Unlabelled: Patients with von Hippel-Lindau disease (VHL) are at risk to develop multiple tumors. The growth of lesions is unpredictable, and regular surveillance is critical for early treatment to control local damage. Vascular endothelial growth factor A (VEGF-A) produced locally is supposed to play an important role in development of disease manifestations and is a target for antiangiogenic therapy with the monoclonal antibody bevacizumab. We aimed to assess whether VHL manifestations can be visualized with (89)Zr-bevacizumab PET and to explore whether (89)Zr-bevacizumab PET can differentiate progressive from nonprogressive lesions.
Methods: VHL patients with at least 1 measurable hemangioblastoma were eligible. (89)Zr-bevacizumab (37 MBq) was administered intravenously 4 d before the scan. Maximum standardized uptake values were calculated. PET scans were fused with routine MRI of the central nervous system and abdominal MRI or CT. Progressive lesions were defined as new lesions, lesions that became symptomatic, and lesions ≥ 10 mm that increased ≥ 10% and ≥ 4 mm on repeated anatomic imaging within 12 mo.
Results: Twenty-two patients were enrolled. At baseline, anatomic imaging showed 311 lesions. (89)Zr-bevacizumab PET visualized 59 VHL manifestations, 0-17 per patient. The median of maximum standardized uptake values was 8.5 (range, 1.3-35.8). The detection rate for lesions ≥ 10 mm was 30.8%. Seven additional hotspots without substrate on baseline anatomic imaging were found; 2 were also detected with anatomic imaging during follow-up. Nine of 25 progressive lesions were visible on PET and 27 of 175 nonprogressive lesions, corresponding to a positive predictive value of 25% and a negative predictive value of 90%. SUVmax was similar in progressive and nonprogressive lesions (median, 4.8; range, 0.9-8.9 vs. median, 6.7; range, 1.3-35.8, P = 0.14).
Conclusion: VHL manifestations can be visualized with (89)Zr-bevacizumab PET with a striking heterogeneity in tracer accumulation. (89)Zr-bevacizumab uptake does not predict progression within 12 mo. In one third of the lesions, the drug target VEGF is available and accessible. (89)Zr-bevacizumab PET might offer a tool to select VHL patients for anti-VEGF therapy.
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http://dx.doi.org/10.2967/jnumed.115.167643 | DOI Listing |
Appl Radiat Isot
August 2024
Radiation Application Research School, Nuclear Science and Technology Research Institute (NSTRI), Tehran, 14155-1339, Iran. Electronic address:
This study aimed to carry out the preclinical studies of [Zr]Zr-DFO-Bevacizumab. The radiolabeled compound was prepared with radiochemical purity >99% (ITLC), and a specific activity of 74 GBq/g. Cellular studies indicated the great capability of [Zr]Zr-DFO-Bevacizumab for binding to SKOV3 cell lines.
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May 2019
Department of Nuclear Medicine & PET Centre, Aarhus University Hospital, Denmark.
Purpose Of Review: Worldwide, over 400 000 new cases of kidney cancer were diagnosed and over 175 000 deaths anticipated in 2018. It is ranked as the 14th most common cancer in women and 9th most common in men. Imaging is important for initial detection, staging, and monitoring to assist treatment planning, but conventional anatomic imaging is limited.
View Article and Find Full Text PDFJ Nucl Med
May 2019
Russell H. Morgan Department of Radiology and Radiological Science, Johns Hopkins University School of Medicine, Baltimore, Maryland
Glioblastoma multiforme (GBM) is the most aggressive and common type of brain cancer. Five-year survival rates are below 12%, even with the most aggressive trimodal therapies. Poor blood-brain barrier (BBB) permeability of therapeutics is a major obstacle to efficacy.
View Article and Find Full Text PDFJ Nucl Med
April 2018
Department of Pathology, VUmc, Amsterdam, The Netherlands.
Inadequate tumor uptake of the vascular endothelial growth factor antibody bevacizumab could explain lack of effect in diffuse intrinsic pontine glioma. By combining data from a PET imaging study using Zr-labeled bevacizumab and an autopsy study, a 1-on-1 analysis of multiregional in vivo and ex vivo Zr-bevacizumab uptake, tumor histology, and vascular morphology in a diffuse intrinsic pontine glioma patient was performed. In vivo Zr-bevacizumab measurements showed heterogeneity between lesions.
View Article and Find Full Text PDFJ Nucl Med
May 2017
Pediatric Oncology/Hematology, Department of Pediatrics, VU University Medical Center, Amsterdam, The Netherlands; and.
Predictive tools for guiding therapy in children with brain tumors are urgently needed. In this first molecular drug imaging study in children, we investigated whether bevacizumab can reach tumors in children with diffuse intrinsic pontine glioma (DIPG) by measuring the tumor uptake of Zr-labeled bevacizumab by PET. In addition, we evaluated the safety of the procedure in children and determined the optimal time for imaging.
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