Oster_2024_J.Nucl.Med_65_1217

Reference

Title : The Role of Fibroblast Activation Protein in Glioblastoma and Gliosarcoma: A Comparison of Tissue, (68)Ga-FAPI-46 PET Data, and Survival Data - Oster_2024_J.Nucl.Med_65_1217
Author(s) : Oster C , Kessler L , Blau T , Keyvani K , Pabst KM , Fendler WP , Fragoso Costa P , Lazaridis L , Schmidt T , Feldheim J , Pierscianek D , Schildhaus HU , Sure U , Ahmadipour Y , Kleinschnitz C , Guberina N , Stuschke M , Deuschl C , Scheffler B , Herrmann K , Kebir S , Glas M
Ref : J Nucl Med , 65 :1217 , 2024
Abstract :

Despite their unique histologic features, gliosarcomas belong to the group of glioblastomas and are treated according to the same standards. Fibroblast activation protein (FAP) is a component of a tumor-specific subpopulation of fibroblasts that plays a critical role in tumor growth and invasion. Some case studies suggest an elevated expression of FAP in glioblastoma and a particularly strong expression in gliosarcoma attributed to traits of predominant mesenchymal differentiation. However, the prognostic impact of FAP and its diagnostic and therapeutic potential remain unclear. Here, we investigate the clinical relevance of FAP expression in gliosarcoma and glioblastoma and how it correlates with (68)Ga-FAP inhibitor (FAPI)-46 PET uptake. Methods: Patients diagnosed with gliosarcoma or glioblastoma without sarcomatous differentiation with an overall survival of less than 2.5 y were enrolled. Histologic examination included immunohistochemistry and semiquantitative scoring of FAP (0-3, with higher values indicating stronger expression). Additionally, (68)Ga-FAPI-46 PET scans were performed in a subset of glioblastomas without sarcomatous differentiation patients. The clinical SUVs were correlated with FAP expression levels in surgically derived tumor tissue and relevant prognostic factors. Results: Of the 61 patients who were enrolled, 13 of them had gliosarcoma. Immunohistochemistry revealed significantly more FAP in gliosarcomas than in glioblastomas without sarcomatous differentiation of tumor tissue (P < 0.0001). In the latter, FAP expression was confined to the perivascular space, whereas neoplastic cells additionally expressed FAP in gliosarcoma. A significant correlation of immunohistochemical FAP with SUV(mean) and SUV(peak) of (68)Ga-FAPI-46 PET indicates that clinical tracer uptake represents FAP expression of the tumor. Although gliosarcomas express higher levels of FAP than do glioblastomas without sarcomatous differentiation, overall survival does not significantly differ between the groups. Conclusion: The analysis reveals a significant correlation between SUV(mean) and SUV(peak) in (68)Ga-FAPI-46 PET and immunohistochemical FAP expression. This study indicates that FAP expression is much more abundant in the gliosarcoma subgroup of glioblastomas. This could open not only a diagnostic but also a therapeutic gap, since FAP could be explored as a theranostic target to enhance survival in a distinct subgroup of high-risk brain tumor patients with poor survival prognosis.

PubMedSearch : Oster_2024_J.Nucl.Med_65_1217
PubMedID: 38960714

Related information

Inhibitor FAPI-46

Citations formats

Oster C, Kessler L, Blau T, Keyvani K, Pabst KM, Fendler WP, Fragoso Costa P, Lazaridis L, Schmidt T, Feldheim J, Pierscianek D, Schildhaus HU, Sure U, Ahmadipour Y, Kleinschnitz C, Guberina N, Stuschke M, Deuschl C, Scheffler B, Herrmann K, Kebir S, Glas M (2024)
The Role of Fibroblast Activation Protein in Glioblastoma and Gliosarcoma: A Comparison of Tissue, (68)Ga-FAPI-46 PET Data, and Survival Data
J Nucl Med 65 :1217

Oster C, Kessler L, Blau T, Keyvani K, Pabst KM, Fendler WP, Fragoso Costa P, Lazaridis L, Schmidt T, Feldheim J, Pierscianek D, Schildhaus HU, Sure U, Ahmadipour Y, Kleinschnitz C, Guberina N, Stuschke M, Deuschl C, Scheffler B, Herrmann K, Kebir S, Glas M (2024)
J Nucl Med 65 :1217