1) Jirtle RL, Skinner MK:Environmental epigenomics and disease susceptibility. Nat Rev Genet 8:253-262, 2007
2) Charour M, Zoghhi HY:The story of Rett syndrome:from clinic to neurobiology. Neuron 56:422-437, 2007
3) Junien C, Nathanielsz P:Report on the IASO Stock Conference 2006:early and lifelong environmental epigenomic programming of metabolic syndrome, obesity and type II diabetes. Obesity Rev 8:487-502, 2007
4) Yegnasubramanian S, Lin X, Haffner MC, et al:Combination of methylated-DNA precipitation and methylation-sensitive restriction enzymes(COMPARE-MS)for the rapid, sensitive and quantitative detection of DNA methylation. Nucleic Acids Res 34:e19, 2006
5) Tong YK, Chiu RW, Leung TY, et al:Detection of restriction enzyme-digested target DNA by PCR amplification using a stem-loop primer:application to the detection of hypomethylated fetal DNA in maternal plasma. Clin Chem 53:1906-1914, 2007
6) Raizis AM, Schmitt F, Jost JP:A bisulfite method of 5-methylcytosine mapping that minimizes template degradation. Anal Biochem 226:161-166, 1995
7) Liu Z-J, Maekawa M:Polymerase chain reaction-based methods of DNA methylation analysis. Anal Biochem 317:259-265, 2003
8) Nieländer I, Bug S, Richter J, et al:Combining array-based approaches for the identification of candidate tumor suppressor loci in mature lymphoid neoplasms. APMIS 115:1107-1134, 2007
9) Davie JR, Spencer VA:Control of histone modifications. J Cell Biochem (Suppl)32-33:141-148, 1999
10) Buiting K, Grob S, Lich C, et al:Epimutations in Prader-Willi and Angelman syndrome:A molecular study of 136 patients with an imprinting defect. Am J Hum Genet 72:571-577, 2003
11) Yin JQ, Zhao RC, Morris KV:Profiling microRNA expression with microarrays. Trends Biotechnol. 26:70-76, 2008
12) http://www.cosmobio.co.jp
13) Garner MM, Revzin A:A gel electrophoresis method for quantifying the binding of proteins to specific DNA regions:application to components of the Escherichia coli lactose operon regulatory system. Nucleic Acids Res 9:3047-3060, 1981