Literature DB >> 23907150

Intracystic papillary carcinoma of breast: interrelationship with in situ and invasive carcinoma and a proposal of pathogenesis: array comparative genomic hybridization study of 14 cases.

Thaer Khoury1, Qiang Hu2, Song Liu2, Jianmin Wang2.   

Abstract

Classifying intracystic papillary carcinoma under invasive or in situ ductal carcinoma is still a matter of debate. The purpose of this study was to explore the genomic relationship of this tumor to its concurrent invasive ductal carcinoma and ductal carcinoma in situ using array comparative genomic hybridization. Intracystic papillary carcinoma cases were classified into three categories: pure, with concurrent ductal carcinoma in situ or with concurrent invasive ductal carcinoma. Each component was dissected using laser capture microdissection. DNA was extracted and array comparative genomic hybridization was performed. The test of difference in copy number changes among the three tumors was carried out using CGHMultiArray. Intracystic papillary carcinoma clustered with four of five concurrent ductal carcinoma in situ cases and with two of two invasive ductal carcinoma cases. Intracystic papillary carcinoma showed the highest proportions of genome copy number aberration, followed by ductal carcinoma in situ, and then by invasive ductal carcinoma (P=0.06). Comparing intracystic papillary carcinoma with invasive ductal carcinoma vs without invasive ductal carcinoma, the former had 11q22.1-23.3 loss (P=0.031) and chr5 gain (P=0.085), and was enriched with matrix metalloproteinase genes. Comparing intracystic papillary carcinoma with ductal carcinoma in situ vs without ductal carcinoma in situ, the former had gain in 5q35.3 (P=0.041), 8q24.3 (P=0.041) and 21q13.2 to 21q13.31 (P=0.011). Comparing intracystic papillary carcinoma with ductal carcinoma in situ, the latter acquired a group of genes involved in cell adhesion and motility, whereas intracystic papillary carcinoma differentially expressed genes that are involved in papillary carcinomas of other organs (thyroid and kidney). We conclude that the overall molecular change in intracystic papillary carcinoma is closer to ductal carcinoma in situ than to invasive ductal carcinoma, which may explain the indolent behavior of this tumor. We offer herein a proposal of intracystic papillary carcinoma pathogenesis through its relation to invasive ductal carcinoma and ductal carcinoma in situ.

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Year:  2013        PMID: 23907150      PMCID: PMC4389629          DOI: 10.1038/modpathol.2013.136

Source DB:  PubMed          Journal:  Mod Pathol        ISSN: 0893-3952            Impact factor:   7.842


  30 in total

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Journal:  N Engl J Med       Date:  2012-03-14       Impact factor: 91.245

3.  Cloning of human junctional adhesion molecule 3 (JAM3) and its identification as the JAM2 counter-receptor.

Authors:  M P Arrate; J M Rodriguez; T M Tran; T A Brock; S A Cunningham
Journal:  J Biol Chem       Date:  2001-10-04       Impact factor: 5.157

4.  Treatment and outcome of patients with intracystic papillary carcinoma of the breast.

Authors:  Carmen C Solorzano; Lavinia P Middleton; Kelly K Hunt; Nadeem Mirza; Funda Meric; Henry M Kuerer; Merrick I Ross; Frederick C Ames; Barry W Feig; Raphael E Pollock; S Eva Singletary; Gildy Babiera
Journal:  Am J Surg       Date:  2002-10       Impact factor: 2.565

5.  Encapsulated papillary carcinoma of the breast: a study of invasion associated markers.

Authors:  Emad A Rakha; May Tun; Enaam Junainah; Ian O Ellis; Andrew Green
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Authors:  Lucy R Yates; Peter J Campbell
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7.  Breast intracystic papillary carcinoma: an update.

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Journal:  Breast J       Date:  2009-09-07       Impact factor: 2.431

8.  OPCML at 11q25 is epigenetically inactivated and has tumor-suppressor function in epithelial ovarian cancer.

Authors:  Grant C Sellar; Karen P Watt; Genevieve J Rabiasz; Euan A Stronach; Li Li; Eric P Miller; Charles E Massie; Jayne Miller; Bruno Contreras-Moreira; Diane Scott; Iain Brown; Alastair R Williams; Paul A Bates; John F Smyth; Hani Gabra
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9.  MicroRNA-661, a c/EBPalpha target, inhibits metastatic tumor antigen 1 and regulates its functions.

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10.  Immunophenotypic and genomic characterization of papillary carcinomas of the breast.

Authors:  Raphaëlle Duprez; Paul M Wilkerson; Magali Lacroix-Triki; Maryou B Lambros; Alan MacKay; Roger A'Hern; Arnaud Gauthier; Vidya Pawar; Pierre-Emanuel Colombo; Frances Daley; Rachael Natrajan; Eric Ward; Gaëtan MacGrogan; Flavie Arbion; Patrick Michenet; Britta Weigelt; Anne Vincent-Salomon; Jorge S Reis-Filho
Journal:  J Pathol       Date:  2011-12-09       Impact factor: 7.996

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  8 in total

1.  The genetic architecture of breast papillary lesions as a predictor of progression to carcinoma.

Authors:  Ian G Campbell; Kylie L Gorringe; Tanjina Kader; Kenneth Elder; Magnus Zethoven; Timothy Semple; Prue Hill; David L Goode; Niko Thio; Dane Cheasley; Simone M Rowley; David J Byrne; Jia-Min Pang; Islam M Miligy; Andrew R Green; Emad A Rakha; Stephen B Fox; G Bruce Mann
Journal:  NPJ Breast Cancer       Date:  2020-03-12

2.  Intracystic Papillary Carcinoma in Male Breast with High Nuclear Grade: A Case Report.

Authors:  Abdulaziz Ajlan M Al Salloom
Journal:  J Clin Diagn Res       Date:  2015-08-01

3.  Comparative genomic hybridization and transcriptome sequencing reveal that two genes, OsI_14279 (LOC_Os03g62620) and OsI_10794 (LOC_Os03g14950) regulate the mutation in the γ-rl rice mutant.

Authors:  Xulong Wang; Fanhua Wang; Huiqiong Chen; Xiaoyu Liang; Yingmei Huang; Jicai Yi
Journal:  Physiol Mol Biol Plants       Date:  2017-08-22

4.  Next-generation sequencing revealed recurrent ZFPM1 mutations in encapsulated papillary carcinoma of the breast.

Authors:  Xuguang Liu; Xin Huang; Yan Bai; Zhiwen Zhang; Tiefeng Jin; Huanwen Wu; Zhiyong Liang
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5.  Diagnosis, treatment, and outcomes of encapsulated papillary carcinoma: a single institution experience.

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Review 6.  Papillary lesions of the breast.

Authors:  Janina Kulka; Lilla Madaras; Giuseppe Floris; Sigurd F Lax
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7.  The genetic architecture of breast papillary lesions as a predictor of progression to carcinoma.

Authors:  Ian G Campbell; Kylie L Gorringe; Tanjina Kader; Kenneth Elder; Magnus Zethoven; Timothy Semple; Prue Hill; David L Goode; Niko Thio; Dane Cheasley; Simone M Rowley; David J Byrne; Jia-Min Pang; Islam M Miligy; Andrew R Green; Emad A Rakha; Stephen B Fox; G Bruce Mann
Journal:  NPJ Breast Cancer       Date:  2020-03-12

8.  Intracystic papillary breast carcinoma with DCIS in a man: a case report.

Authors:  Emanuela Esposito; Maurizio Di Bonito; Giovanni Iodice; Franca Avino; Ivana Donzelli; Alfredo Fucito; Maria Teresa Melucci; Ruggero Saponara; Claudio Siani; Raffaele Tortoriello; Massimo Rinaldo; Raimondo di Giacomo
Journal:  Transl Cancer Res       Date:  2019-10       Impact factor: 1.241

  8 in total

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