Browse practical epigenetics articles, application notes, and research resources organized by topic. Use search to quickly locate guidance relevant to your workflow.

Learn how PRC2, PRC1, and H3K27me3 help maintain cell identity, regulate developmental genes, and guide experimental strategies for studying Polycomb repression
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Systemic lupus erythematosus (SLE) is a complex autoimmune disease that affects millions worldwide. It causes the immune system to mistakenly attack the body’s own tissues, leading to fatigue, joint pain,...
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A study in Theranostics has revealed how short-term fasting can reprogram exhausted immune cells to better combat liver cancer. The findings highlight the critical role of histone modifications—key...
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Epigenetic regulation through histone post-translational modifications (PTMs) is a cornerstone of gene expression control. The dynamic and reversible nature of these modifications, which comprise acetylation,...
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Epigenetic changes involving modifications to DNA and histones play a pivotal role in controlling gene expression, shaping cellular identity, and governing cellular functions. These changes are central to...
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Histones, the highly conserved proteins responsible for packaging DNA into chromatin, are subject to an array of chemical modifications. These post-translational modifications (PTMs) occur predominantly on...
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Folic acid (FA) is a member of the B vitamin family that is found in green foods like brussels sprouts, broccoli and spinach. It is essential to protecting the body from disease by helping to produce and...
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Measure circulating nucleosomes and detect histone modification marks directly from plasma and serum as a non-invasive biomarker strategy
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