vorozole intravenously and PET emission data collected between 40 – 90 minutes post-injection. Tracer injection and scanning were repeated 2 hours after ingestion of 2.5mg letrozole p.o. Mean and maximal standard uptake values and ratios to non-tumor tissue (SUVs, SUVRs) were calculated for tumor and non-tumor regions at baseline and after letrozole. Biopsy specimens from the same tumors were stained for aromatase using immunohistochemistry and evaluated for stain intensity and the percentage of immune-positive cells. Results: Seven of the 10 women (70%) demonstrated increased focal uptake of tracer (SUVR>1.1) coinciding with the mammographic location of the lesion. The other 3 women (30%) did not show increased uptake in the tumor (SUVR <1.0). All of the cases with SUVR above 1.1 had SUVs above 2.4 and there was no overlap in SUV between the two groups, with mean SUV in tumors overexpressing aromatase (SUVR>1.1) ranging from 2.47 to 13.6, while tumors not overexpressing aromatase (SUVR<1) ranged from 0.8 to 1.8. Pretreatment with letrozole reduced tracer uptake in the majority of subjects; although the %blocking varied across and within tumors. Tumors with high SUV in vivo also showed high staining intensity on IHC. Conclusion: PET with 11C-vorozole is a useful technique for measuring aromatase expression in individual breast lesions, enabling a non-invasive quantitative measurement of baseline and post-treatment aromatase availability in primary tumors and metastatic lesions.

  • Molecular Imaging
  • Oncology: Breast
  • PET/CT
  • Aromatase
  • Breast cancer
  • Cyp19A
  • PET
  • Vorozole
  • Copyright © 2019 by the Society of Nuclear Medicine and Molecular Imaging, Inc.
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Journal of Nuclear Medicine: 66 (5)
Journal of Nuclear Medicine
Vol. 66, Issue 5
May 1, 2025
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Initial studies with [11C]vorozole positron emission tomography detect over-expression of intra-tumoral aromatase in breast cancer
Anat Biegon, Kenneth R. Shroyer, Dinko Franceschi, Jasbeer Dhawan, Mouna Tahmi, Deborah Pareto, Patrick Bonilla, Krystal Airola, Jules Cohen
Journal of Nuclear Medicine Nov 2019, jnumed.119.231589; DOI: 10.2967/jnumed.119.231589

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Initial studies with [11C]vorozole positron emission tomography detect over-expression of intra-tumoral aromatase in breast cancer
Anat Biegon, Kenneth R. Shroyer, Dinko Franceschi, Jasbeer Dhawan, Mouna Tahmi, Deborah Pareto, Patrick Bonilla, Krystal Airola, Jules Cohen
Journal of Nuclear Medicine Nov 2019, jnumed.119.231589; DOI: 10.2967/jnumed.119.231589
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Keywords

  • Molecular imaging
  • Oncology: Breast
  • PET/CT
  • Aromatase
  • breast cancer
  • Cyp19A
  • PET
  • Vorozole
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