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PMID: 23049733 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

An Ep-ICD based index is a marker of aggressiveness and poor prognosis in thyroid carcinoma.

PloS one ·Vol. 7 ·No. 9 ·2012-00-00 ·Pages e42893

He HC, Kashat L, Kak I, Kunavisarut T, Gundelach R, Kim D, So AK, MacMillan C, Freeman JL, Ralhan R, Walfish PG

Abstract

Nuclear accumulation of the intracellular domain of epithelial cell adhesion molecule (Ep-ICD) in tumor cells was demonstrated to predict poor prognosis in thyroid carcinoma patients in our earlier study. Here, we investigated the clinical significance of Ep-ICD subcellular localization index (ESLI) in distinguishing aggressive papillary thyroid carcinoma (PTC) from non-aggressive cases. Using domain specific antibodies against the intracellular (Ep-ICD) and extracellular (EpEx) domains of epithelial cell adhesion molecule, 200 archived tissues from a new cohort of patients with benign thyroid disease as well as malignant aggressive and non aggressive PTC were analyzed by immunohistochemistry (IHC). ESLI was defined as sum of the IHC scores for accumulation of nuclear and cytoplasmic Ep-ICD and loss of membranous EpEx; ESLI = [Ep-ICD(nuc) + Ep-ICD(cyt) + loss of membranous EpEx]. For the benign thyroid tissues, non-aggressive PTC and aggressive PTC, the mean ESLI scores were 4.5, 6.7 and 11 respectively. Immunofluorescence double staining confirmed increased nuclear Ep-ICD accumulation and decreased membrane EpEx expression in aggressive PTC. Receiver-operating characteristic (ROC) curve analysis showed an area under the curve (AUC) of 0.841, 70.2% sensitivity and 83.9% specificity for nuclear Ep-ICD for differentiating aggressive PTC from non-aggressive PTC. ESLI distinguished aggressive PTC from non-aggressive cases with improved AUC of 0.924, 88.4% sensitivity and 85.5% specificity. Our study confirms nuclear accumulation of Ep-ICD and loss of membranous EpEx occurs in aggressive PTC underscoring the potential of Ep-ICD and ESLI to serve as diagnostic markers for aggressive PTC. Kaplan Meier survival analysis revealed significantly reduced disease free survival (DFS) for ESLI positive (cutoff >10) PTC (p<0.05), mean DFS=133 months as compared to 210 months for patients who did not show positive ESLI. ESLI scoring improves the identification of aggressive PTC and thereby may serve as a useful index for defining aggressiveness and poor prognosis among PTC patients.

MeSH Terms
Adolescent Adult Aged Aged, 80 and over Antigens, Neoplasm/genetics,metabolism Area Under Curve Biomarkers, Tumor/genetics,metabolism Carcinoma/diagnosis,genetics,mortality,pathology Carcinoma, Papillary Cell Adhesion Molecules/genetics,metabolism Disease-Free Survival Epithelial Cell Adhesion Molecule Female Gene Expression Humans Male Middle Aged Neoplasm Grading Neoplasm Invasiveness Prognosis Protein Structure, Tertiary ROC Curve Research Design Thyroid Cancer, Papillary Thyroid Gland/metabolism,pathology Thyroid Neoplasms/diagnosis,genetics,mortality,pathology
Chemicals
Antigens, Neoplasm Biomarkers, Tumor Cell Adhesion Molecules EPCAM protein, human Epithelial Cell Adhesion Molecule
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
He Helen C-H
Alex and Simona Shnaider Laboratory in Molecular Oncology, Department of Pathology & Laboratory Medicine, Mount Sinai Hospital, Toronto, Ontario, Canada.
Kashat Lawrence
Kak Ipshita
Kunavisarut Tada
Gundelach Raefe
Kim Dae
So Anthony K-C
MacMillan Christina
Freeman Jeremy L
Ralhan Ranju
Walfish Paul G
References (33)
33 references, click to expand
  1. Follicular thyroid neoplasms can be classified as low- and high-risk according to HBME-1 and Galectin-3 expression on liquid-based fine-needle cytology.
    Eur J Endocrinol. 2011 Sep;165(3):447-53 PMID: 21724837
  2. Influence of the BRAF V600E mutation on expression of vascular endothelial growth factor in papillary thyroid cancer.
    J Clin Endocrinol Metab. 2006 Sep;91(9):3667-70 PMID: 16772349
  3. Angiogenesis and clinicopathologic characteristics in different hepatocellular carcinoma subtypes defined by EpCAM and α-fetoprotein expression status.
    Med Oncol. 2011 Dec;28(4):1012-6 PMID: 20571936
  4. EpCAM an immunotherapeutic target for gastrointestinal malignancy: current experience and future challenges.
    Br J Cancer. 2007 Apr 10;96(7):1013-9 PMID: 17325709
  5. The Bethesda System for Reporting Thyroid Cytopathology.
    Thyroid. 2009 Nov;19(11):1159-65 PMID: 19888858
  6. Molecular genetics and diagnosis of thyroid cancer.
    Nat Rev Endocrinol. 2011 Aug 30;7(10):569-80 PMID: 21878896
  7. EpCAM in morphogenesis.
    Front Biosci. 2008 May 01;13:5050-5 PMID: 18508569
  8. The detection of circulating tumor cells expressing E6/E7 HR-HPV oncogenes in peripheral blood in cervical cancer patients after radical hysterectomy.
    Neoplasma. 2009;56(3):230-8 PMID: 19309226
  9. Intensity of vascular endothelial growth factor expression is associated with increased risk of recurrence and decreased disease-free survival in papillary thyroid cancer.
    Surgery. 2001 May;129(5):552-8 PMID: 11331447
  10. Impact of proto-oncogene mutation detection in cytological specimens from thyroid nodules improves the diagnostic accuracy of cytology.
    J Clin Endocrinol Metab. 2010 Mar;95(3):1365-9 PMID: 20130073
  11. Discovery and verification of head-and-neck cancer biomarkers by differential protein expression analysis using iTRAQ labeling, multidimensional liquid chromatography, and tandem mass spectrometry.
    Mol Cell Proteomics. 2008 Jun;7(6):1162-73 PMID: 18339795
  12. Characterization of thyroid 'follicular neoplasms' in fine-needle aspiration cytological specimens using a panel of immunohistochemical markers: a proposal for clinical application.
    Endocr Relat Cancer. 2005 Jun;12(2):305-17 PMID: 15947105
  13. Overexpression of EpCAM in uterine serous papillary carcinoma: implications for EpCAM-specific immunotherapy with human monoclonal antibody adecatumumab (MT201).
    Mol Cancer Ther. 2010 Jan;9(1):57-66 PMID: 20053761
  14. EpCAM in carcinogenesis: the good, the bad or the ugly.
    Carcinogenesis. 2010 Nov;31(11):1913-21 PMID: 20837599
  15. EpCAM nuclear localization identifies aggressive thyroid cancer and is a marker for poor prognosis.
    BMC Cancer. 2010 Jun 25;10:331 PMID: 20579375
  16. Cancer statistics, 2009.
    CA Cancer J Clin. 2009 Jul-Aug;59(4):225-49 PMID: 19474385
  17. Prospective identification of tumorigenic breast cancer cells.
    Proc Natl Acad Sci U S A. 2003 Apr 1;100(7):3983-8 PMID: 12629218
  18. Identification and expansion of human colon-cancer-initiating cells.
    Nature. 2007 Jan 4;445(7123):111-5 PMID: 17122771
  19. Characterization of bipotent mammary epithelial progenitor cells in normal adult human breast tissue.
    Breast Cancer Res Treat. 2001 May;67(2):93-109 PMID: 11519870
  20. Increased EpCAM expression in malignant insulinoma: potential clinical implications.
    Eur J Endocrinol. 2010 Feb;162(2):391-8 PMID: 20097833
  21. Progression of BRAF-induced thyroid cancer is associated with epithelial-mesenchymal transition requiring concomitant MAP kinase and TGFβ signaling.
    Oncogene. 2011 Jul 14;30(28):3153-62 PMID: 21383698
  22. Epithelial cell adhesion molecule (EpCAM) is overexpressed in breast cancer metastases.
    Breast Cancer Res Treat. 2010 Oct;123(3):701-8 PMID: 20012351
  23. Early recurrence of papillary and follicular thyroid carcinoma predicts a worse outcome.
    Thyroid. 2009 Oct;19(10):1053-9 PMID: 19772423
  24. Molecular testing for somatic mutations improves the accuracy of thyroid fine-needle aspiration biopsy.
    World J Surg. 2010 Nov;34(11):2589-94 PMID: 20703476
  25. Alterations of the BRAF gene in thyroid tumors.
    Endocr Pathol. 2005 Fall;16(3):163-72 PMID: 16299399
  26. Immunocytochemistry with cytokeratin 19 and anti-human mesothelial cell antibody (HBME1) increases the diagnostic accuracy of thyroid fine-needle aspirations: preliminary report of 150 liquid-based fine-needle aspirations with histological control.
    Thyroid. 2011 Oct;21(10):1067-73 PMID: 21875347
  27. Nuclear signalling by tumour-associated antigen EpCAM.
    Nat Cell Biol. 2009 Feb;11(2):162-71 PMID: 19136966
  28. Epithelial cell adhesion molecule expression (CD326) in cancer: a short review.
    Cancer Treat Rev. 2012 Feb;38(1):68-75 PMID: 21576002
  29. A human colon cancer cell capable of initiating tumour growth in immunodeficient mice.
    Nature. 2007 Jan 4;445(7123):106-10 PMID: 17122772
  30. Contribution of molecular testing to thyroid fine-needle aspiration cytology of "follicular lesion of undetermined significance/atypia of undetermined significance".
    Cancer Cytopathol. 2010 Feb 25;118(1):17-23 PMID: 20099311
  31. Problems and controversies in the histopathology of thyroid carcinomas of follicular cell origin.
    Arch Pathol Lab Med. 2009 May;133(5):683-91 PMID: 19415942
  32. EpCAM regulates cell cycle progression via control of cyclin D1 expression.
    Oncogene. 2013 Jan 31;32(5):641-50 PMID: 22391566
  33. Thyroid cancer epidemiology and prognostic variables.
    Clin Oncol (R Coll Radiol). 2010 Aug;22(6):395-404 PMID: 20627675
Article Info
Journal
PloS one
Abbr.
PLoS One
ISSN
1932-6203
Published
2012-00-00
Epub
2012-00-25
Pages
e42893
Language
English
Region
United States
NLM ID
101285081
PMCID
PMC3458098
Subset
IM
Grants
Canadian Institutes of Health Research · Canada
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