Fibroblast Activation Protein Expression in Sarcomas

Author:

Crane Jacquelyn N.1ORCID,Graham Danielle S.2,Mona Christine E.3,Nelson Scott D.45,Samiei Alireza4,Dawson David W.45,Dry Sarah M.45,Masri Marwan G.3,Crompton Joseph G.25,Benz Matthias R.35,Czernin Johannes35,Eilber Fritz C.235,Graeber Thomas G.35,Calais Jeremie3,Federman Noah C.56

Affiliation:

1. Department of Pediatrics, Division of Pediatric Hematology, Oncology, Stem Cell Transplantation & Regenerative Medicine, Stanford University School of Medicine, 1000 Welch Rd, Suite 300, Palo Alto, CA 94304, USA

2. University of California Los Angeles, Department of Surgery, Los Angeles, CA, USA

3. University of California Los Angeles, Department of Molecular and Medical Pharmacology, Los Angeles, CA, USA

4. University of California Los Angeles, Department of Pathology and Laboratory Medicine, Los Angeles, CA, USA

5. University of California Los Angeles, Jonsson Comprehensive Cancer Center, Los Angeles, CA, USA

6. University of California Los Angeles, Department of Pediatrics, Los Angeles, CA, USA

Abstract

Objectives. Fibroblast activation protein alpha (FAP) is highly expressed by cancer-associated fibroblasts in multiple epithelial cancers. The aim of this study was to characterize FAP expression in sarcomas to explore its potential utility as a diagnostic and therapeutic target and prognostic biomarker in sarcomas. Methods. Available tissue samples from patients with bone or soft tissue tumors were identified at the University of California, Los Angeles. FAP expression was evaluated via immunohistochemistry (IHC) in tumor samples (n = 63), adjacent normal tissues (n = 30), and positive controls (n = 2) using semiquantitative systems for intensity (0 = negative; 1 = weak; 2 = moderate; and 3 = strong) and density (none, <25%, 25–75%; >75%) in stromal and tumor/nonstromal cells and using a qualitative overall score (not detected, low, medium, and high). Additionally, RNA sequencing data in publicly available databases were utilized to compare FAP expression in samples (n = 10,626) from various cancer types and evaluate the association between FAP expression and overall survival (OS) in sarcoma (n = 168). Results. The majority of tumor samples had FAP IHC intensity scores ≥2 and density scores ≥25% for stromal cells (77.7%) and tumor cells (50.7%). All desmoid fibromatosis, myxofibrosarcoma, solitary fibrous tumor, and undifferentiated pleomorphic sarcoma samples had medium or high FAP overall scores. Sarcomas were among cancer types with the highest mean FAP expression by RNA sequencing. There was no significant difference in OS in patients with sarcoma with low versus high FAP expression. Conclusion. The majority of the sarcoma samples showed FAP expression by both stromal and tumor/nonstromal cells. Further investigation of FAP as a potential diagnostic and therapeutic target in sarcomas is warranted.

Funder

Eli and Edythe Broad Foundation

Publisher

Hindawi Limited

Subject

Radiology, Nuclear Medicine and imaging,Oncology

Reference74 articles.

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