Literature DB >> 19421002

LINE-1 methylation in plasma DNA as a biomarker of activity of DNA methylation inhibitors in patients with solid tumors.

Ana Aparicio1, Brittany North, Lindsey Barske, Xuemei Wang, Valentina Bollati, Daniel Weisenberger, Christine Yoo, Nizar Tannir, Erin Horne, Susan Groshen, Peter Jones, Allen Yang, Jean-Pierre Issa.   

Abstract

Multiple clinical trials are investigating the use of the DNA methylation inhibitors azacitidine and decitabine for the treatment of solid tumors. Clinical trials in hematological malignancies have shown that optimal activity does not occur at their maximum tolerated doses but selection of an optimal biological dose and schedule for use in solid tumor patients is hampered by the difficulty of obtaining tumor tissue to measure their activity. Here we investigate the feasibility of using plasma DNA to measure the demethylating activity of the DNA methylation inhibitors in patients with solid tumors. We compared four methods to measure LINE-1 and MAGE-A1 promoter methylation in T24 and HCT116 cancer cells treated with decitabine treatment and selected Pyrosequencing for its greater reproducibility and higher signal to noise ratio. We then obtained DNA from plasma, peripheral blood mononuclear cells, buccal mucosa cells and saliva from ten patients with metastatic solid tumors at two different time points, without any intervening treatment. DNA methylation measurements were not significantly different between time point 1 and time point 2 in patient samples. We conclude that measurement of LINE-1 methylation in DNA extracted from the plasma of patients with advanced solid tumors, using Pyrosequencing, is feasible and has low within patient variability. Ongoing studies will determine whether changes in LINE-1 methylation in plasma DNA occur as a result of treatment with DNA methylation inhibitors and parallel changes in tumor tissue DNA.

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Year:  2009        PMID: 19421002      PMCID: PMC2848123          DOI: 10.4161/epi.4.3.8694

Source DB:  PubMed          Journal:  Epigenetics        ISSN: 1559-2294            Impact factor:   4.528


  29 in total

1.  Analysis of complex methylation data.

Authors:  Kimberly D Siegmund; Peter W Laird
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2.  A simple method for estimating global DNA methylation using bisulfite PCR of repetitive DNA elements.

Authors:  Allen S Yang; Marcos R H Estécio; Ketan Doshi; Yutaka Kondo; Eloiza H Tajara; Jean-Pierre J Issa
Journal:  Nucleic Acids Res       Date:  2004-02-18       Impact factor: 16.971

3.  Comment on "Chromosomal instability and tumors promoted by DNA hypomethylation" and "Induction of tumors in nice by genomic hypomethylation".

Authors:  Allen S Yang; Marcos R H Estecio; Guillermo Garcia-Manero; Hagop M Kantarjian; Jean-Pierre J Issa
Journal:  Science       Date:  2003-11-14       Impact factor: 47.728

4.  Circulating nucleic acids in plasma and serum. Recent developments.

Authors:  Peter B Gahan; R Swaminathan
Journal:  Ann N Y Acad Sci       Date:  2008-08       Impact factor: 5.691

5.  A gene hypermethylation profile of human cancer.

Authors:  M Esteller; P G Corn; S B Baylin; J G Herman
Journal:  Cancer Res       Date:  2001-04-15       Impact factor: 12.701

Review 6.  An overview on the isolation and analysis of circulating tumor DNA in plasma and serum.

Authors:  J Jen; L Wu; D Sidransky
Journal:  Ann N Y Acad Sci       Date:  2000-04       Impact factor: 5.691

Review 7.  Review of the clinical experience with 5-azacytidine and 5-aza-2'-deoxycytidine in solid tumors.

Authors:  Ana Aparicio; Jeffrey S Weber
Journal:  Curr Opin Investig Drugs       Date:  2002-04

8.  DNA methylation in serum and tumors of cervical cancer patients.

Authors:  Andreas Widschwendter; Hannes M Müller; Heidi Fiegl; Lennart Ivarsson; Annemarie Wiedemair; Elisabeth Müller-Holzner; Georg Goebel; Christian Marth; Martin Widschwendter
Journal:  Clin Cancer Res       Date:  2004-01-15       Impact factor: 12.531

9.  Demethylation of a hypermethylated P15/INK4B gene in patients with myelodysplastic syndrome by 5-Aza-2'-deoxycytidine (decitabine) treatment.

Authors:  Michael Daskalakis; Tudung T Nguyen; Carvell Nguyen; Per Guldberg; Gabriele Köhler; Pierre Wijermans; Peter A Jones; Michael Lübbert
Journal:  Blood       Date:  2002-10-15       Impact factor: 22.113

Review 10.  DNA methylation in cancer: too much, but also too little.

Authors:  Melanie Ehrlich
Journal:  Oncogene       Date:  2002-08-12       Impact factor: 9.867

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  30 in total

1.  Azacitidine induces profound genome-wide hypomethylation in primary myelodysplastic bone marrow cultures but may also reduce histone acetylation.

Authors:  M Grövdal; M Karimi; M Tobiasson; L Reinius; M Jansson; K Ekwall; J Ungerstedt; J Kere; D Greco; E Hellström-Lindberg
Journal:  Leukemia       Date:  2013-09-12       Impact factor: 11.528

2.  Methylome-wide association study of schizophrenia: identifying blood biomarker signatures of environmental insults.

Authors:  Karolina A Aberg; Joseph L McClay; Srilaxmi Nerella; Shaunna Clark; Gaurav Kumar; Wenan Chen; Amit N Khachane; Linying Xie; Alexandra Hudson; Guimin Gao; Aki Harada; Christina M Hultman; Patrick F Sullivan; Patrik K E Magnusson; Edwin J C G van den Oord
Journal:  JAMA Psychiatry       Date:  2014-03       Impact factor: 21.596

3.  Analysis of pollutant-induced changes in mitochondrial DNA methylation.

Authors:  Hyang-Min Byun; Timothy M Barrow
Journal:  Methods Mol Biol       Date:  2015

4.  A Whole Methylome CpG-SNP Association Study of Psychosis in Blood and Brain Tissue.

Authors:  Edwin J C G van den Oord; Shaunna L Clark; Lin Ying Xie; Andrey A Shabalin; Mikhail G Dozmorov; Gaurav Kumar; Vladimir I Vladimirov; Patrik K E Magnusson; Karolina A Aberg
Journal:  Schizophr Bull       Date:  2015-12-09       Impact factor: 9.306

Review 5.  Clinical implications of the LINE-1 methylation levels in patients with gastrointestinal cancer.

Authors:  Yoshifumi Baba; Asuka Murata; Masayuki Watanabe; Hideo Baba
Journal:  Surg Today       Date:  2013-10-23       Impact factor: 2.549

6.  Combined analysis of DNA methylation and cell cycle in cancer cells.

Authors:  Cécile Desjobert; Mounir El Maï; Tom Gérard-Hirne; Dominique Guianvarc'h; Arnaud Carrier; Cyrielle Pottier; Paola B Arimondo; Joëlle Riond
Journal:  Epigenetics       Date:  2015-01-23       Impact factor: 4.528

7.  Maternal DNA hypomethylation and congenital heart defects.

Authors:  Shimul Chowdhury; Mario A Cleves; Stewart L MacLeod; S Jill James; Weizhi Zhao; Charlotte A Hobbs
Journal:  Birth Defects Res A Clin Mol Teratol       Date:  2011-01-19

Review 8.  Targeting the cancer epigenome for therapy.

Authors:  Peter A Jones; Jean-Pierre J Issa; Stephen Baylin
Journal:  Nat Rev Genet       Date:  2016-09-15       Impact factor: 53.242

9.  Precision of pyrosequencing assay to measure LINE-1 methylation in colon cancer, normal colonic mucosa, and peripheral blood cells.

Authors:  Natsumi Irahara; Katsuhiko Nosho; Yoshifumi Baba; Kaori Shima; Neal I Lindeman; Aditi Hazra; Eva S Schernhammer; David J Hunter; Charles S Fuchs; Shuji Ogino
Journal:  J Mol Diagn       Date:  2010-01-21       Impact factor: 5.568

10.  Nasal cell DNA methylation, inflammation, lung function and wheezing in children with asthma.

Authors:  Andrea Baccarelli; Franca Rusconi; Valentina Bollati; Dolores Catelan; Gabriele Accetta; Lifang Hou; Fabio Barbone; Pier Alberto Bertazzi; Annibale Biggeri
Journal:  Epigenomics       Date:  2012-02       Impact factor: 4.778

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