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Epigenetic Changes in Asthma: Role of DNA CpG Methylation / 결핵
Article in English | WPRIM (Western Pacific) | ID: wpr-782227
Responsible library: WPRO
ABSTRACT
risk of asthma. Until now, all of the discovered single nucleotide polymorphisms have explained genetic effects less than initially expected. Thus, clarification of environmental factors has been brought up to overcome the ‘missing’ heritability. The most exciting solution is epigenesis because it intervenes at the junction between the genome and the environment. Epigenesis is an alteration of genetic expression without changes of DNA sequence caused by environmental factors such as nutrients, allergens, cigarette smoke, air pollutants, use of drugs and infectious agents during pre- and post-natal periods and even in adulthood. Three major forms of epigenesis are composed of DNA methylation, histone modifications, and specific microRNA. Recently, several studies have been published on epigenesis in asthma and allergy as a powerful tool for research of genetic heritability in asthma albeit epigenetic changes are at the starting point to obtain the data on specific phenotypes of asthma. In this presentation, we mainly review the potential role of DNA CpG methylation in the risk of asthma and its sub-phenotypes including nonsteroidal anti-inflammatory exacerbated respiratory diseases.
Subject(s)

Full text: Available Health context: SDG3 - Health and Well-Being Health problem: Target 3.9: Reduce the amount of deaths produced by dangerous chemicals and the pollution of the air, water and soil Database: WPRIM (Western Pacific) Main subject: Phenotype / Asthma / Smoke / DNA / Allergens / Base Sequence / Aspirin / Genome / DNA Methylation / Polymorphism, Single Nucleotide Language: English Journal: Tuberculosis and Respiratory Diseases Year: 2020 Document type: Article
Full text: Available Health context: SDG3 - Health and Well-Being Health problem: Target 3.9: Reduce the amount of deaths produced by dangerous chemicals and the pollution of the air, water and soil Database: WPRIM (Western Pacific) Main subject: Phenotype / Asthma / Smoke / DNA / Allergens / Base Sequence / Aspirin / Genome / DNA Methylation / Polymorphism, Single Nucleotide Language: English Journal: Tuberculosis and Respiratory Diseases Year: 2020 Document type: Article
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