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Screening and Identification of Small Peptides Targeting Fibroblast Growth Factor Receptor2 using a Phage Display Peptide Library
Published on: September 30, 2019
Fibroblast growth factor receptors as molecular targets in thyroid carcinoma
Rosanne St Bernard1, Lei Zheng, Wei Liu
1Department of Pathology, University Health Network and University of Toronto, Toronto, Ontario, Canada.
Abstract:
Several molecular abnormalities of potential therapeutic target value have been described in thyroid neoplastic transition. We report the expression of the fibroblast growth factor receptor family (FGFR-1-4) in normal thyroid tissues, human thyroid cancers of various types and behaviors, and cell lines representative of the spectrum of differentiation of tumors derived from follicular epithelial cells. FGFR-2 was the only receptor consistently detected in normal human thyroid tissue, and its expression diminished in all thyroid cancers and carcinoma cell lines, suggesting that it may have a protective role. FGFR-1 and FGFR-3 were expressed in most well-differentiated tumor types. FGFR-4, however, was expressed predominantly in aggressive tumor types and the most rapidly proliferative cell lines, indicating that it may promote the progression of these tumors. To specifically determine the function of FGFR-4 in thyroid carcinoma, gain- or loss-of-function studies were performed in cell lines representative of the spectrum of thyroid cancer behavior. Introduction of FGFR-4 resulted in enhanced cell proliferation, an effect that was more pronounced in cell lines derived from aggressive tumors than in those derived from more indolent neoplasms. Moreover, transduction of a dominant-negative FGFR attenuated cell proliferation in the aggressive poorly differentiated cell lines with no appreciable effect in well-differentiated cells. Pharmacologic FGFR-4 tyrosine kinase inhibition resulted in significant proliferation arrest in an aggressive cell line endogenously expressing the receptor. Furthermore, systemic administration of the FGFR tyrosine kinase inhibitor PD173074 resulted in significant inhibition of follicular thyroid carcinoma-derived cell growth in xenografted severe combined immunodeficient mice. These data indicate a role for FGFR-4 in human thyroid cancer cell progression and provide a rationale for FGFR manipulation as a potentially novel therapeutic approach.
Insights
Fibroblast growth factor receptor-4 (FGFR-4) promotes aggressive thyroid cancer progression. Inhibiting FGFR-4 significantly reduced tumor cell growth in preclinical models, suggesting FGFR-4 as a potential therapeutic target for thyroid carcinoma.
Area of Science:
- Oncology
- Molecular Biology
- Endocrinology
Background:
- Thyroid cancer exhibits diverse molecular abnormalities.
- The fibroblast growth factor receptor (FGFR) family's role in thyroid tumorigenesis is not fully understood.
Purpose of the Study:
- To investigate the expression and function of FGFR family members (FGFR-1-4) in normal thyroid tissue and various thyroid cancers.
- To determine the specific role of FGFR-4 in thyroid cancer progression and its potential as a therapeutic target.
Main Methods:
- Analysis of FGFR expression in normal thyroid tissues, human thyroid cancers, and cell lines.
- Gain- and loss-of-function studies of FGFR-4 in thyroid cancer cell lines.
- Pharmacologic inhibition of FGFR-4 tyrosine kinase activity in vitro and in vivo (xenograft mouse models).
Main Results:
- FGFR-2 expression decreased in thyroid cancers, suggesting a protective role.
- FGFR-4 expression was predominantly found in aggressive thyroid tumors and rapidly proliferating cell lines.
- Overexpression of FGFR-4 enhanced cell proliferation, while its inhibition or blockade reduced proliferation in aggressive cell lines.
- Pharmacologic inhibition of FGFR-4 tyrosine kinase activity and systemic administration of an FGFR inhibitor significantly suppressed tumor growth in vivo.
Conclusions:
- FGFR-4 plays a significant role in the progression of human thyroid cancer.
- Targeting FGFR-4 through tyrosine kinase inhibition represents a promising novel therapeutic strategy for thyroid carcinoma.
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