First-in-Humans PET Imaging of Tissue Factor in Patients with Primary and Metastatic Cancers Using <sup>18</sup>F-labeled Active-Site Inhibited Factor VII (<sup>18</sup>F-ASIS): Potential as Companion Diagnostic.

Loft, Mathias; Christensen, Camilla; Clausen, Malene M; Carlsen, Esben A; Hansen, Carsten P; Kroman, Niels; Langer, Seppo W; Høgdall, Claus et al. · J Nucl Med · 2022

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Abstract

Tissue factor (TF) expression in cancers correlates with poor prognosis. Recently, the first TF-targeted therapy was approved by the U.S. Food and Drug Administration for cervical cancer. To unfold the potential of TF-targeted therapies, correct stratification and selection of patients eligible for treatments may become important for optimization of patient outcomes. TF-targeted PET imaging based on <sup>18</sup>F-radiolabeled active-site inhibited versions of the TF natural ligand coagulation factor VII (<sup>18</sup>F-ASIS) has in preclinical models convincingly demonstrated its use for noninvasive quantitative measurements of TF expression in tumor tissue. <sup>18</sup>F-ASIS PET imaging thus has the potential to act as a diagnostic companion for TF-targeted therapies in the clinical setting. <b>Methods:</b> In this first-in-humans trial, we included 10 cancer patients (4 pancreatic, 3 breast, 2 lung, and 1 cervical cancer) for <sup>18</sup>F-ASIS PET imaging. The mean and SD of administered <sup>18</sup>F-ASIS activity was 157 ± 35 MBq (range, 93-198 MBq). PET/CT was performed after 1, 2, and 4 h. The primary objectives were to establish the safety, biodistribution, pharmacokinetics, and dosimetry of <sup>18</sup>F-ASIS. Secondary objectives included quantitative measurements of SUVs in tumor tissue with PET and evaluation of the correlation (Pearson correlation) between tumor SUV<sub>max</sub> and ex vivo TF expression in tumor tissue. <b>Results:</b> Administration of <sup>18</sup>F-ASIS was safe, and no adverse events were observed. No clinically significant changes in vital signs, electrocardiograms, or blood parameters were observed after injection of <sup>18</sup>F-ASIS. Mean <sup>18</sup>F-ASIS plasma half-life was 3.2 ± 0.6 h, and the radiotracer was predominantly excreted in the urine. For injection activity of 200 MBq of <sup>18</sup>F-ASIS, effective whole-body dose was 4 mSv and no prohibitive organ-specific absorbed doses were found. Heterogeneous radiotracer uptake was observed across patients and within tumors. We found a trend of a positive correlation between tumor SUV<sub>max</sub> and ex vivo TF expression (<i>r</i> = 0.84, <i>P</i> = 0.08, <i>n</i> = 5). <b>Conclusion:</b> <sup>18</sup>F-ASIS can be safely administered to cancer patients for PET imaging of TF expression in tumors. The trial marks the first test of a TF-targeted PET radiotracer in humans (first-in-class). The findings represent important first steps toward clinical implementation of <sup>18</sup>F-ASIS PET imaging of TF expression.

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