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Evaluation of 209At as a theranostic isotope for 209At-radiopharmaceutical development using high-energy SPECT.
Crawford, J R; Robertson, A K H; Yang, H; Rodríguez-Rodríguez, C; Esquinas, P L; Kunz, P; Blinder, S; Sossi, V; Schaffer, P; Ruth, T J.
Affiliation
  • Crawford JR; Life Sciences Division, TRIUMF, 4004 Wesbrook Mall, Vancouver BC, V6T 2A3, Canada. Molecular Oncology, BC Cancer Research Centre, 675 W 10th Ave, Vancouver BC, V5Z 1L3, Canada. Department of Physics and Astronomy, University of Victoria, PO Box 1700 STN CSC, Victoria BC, V8W 2Y2, Canada. Equal contributors.
Phys Med Biol ; 63(4): 045025, 2018 02 21.
Article in En | MEDLINE | ID: mdl-29466250
ABSTRACT
The development of alpha-emitting radiopharmaceuticals using 211At requires quantitative determination of the time-dependent nature of the 211At biodistribution. However, imaging-based methods for acquiring this information with 211At have not found wide-spread use because of its low abundance of decay emissions suitable for external detection. In this publication we demonstrate the theranostic abilities of the 211At/209At isotope pair and present the first-ever 209At SPECT images. The VECTor microSPECT/PET/CT scanner was used to image 209At with a collimator suitable for the 511 keV annihilation photons of PET isotopes. Data from distinct photopeaks of the 209At energy spectrum (195 keV (22.6%), 239 keV (12.4 %), 545 keV (91.0 %), a combined 782/790 keV peak (147 %), and 209Po x-rays (139.0 %)) were independently evaluated for use in image reconstructions using Monte Carlo (GATE) simulations and phantom studies. 209At-imaging in vivo was demonstrated in a healthy mouse injected with 10 MBq of free [209At]astatide. Image-based measurements of 209At uptake in organs of interest-acquired in 5 min intervals-were compared to ex vivo gamma counter measurements of the same organs. Simulated and measured data indicated that-due to the large amount of scatter from high energy (>750 keV) gammas-reconstructed images using the x-ray peak outperformed those obtained from other peaks in terms of image uniformity and spatial resolution, determined to be <0.85 mm. 209At imaging using the x-ray peak revealed a biodistribution that matched the known distribution of free astatide, and in vivo image-based measurements of 209At uptake in organs of interest matched ex vivo measurements within 10%. We have acquired the first 209At SPECT images and demonstrated the ability of quantitative SPECT imaging with 209At to accurately determine astatine biodistributions with high spatial and temporal resolution.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Tomography, Emission-Computed, Single-Photon / Monte Carlo Method / Astatine / Phantoms, Imaging / Radiopharmaceuticals / Theranostic Nanomedicine Type of study: Evaluation_studies / Health_economic_evaluation Limits: Animals / Humans Language: En Journal: Phys Med Biol Year: 2018 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Tomography, Emission-Computed, Single-Photon / Monte Carlo Method / Astatine / Phantoms, Imaging / Radiopharmaceuticals / Theranostic Nanomedicine Type of study: Evaluation_studies / Health_economic_evaluation Limits: Animals / Humans Language: En Journal: Phys Med Biol Year: 2018 Document type: Article