Literature DB >> 15252732

Galectin-3 and HBME-1 expression in oncocytic cell tumors of the thyroid.

Marco Volante1, Francesca Bozzalla-Cassione, Roberta DePompa, Enrico Saggiorato, Armando Bartolazzi, Fabio Orlandi, Mauro Papotti.   

Abstract

Oncocytic cell tumors (OCTs) of the thyroid include oncocytic cell adenomas (OCAs) and oncocytic cell carcinomas (OCCs). Oncocytic variant of papillary carcinoma (OVPC) has also been described. These tumors may present similar diagnostic problems as their non-oncocytic counterparts, in both conventional histology and fine-needle aspiration biopsies. Several markers were shown able to distinguish benign from malignant thyroid follicular tumors, galectin-3 and HBME-1 being the most promising ones. Controversial data have been reported on their discriminatory potential in the small series of OCTs so far analyzed. We aimed to assess the role of galectin-3 and HBME-1 in a large series of 152 OCTs (including 50 OCAs, 70 OCCs and 32 OVPCs). The expression of PPARgamma protein was also evaluated. Using a biotin-free detection system, the sensitivity of galectin-3 was 95.1%, while that for HBME-1 was nearly 53%. The combination of galectin-3 and HBME-1 increased the sensitivity up to 99%. However, for both markers, the specificity was 88%, lower than that reported for non-oncocytic follicular tumors. PPARgamma protein overexpression was absent in all OCAs tested and present in only 10% of OCCs, confirming previous reports on the low prevalence of PAX8-PPARgamma translocations in OCT and ruling out its role as a potential diagnostic marker of malignancy.

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Year:  2004        PMID: 15252732     DOI: 10.1007/s00428-004-1074-5

Source DB:  PubMed          Journal:  Virchows Arch        ISSN: 0945-6317            Impact factor:   4.064


  30 in total

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2.  Poorly differentiated oxyphilic (Hurthle cell) carcinomas of the thyroid.

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3.  Immunohistochemical diagnosis of papillary thyroid carcinoma.

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4.  Application of an immunodiagnostic method for improving preoperative diagnosis of nodular thyroid lesions.

Authors:  A Bartolazzi; A Gasbarri; M Papotti; G Bussolati; T Lucante; A Khan; H Inohara; F Marandino; F Orlandi; F Nardi; A Vecchione; R Tecce; O Larsson
Journal:  Lancet       Date:  2001-05-26       Impact factor: 79.321

5.  Expression of PAX8-PPAR gamma 1 rearrangements in both follicular thyroid carcinomas and adenomas.

Authors:  Ana Rita Marques; Carla Espadinha; Ana L Catarino; Sónia Moniz; Teresa Pereira; Luís G Sobrinho; Valeriano Leite
Journal:  J Clin Endocrinol Metab       Date:  2002-08       Impact factor: 5.958

6.  PAX8-PPARgamma rearrangement in thyroid tumors: RT-PCR and immunohistochemical analyses.

Authors:  Marina N Nikiforova; Paul W Biddinger; Christy M Caudill; Todd G Kroll; Yuri E Nikiforov
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8.  Thyroperoxidase immunodetection for the diagnosis of malignancy on fine-needle aspiration of thyroid nodules.

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10.  High-molecular-weight cytokeratin and cytokeratin-19 in the diagnosis of thyroid tumors.

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  12 in total

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Review 2.  The role of immunohistochemical markers in the diagnosis of follicular-patterned lesions of the thyroid.

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3.  Tumor heterogeneity in a follicular carcinoma of thyroid: a study by comparative genomic hybridization.

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Review 6.  Controversies in thyroid pathology: the diagnosis of follicular neoplasms.

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7.  Can CD10 be used as a diagnostic marker in thyroid pathology?

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8.  Follicular variant papillary thyroid carcinoma arising in struma ovarii.

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Review 9.  Immunohistochemical Biomarkers in Thyroid Pathology.

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Review 10.  Expression of CK-19, galectin-3 and HBME-1 in the differentiation of thyroid lesions: systematic review and diagnostic meta-analysis.

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