Preclinical evaluation of FAP-2286 for fibroblast activation protein targeted radionuclide imaging and therapy.

Zboralski, Dirk; Hoehne, Aileen; Bredenbeck, Anne; Schumann, Anne; Nguyen, Minh; Schneider, Eberhard; Ungewiss, Jan; Paschke, Matthias et al. · Eur J Nucl Med Mol Imaging · 2022

basic_science · Level V

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Abstract

Fibroblast activation protein (FAP) is a membrane-bound protease that has limited expression in normal adult tissues but is highly expressed in the tumor microenvironment of many solid cancers. FAP-2286 is a FAP-binding peptide coupled to a radionuclide chelator that is currently being investigated in patients as an imaging and therapeutic agent. The potency, selectivity, and efficacy of FAP-2286 were evaluated in preclinical studies. FAP expression analysis was performed by immunohistochemistry and autoradiography on primary human cancer specimens. FAP-2286 was assessed in biochemical and cellular assays and in in vivo imaging and efficacy studies, and was further evaluated against FAPI-46, a small molecule-based FAP-targeting agent. Immunohistochemistry confirmed elevated levels of FAP expression in multiple tumor types including pancreatic, breast, and sarcoma, which correlated with FAP binding by FAP-2286 autoradiography. FAP-2286 and its metal complexes demonstrated high affinity to FAP recombinant protein and cell surface FAP expressed on fibroblasts. Biodistribution studies in mice showed rapid and persistent uptake of <sup>68</sup>Ga-FAP-2286, <sup>111</sup>In-FAP-2286, and <sup>177</sup>Lu-FAP-2286 in FAP-positive tumors, with renal clearance and minimal uptake in normal tissues. <sup>177</sup>Lu-FAP-2286 exhibited antitumor activity in FAP-expressing HEK293 tumors and sarcoma patient-derived xenografts, with no significant weight loss. In addition, FAP-2286 maintained longer tumor retention and suppression in comparison to FAPI-46. In preclinical models, radiolabeled FAP-2286 demonstrated high tumor uptake and retention, as well as potent efficacy in FAP-positive tumors. These results support clinical development of <sup>68</sup>Ga-FAP-2286 for imaging and <sup>177</sup>Lu-FAP-2286 for therapeutic use in a broad spectrum of FAP-positive tumors.

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