Article ID Journal Published Year Pages File Type
2204392 Trends in Cell Biology 2014 12 Pages PDF
Abstract

•We describe cutting-edge single-cell epigenetics technologies.•We propose novel approaches to study dynamic epigenetic changes in individual cells.•We highlight microfluidics as a central tool for single-cell isolation and analysis.

Mechanistically, how epigenetic states are inherited through cellular divisions remains an important open question in the chromatin field and beyond. Defining the heritability of epigenetic states and the underlying chromatin-based mechanisms within a population of cells is complicated due to cell heterogeneity combined with varying levels of stability of these states; thus, efforts must be focused toward single-cell analyses. The approaches presented here constitute the forefront of epigenetics research at the single-cell level using classic and innovative methods to dissect epigenetics mechanisms from the limited material available in a single cell. This review further outlines exciting future avenues of research to address the significance of epigenetic heterogeneity and the contributions of microfluidics technologies to single-cell isolation and analysis.

Related Topics
Life Sciences Biochemistry, Genetics and Molecular Biology Cell Biology
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