Literature DB >> 16152615

Methylation profile in tumor and sputum samples of lung cancer patients detected by spiral computed tomography: a nested case-control study.

Rosalia Cirincione1, Carla Lintas, Davide Conte, Luigi Mariani, Luca Roz, Antonio Maurizio Vignola, Ugo Pastorino, Gabriella Sozzi.   

Abstract

We evaluated the aberrant promoter methylation profile of a panel of 3 genes in DNA from tumor and sputum samples, in view of a complementary approach to spiral computed tomography (CT) for early diagnosis of lung cancer. The aberrant promoter methylation of RARbeta2, p16(INK4A) and RASSF1A genes was evaluated by methylation-specific PCR in tumor samples of 29 CT-detected lung cancer patients, of which 18 had tumor-sputum pairs available for the analysis, and in the sputum samples from 112 cancer-free heavy smokers enrolled in a spiral CT trial. In tumor samples from 29 spiral CT-detected patients, promoter hypermethylation was identified in 19/29 (65.5%) cases for RARbeta2, 12/29 (41.4%) for p16(INK4A) and 15/29 (51.7%) for RASSF1A. Twenty-three of twenty-nine (79.3%) samples of the tumors exhibited methylation in at least 1 gene. In the sputum samples of 18 patients, methylation was detected in 8/18 (44.4%) for RARbeta2 and 1/18 (5%) for both RASSF1A and p16(INK4A). At least 1 gene was methylated in 9/18 (50%) sputum samples. Promoter hypermethylation in sputum from 112 cancer-free smokers was observed in 58/112 (51.7%) for RARbeta2 and 20/112 (17.8%) for p16, whereas methylation of the RASSF1A gene was found in only 1/112 (0.9%) sputum sample. Our study indicates that a high frequency of hypermethylation for RARbeta2, p16(INK4A) and RASSF1A promoters is present in spiral CT-detected tumors, whereas promoter hypermethylation of this panel of genes in uninduced sputum has a limited diagnostic value in early lung cancer detection. (c) 2005 Wiley-Liss, Inc.

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Year:  2006        PMID: 16152615     DOI: 10.1002/ijc.21473

Source DB:  PubMed          Journal:  Int J Cancer        ISSN: 0020-7136            Impact factor:   7.396


  19 in total

1.  Molecular analysis of plasma DNA for the early detection of lung cancer by quantitative methylation-specific PCR.

Authors:  Kimberly Laskie Ostrow; Mohammad O Hoque; Myriam Loyo; Marianna Brait; Alissa Greenberg; Jill M Siegfried; Jennifer R Grandis; Autumn Gaither Davis; William L Bigbee; William Rom; David Sidransky
Journal:  Clin Cancer Res       Date:  2010-06-30       Impact factor: 12.531

2.  An epigenetic marker panel for detection of lung cancer using cell-free serum DNA.

Authors:  Shahnaz Begum; Mariana Brait; Santanu Dasgupta; Kimberly L Ostrow; Marianna Zahurak; André L Carvalho; Joseph A Califano; Steven N Goodman; William H Westra; Mohammad Obaidul Hoque; David Sidransky
Journal:  Clin Cancer Res       Date:  2011-05-24       Impact factor: 12.531

3.  Methylated APC and RASSF1A in multiple specimens contribute to the differential diagnosis of patients with undetermined solitary pulmonary nodules.

Authors:  Li Gao; Erfu Xie; Tongfu Yu; Dan Chen; Lixia Zhang; Bingfeng Zhang; Fang Wang; Jian Xu; Peijun Huang; Xisheng Liu; Bingliang Fang; Shiyang Pan
Journal:  J Thorac Dis       Date:  2015-03       Impact factor: 2.895

4.  Detection of TIMP3 promoter hypermethylation in salivary rinse as an independent predictor of local recurrence-free survival in head and neck cancer.

Authors:  Wenyue Sun; David Zaboli; Hao Wang; Yan Liu; Demetri Arnaoutakis; Tanbir Khan; Zubair Khan; Wayne M Koch; Joseph A Califano
Journal:  Clin Cancer Res       Date:  2012-01-06       Impact factor: 12.531

5.  Re-expression of CXCL14, a common target for epigenetic silencing in lung cancer, induces tumor necrosis.

Authors:  M Tessema; D M Klinge; C M Yingling; K Do; L Van Neste; S A Belinsky
Journal:  Oncogene       Date:  2010-06-21       Impact factor: 9.867

6.  Aberrant gene promoter methylation in sputum from individuals exposed to smoky coal emissions.

Authors:  Yang Liu; Qing Lan; Min Shen; Jide Jin; Judy Mumford; Dianxu Ren; Phouthone Keohavong
Journal:  Anticancer Res       Date:  2008 Jul-Aug       Impact factor: 2.480

7.  Association between P(16INK4a) promoter methylation and non-small cell lung cancer: a meta-analysis.

Authors:  Jundong Gu; Yanjun Wen; Siwei Zhu; Feng Hua; Hui Zhao; Hongrui Xu; Jiacong You; Linlin Sun; Weiqiang Wang; Jun Chen; Qinghua Zhou
Journal:  PLoS One       Date:  2013-04-05       Impact factor: 3.240

8.  Hypermethylation of CCND2 May Reflect a Smoking-Induced Precancerous Change in the Lung.

Authors:  Alexander Salskov; Stephen E Hawes; Joshua E Stern; Qinghua Feng; C Diana Jordan; Linda Wiens; Janet Rasey; Hiep Lu; Nancy B Kiviat; Hubert Vesselle
Journal:  J Oncol       Date:  2011-03-28       Impact factor: 4.375

Review 9.  DNA Methylation Markers in Lung Cancer.

Authors:  Yoonki Hong; Woo Jin Kim
Journal:  Curr Genomics       Date:  2021-02       Impact factor: 2.236

Review 10.  Molecular sputum analysis for the diagnosis of lung cancer.

Authors:  A J Hubers; C F M Prinsen; G Sozzi; B I Witte; E Thunnissen
Journal:  Br J Cancer       Date:  2013-07-18       Impact factor: 7.640

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