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Evaluation of peroxisome proliferator-activated receptor-gamma expression in benign and malignant thyroid pathologies
S Karger1, K Berger, M Eszlinger
1III. Medical Department, University of Leipzig, Leipzig, Germany.
Abstract:
Impairment of peroxisome proliferator-activated receptor-gamma (PPAR-gamma) function through a dominant negative PAX-8/PPAR-gamma fusion gene or other events resulting in wild-type PPAR-gamma downregulation has been implicated in malignant thyroid cell transformation. The aim of our study was to perform a systematic evaluation of PPAR-gamma mRNA and protein expression in normal thyroid tissue as opposed to benign thyroid pathologies of different functional status and thyroid malignancy, to gain further insights into a putative physiological role of PPAR-gamma in the thyroid and to define whether PPAR-gamma could serve as a marker of thyroid cell differentiation. Ten cold benign (CTN) and 10 toxic (TTN) thyroid nodules and corresponding normal thyroid tissues, 10 follicular thyroid cancers (FTC), 10 papillary thyroid cancers (PTC) and 8 Graves' disease (GD) thyroids were studied by real-time polymerase chain reaction (PCR), immunohistochemistry and reverse transcriptase (RT)-PCR (PAX-8/PPAR-gamma fusion gene). PPAR-gamma mRNA expression was demonstrated in all samples. When comparing benign nodular and normal thyroid tissue of the same patient no significant difference in PPAR-gamma mRNA expression was observed. PPAR-gamma mRNA levels were similar in CTN and FTC. In contrast, PPAR-gamma mRNA expression was downregulated in 9 of 10 PTC and all GD samples, whereby at least 4 fold downregulation (compared with normal and benign nodular thyroid tissues) was observed in the latter. Immunohistochemistry showed an increased, patchy PPAR-gamma nuclear staining in CTNs and TTNs and only faint staining in the corresponding normal thyroid tissues. A diffuse and weak PPAR-gamma staining pattern was observed in all GD samples. No PAX-8/PPAR-gamma rearrangements were detected in any of the 68 thyroid tissue samples. In conclusion PPAR-gamma mRNA and protein expression levels are not concordant in benign thyroid nodular disease. Furthermore there is no clear-cut association of PPAR-gamma mRNA expression with follicular thyroid tumorigenesis. Absence of a PAX-8/PPAR-gamma fusion gene in the series of 68 thyroid samples is in agreement with the suggestion of PAX-8/PPAR-gamma rearrangement being restricted to a subset of follicular thyroid cancers. The marked downregulation of PPAR-gamma in GD warrants further investigation and could be linked, for example, with changes in apoptosis.
Insights
Peroxisome proliferator-activated receptor-gamma (PPAR-gamma) expression varies in thyroid conditions. Downregulation in papillary thyroid cancer and Graves
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Peroxisome proliferator-activated receptor-gamma (PPAR-gamma) dysfunction is linked to thyroid cancer development.
- Wild-type PPAR-gamma downregulation or dominant-negative fusion genes may drive malignant transformation.
- Understanding PPAR-gamma's role is crucial for thyroid cell differentiation and cancer research.
Purpose of the Study:
- To systematically evaluate PPAR-gamma mRNA and protein expression in various thyroid tissues.
- To investigate the physiological role of PPAR-gamma in normal, benign, and malignant thyroid conditions.
- To determine if PPAR-gamma can serve as a marker for thyroid cell differentiation.
Main Methods:
- Real-time polymerase chain reaction (PCR) for mRNA quantification.
- Immunohistochemistry for protein expression analysis.
- Reverse transcriptase (RT)-PCR to detect PAX-8/PPAR-gamma fusion genes.
Main Results:
- PPAR-gamma mRNA was present in all tested thyroid samples.
- No significant difference in PPAR-gamma mRNA was found between benign nodules and normal thyroid tissue.
- Papillary thyroid cancers (PTCs) and Graves' disease (GD) showed significant PPAR-gamma mRNA downregulation, while follicular thyroid cancers (FTCs) did not.
- Immunohistochemistry revealed variable PPAR-gamma protein staining patterns, not always correlating with mRNA levels.
- No PAX-8/PPAR-gamma fusion gene rearrangements were detected in any samples.
Conclusions:
- PPAR-gamma mRNA and protein expression are not consistently correlated in benign thyroid diseases.
- PPAR-gamma expression does not show a clear association with follicular thyroid tumorigenesis.
- The significant downregulation of PPAR-gamma in Graves' disease warrants further investigation into its potential role in apoptosis.
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