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Published on: August 23, 2019
Functional thyrotropin receptor attenuates malignant phenotype of follicular thyroid cancer cells
S Hoffmann1, K Maschuw, I Hassan
1Department of Surgery, Philipps-University of Marburg, 35043 Marburg, Germany. hoffmans@mailer.uni-marburg.de
Abstract:
Thyrotropin (TSH) is a thyroid-specific growth factor inducing differentiated function and growth of thyrocytes in vitro. In thyroid cancer, loss of TSH-receptor (TSHR) expression is a sign of de-differentiation and is believed to contribute to the malignant phenotype. The present studies aimed to determine the in vitro and in vivo effects of functioning TSHR in the follicular thyroid cancer cell line HTC, a subclone of FTC133 cells, lacking endogenous expression of TSHR, and HTCtshr+ cells transfected with human TSHR-cDNA. HTCtshr+ cells grew faster in vitro (doubling time 1.15 vs 1.56 d, p < 0.05) and TSH caused a dose-dependent growth response. Adhesion to and invasion through reconstituted basement membrane were reduced in HTCtshr+ cells, but when stimulated with TSH increased to levels comparable to naïve HTC cells. In vivo, tumor latency was 11 d for naïve HTC as compared to 21 d for HTCtshr+ xenografts. Smaller tumor volumes were registered for HTCtshr+ cells (250 +/- 217 vs 869 +/- 427 mm3, p < 0.05). Angiogenesis, as determined by vascular surface density (VSD) of experimental tumors, was enhanced in naïve HTC tumors (VSD 0.87 +/- 0.1 microm-1 vs 0.55 +/- 0.2 microm-1 in HTCtshr+, p < 0.05). VEGF secretion was more pronounced in naïve HTC cells stimulated with EGF, than in HTCtshr+ cells stimulated with either TSH or EGF. In conclusion, regained expression of functional TSHR in the follicular thyroid cancer cell line HTC alters in vitro features commonly associated with the malignant phenotype. Smaller tumors and reduced angiogenesis of xenotransplanted HTC cells with functioning TSHR suggest a less aggressive in vivo phenotype. The present data highlight the pivotal role of TSHR to affect transformed thyrocytes in vitro and in vivo. They also suggest a role for EGF as a modulator of angiogenesis in thyrocytes devoid of TSHR.
Insights
Restoring TSH receptor (TSHR) expression in follicular thyroid cancer cells reduced tumor growth and angiogenesis. This suggests TSHR plays a key role in thyroid cancer progression and offers potential therapeutic targets.
Area of Science:
- Endocrinology
- Oncology
- Molecular Biology
Background:
- Thyrotropin (TSH) is a crucial growth factor for thyrocytes.
- Loss of TSH receptor (TSHR) expression in thyroid cancer correlates with dedifferentiation and malignancy.
- Follicular thyroid cancer cell line HTC lacks endogenous TSHR expression.
Purpose of the Study:
- To investigate the in vitro and in vivo effects of restoring functional TSHR expression in HTC cells.
- To evaluate the impact of TSHR on thyroid cancer cell growth, invasion, and angiogenesis.
Main Methods:
- Transfection of HTC cells with human TSHR-cDNA to create HTCtshr+ cells.
- In vitro assays measuring cell growth, adhesion, and invasion.
- In vivo xenograft studies in mice to assess tumor latency, volume, and angiogenesis (vascular surface density).
- Measurement of VEGF secretion.
Main Results:
- HTCtshr+ cells exhibited faster in vitro growth, but TSH stimulation normalized adhesion and invasion.
- In vivo, HTCtshr+ xenografts showed longer tumor latency and smaller tumor volumes compared to naïve HTC cells.
- Naïve HTC tumors displayed enhanced angiogenesis and higher VEGF secretion, particularly when stimulated with EGF, compared to HTCtshr+ cells.
Conclusions:
- Regained TSHR expression in follicular thyroid cancer cells alters malignant phenotypes in vitro.
- Restored TSHR expression leads to a less aggressive in vivo phenotype with reduced tumor growth and angiogenesis.
- TSHR is pivotal in modulating transformed thyrocytes, and EGF may influence angiogenesis in TSHR-deficient cells.
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