Epigenetics in Biology and Medicine

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Aberrant DNA Methylation
Acetyl K16 H4
acetylation
autoimmune disease epigenetics
biomedical research
cancer DNA methylation
Category=PSAK
Category=PSD
Cell Cycle Progression
chromatin remodeling
Compare DNA Methylation
cpg
deacetylase
deacetylases
dna
DNA Demethylation
DNA Hypermethylation
DNA Hypomethylation
DNA Methylation
DNA Methylation Marker
DNA Methylation Pattern
DNA Methylation Profile
epigenetic drug combinations
epigenetic therapy strategies
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eq_isMigrated=2
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eq_non-fiction
eq_science
FLC
FLC Expression
gene regulation mechanisms
H3 Modification
histone
histone acetylation
Histone Code
Histone H4
Histone Marks
Hypermethylated Tumor Suppressor Genes
Hypomethylating Agents
hypomethylation
ICF Syndrome
island
methyltransferases
modification
noncoding RNA function
PcG Target
plant epigenetic adaptation
PRC1
PRC1 Complex
PRC2
PRC2 Complex

Product details

  • ISBN 9780367403492
  • Weight: 444g
  • Dimensions: 156 x 234mm
  • Publication Date: 02 Oct 2019
  • Publisher: Taylor & Francis Ltd
  • Publication City/Country: GB
  • Product Form: Paperback
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Anomalous epigenetic patterns touch many areas of study including biomedical, scientific, and industrial. With perspectives from international experts, this resource offers an all-inclusive overview of epigenetics, which bridge DNA information and function by regulating gene expression without modifying the DNA sequence itself.

Epigenetics, in its most basic form, means heredity is not the sole determining factor in disease development. Rather, environmental and dietary factors can trigger a gene to behave in an unintended way, while the gene itself remains unchanged.

Epigenetics in Biology and Medicinediscusses cell biology and epigenetics’ role in human, animal, and plant diseases, including distortions in DNA methylation. The text also covers histone modifications, and epigenomics, as well as dietary and environmental impacts on epigenetic changes.

Addresses These Important Questions:

  • How promising are HDACi drugs as anti-tumor agents?
  • Will restoring normal levels of miRNAs change the course of devastating diseases?
  • Is it possible to alter epigenetic mechanisms once they are triggered?
  • Is it possible to correct the abnormalities in methylation patterns that impact auto-immunities?
  • Represents a Landmark Publication in this Cutting-Edge Field

    Dr. Manel Esteller, the editor of the volume, is a leading expert in molecular genetics of endometrial carcinoma. Under his editorial guidance, this publication goes beyond heredity to explain the crucial role of epigenetics in plants and physical and psychological diseases.

    This text is applicable to a wide range of researchers, including those invested in the applications of cell biology, those involved in disease research and deciding genetic patterns, and those coalitions concerned with the impact of epigenetics and possible cures. As a result, it has the potenti

    Manel Esteller