» Articles » PMID: 15743507

Polysomy of Chromosome 17 in Breast Cancer Tumors Showing an Overexpression of ERBB2: a Study of 175 Cases Using Fluorescence in Situ Hybridization and Immunohistochemistry

Overview
Specialty Oncology
Date 2005 Mar 4
PMID 15743507
Citations 28
Authors
Affiliations
Soon will be listed here.
Abstract

Introduction: One of the most common genetic aberrations associated with breast cancer is the amplification and overexpression of the ERBB2 proto-oncogene located at chromosome 17, bands q12-21. The amplification/overexpression occurs in 25 to 30% of all breast cancers. In breast cancer, aneusomy of chromosome 17, either monosomy or polysomy, is frequently observed by conventional cytogenetics and fluorescence in situ hybridization (FISH). The aim of this study was to discover whether or not numerical aberrations on chromosome 17 have a correlation to the amplification or overexpression of the ERBB2 gene and to analyze their clinical implications in subgroups showing 2+ or 3+ positive scores by immunohistochemistry (IHC).

Methods: We used FISH on a series of 175 formalin-fixed paraffin-embedded breast carcinomas to detect ERBB2 amplification, using a dual-probe system for the simultaneous enumeration of the ERBB2 gene and the centromeric region of chromosome 17, as well as using IHC to detect overexpression. We analyzed clinical and pathological variables in a subgroup of patients with 2+ and 3+ IHC scores (147 patients), to describe any differences in clinicopathological characteristics between polysomic and non-polysomic cases with the use of the chi2 test.

Results: We found 13% of cases presenting polysomy, and three cases presented monosomy 17 (2%). According to the status of the ERBB2 gene, instances of polysomy 17 were more frequently observed in non-amplified cases than in FISH-amplified cases, suggesting that the mechanism for ERBB2 amplification is independent of polysomy 17. Polysomy 17 was detected in patients with 2+ and 3+ IHC scores. We found that nodal involvement was more frequent in polysomic than in non-polysomic cases (P = 0.046).

Conclusions: The determination of the copy number of chromosome 17 should be incorporated into the assesment of ERBB2 status. It might also be helpful to differentiate a subgroup of breast cancer patients with polysomy of chromosome 17 and overexpression of ERBB2 protein that probably have genetic and clinical differences.

Citing Articles

The frequency and clinical significance of centromere enumeration probe 17 alterations in human epidermal growth factor receptor 2 immunohistochemistry-equivocal invasive breast cancer.

Katayama A, Starczynski J, Toss M, Shaaban A, Provenzano E, Quinn C Histopathology. 2022; 81(4):511-519.

PMID: 35879836 PMC: 9545957. DOI: 10.1111/his.14728.


Fluorescence in situ hybridization detection of chromosome 7 and/or 17 polysomy as a prognostic marker for cholangiocarcinoma.

Deenonpoe R, Sa-Ngiamwibool P, Watcharadetwittaya S, Thanee M, Intuyod K, Kongpan T Sci Rep. 2022; 12(1):8441.

PMID: 35589822 PMC: 9119972. DOI: 10.1038/s41598-022-11945-8.


Clinicopathological Features of Breast Cancer with Polysomy 17 and Its Response to Neoadjuvant Chemotherapy.

Sun H, Chen H, Crespo J, Tang G, Robinson M, Lim B Eur J Breast Health. 2021; 17(2):128-136.

PMID: 33870112 PMC: 8025723. DOI: 10.4274/ejbh.galenos.2021.2021-2-9.


Cisplatin effect on head and neck squamous cell carcinoma cells is modulated by ERK1/2 protein kinases.

Bostan M, Petrica-Matei G, Ion G, Radu N, Mihaila M, Hainarosie R Exp Ther Med. 2019; 18(6):5041-5051.

PMID: 31798724 PMC: 6880449. DOI: 10.3892/etm.2019.8139.


Hormone Receptors and Human Epidermal Growth Factor (HER2) Expression in Fine-Needle Aspirates from Metastatic Breast Carcinoma - Role in Patient Management.

Francis I, Altemaimi R, Al-Ayadhy B, Alath P, Jaragh M, Mothafar F J Cytol. 2019; 36(2):94-100.

PMID: 30992644 PMC: 6425780. DOI: 10.4103/JOC.JOC_117_18.


References
1.
DiAugustine R, Richards R, Sebastian J . EGF-related peptides and their receptors in mammary gland development. J Mammary Gland Biol Neoplasia. 1997; 2(2):109-17. DOI: 10.1023/a:1026395513038. View

2.
Sauer T, Beraki K, Jebsen P, Ormerod E, Naess O . Numerical aberrations of chromosome 17 in interphase cell nuclei of breast carcinoma cells: lack of correlation with abnormal expression of p53, neu and nm23 protein. APMIS. 1998; 106(10):921-7. DOI: 10.1111/j.1699-0463.1998.tb00240.x. View

3.
Fornier M, Esteva F, Seidman A . Trastuzumab in combination with chemotherapy for the treatment of metastatic breast cancer. Semin Oncol. 2001; 27(6 Suppl 11):38-45; discussion 92-100. View

4.
Yarden Y, Sliwkowski M . Untangling the ErbB signalling network. Nat Rev Mol Cell Biol. 2001; 2(2):127-37. DOI: 10.1038/35052073. View

5.
Tsukamoto F, Miyoshi Y, Egawa C, Kasugai T, Takami S, Inazawa J . Clinicopathologic analysis of breast carcinoma with chromosomal aneusomy detected by fluorescence in situ hybridization. Cancer. 2001; 93(2):165-70. DOI: 10.1002/cncr.9024. View