Targeted alpha therapy of mCRPC: Dosimetry estimate of <sup>213</sup>Bismuth-PSMA-617.

Kratochwil, Clemens; Schmidt, Karl; Afshar-Oromieh, Ali; Bruchertseifer, Frank; Rathke, Hendrik; Morgenstern, Alfred; Haberkorn, Uwe; Giesel, Frederik L · Eur J Nucl Med Mol Imaging · 2018

case_series · Level IV

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Abstract

PSMA-617 is a small molecule targeting the prostate-specific membrane antigen (PSMA). In this work, we estimate the radiation dosimetry for this ligand labeled with the alpha-emitter <sup>213</sup>Bi. Three patients with metastatic prostate cancer underwent PET scans 0.1 h, 1 h, 2 h, 3 h, 4 h and 5 h after injection of <sup>68</sup>Ga-PSMA-617. Source organs were kidneys, liver, spleen, salivary glands, bladder, red marrow and representative tumor lesions. The imaging nuclide <sup>68</sup>Ga was extrapolated to the half-life of <sup>213</sup>Bi. The residence times of <sup>213</sup>Bi were forwarded to the instable daughter nuclides. OLINDA was used for dosimetry calculation. Results are discussed in comparison to literature data for <sup>225</sup>Ac-PSMA-617. Assuming a relative biological effectiveness of 5 for alpha radiation, the dosimetry estimate revealed equivalent doses of mean 8.1 Sv <sub>RBE5</sub>/GBq for salivary glands, 8.1 Sv <sub>RBE5</sub>/GBq for kidneys and 0.52 Sv <sub>RBE5</sub>/GBq for red marrow. Liver (1.2 Sv <sub>RBE5</sub>/GBq), spleen (1.4 Sv <sub>RBE5</sub>/GBq), bladder (0.28 Sv <sub>RBE5</sub>/GBq) and other organs (0.26 Sv<sub>RBE5</sub>/GBq) were not dose-limiting. The effective dose is 0.56 Sv <sub>RBE5</sub>/GBq. Tumor lesions were in the range 3.2-9.0 Sv<sub>RBE5</sub>/GBq (median 7.6 Sv<sub>RBE5</sub>/GBq). Kidneys would limit the cumulative treatment activity to 3.7 GBq; red marrow might limit the maximum single fraction to 2 GBq. Despite promising results, the therapeutic index was inferior compared to <sup>225</sup>Ac-PSMA-617. Dosimetry of <sup>213</sup>Bi-PSMA-617 is in a range traditionally considered reasonable for clinical application. Nevertheless, compared to <sup>225</sup>Ac-PSMA-617, it suffers from higher perfusion-dependent off-target radiation and a longer biological half-life of PSMA-617 in dose-limiting organs than the physical half-life of <sup>213</sup>Bi, rendering this nuclide as a second choice radiolabel for targeted alpha therapy of prostate cancer.

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