Preclinical Evaluation of <sup>213</sup>Bi- and <sup>225</sup>Ac-Labeled Low-Molecular-Weight Compounds for Radiopharmaceutical Therapy of Prostate Cancer.

Banerjee, Sangeeta Ray; Lisok, Ala; Minn, Il; Josefsson, Anders; Kumar, Vivek; Brummet, Mary; Boinapally, Srikanth; Brayton, Cory et al. · J Nucl Med · 2021

basic_science · Level V

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Abstract

Prostate-specific membrane antigen (PSMA)-targeted radiopharmaceutical therapy is a new option for patients with advanced prostate cancer refractory to other treatments. Previously, we synthesized a β-particle-emitting low-molecular-weight compound, <sup>177</sup>Lu-L1 which demonstrated reduced off-target effects in a xenograft model of prostate cancer. Here, we leveraged that scaffold to synthesize α-particle-emitting analogs of L1, <sup>213</sup>Bi-L1 and <sup>225</sup>Ac-L1, to evaluate their safety and cell kill effect in PSMA-positive (+) xenograft models. <b>Methods:</b> The radiochemical synthesis, cell uptake, cell kill, and biodistribution of <sup>213</sup>Bi-L1 and <sup>225</sup>Ac-L1 were evaluated. The efficacy of <sup>225</sup>Ac-L1 was determined in human PSMA+ subcutaneous and micrometastatic models. Subacute toxicity at 8 wk and chronic toxicity at 1 y after administration were evaluated for <sup>225</sup>Ac-L1. The absorbed radiation dose of <sup>225</sup>Ac-L1 was determined using the biodistribution data and α-camera imaging. <b>Results:</b><sup>213</sup>Bi- and <sup>225</sup>Ac-L1 demonstrated specific cell uptake and cell kill in PSMA+ cells. The biodistribution of <sup>213</sup>Bi-L1 and <sup>225</sup>Ac-L1 revealed specific uptake of radioactivity within PSMA+ lesions. Treatment studies of <sup>225</sup>Ac-L1 demonstrated activity-dependent, specific inhibition of tumor growth in the PSMA+ flank tumor model. <sup>225</sup>Ac-L1 also showed an increased survival benefit in the micrometastatic model compared with <sup>177</sup>Lu-L1. Activity-escalated acute and chronic toxicity studies of <sup>225</sup>Ac-L1 revealed off-target radiotoxicity, mainly in kidneys and liver. The estimated maximum tolerated activity was about 1 MBq/kg. α-Camera imaging of <sup>225</sup>Ac-L1 revealed high renal cortical accumulation at 2 h followed by fast clearance at 24 h. <b>Conclusion:</b><sup>225</sup>Ac-L1 demonstrated activity-dependent efficacy with minimal treatment-related organ radiotoxicity. <sup>225</sup>Ac-L1 is a promising therapeutic for further clinical evaluation.

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