Translational Theranostics in Glioblastoma: FAPI-46 as a Precision Medicine Tool.
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- Also identified by DOI 10.2967/jnumed.125.271759.
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Abstract
Glioblastoma represents the most lethal form of brain cancer, characterized by a 5-y survival rate of approximately 4%. Fibroblast activation protein (FAP), expressed within both the tumor microenvironment and glioblastoma cells, has been identified as a promising therapeutic target. This study explores the potential of FAP-targeted molecular probes as theranostic agents for glioblastoma. <b>Methods:</b> Human U-87 MG and murine SB28 glioblastoma-derived cell lines were used to establish immunodeficient and immunocompetent models, respectively. FAP inhibitor (FAPI)-46 was radiolabeled with <sup>68</sup>Ga for imaging and <sup>225</sup>Ac or <sup>177</sup>Lu for therapy. Tumor uptake, therapeutic efficacy, immunomodulatory effects, and survival were evaluated for FAPI-46 alone or in combination with temozolomide in preclinical studies. [<sup>68</sup>Ga]Ga-FAPI-46 tumor uptake was also evaluated in patients. <b>Results:</b> In subcutaneous xenografts, [<sup>68</sup>Ga]Ga-FAPI-46 exhibited high tumor uptake with minimal background signal. In the immunocompromised model, a single dose of [<sup>225</sup>Ac]Ac-FAPI-46 combined with temozolomide was sufficient to increase median survival, whereas in the immunocompetent model, 3 consecutive daily doses were required to achieve a significant survival benefit. [<sup>177</sup>Lu]Lu-FAPI-46 demonstrated lower therapeutic efficacy, as a monotherapy or in combination with temozolomide, than did [<sup>225</sup>Ac]Ac-FAPI-46. Immunomodulatory effects, assessed via flow cytometry, were insufficient to overcome the immunologically "cold" glioblastoma tumor microenvironment. In orthotopic xenografts and patients, [<sup>68</sup>Ga]Ga-FAPI-46 showed low uptake, indicating limited blood-brain barrier penetration and resulting in tumor concentrations likely too low for therapeutic efficacy. <b>Conclusion:</b> FAPI-46 demonstrates significant potential as a theranostic agent for glioblastoma in peripheral models. However, its inability to cross the blood-brain barrier in orthotopic models highlights the need for future studies to improve its clinical applicability.