CELLULAR GENOME IN PATHOGENESIS OF BASIC DISEASES IN HUMANS (ATHEROSCLEROSIS, AUTOIMMUNE DISEASES, CANCER)

Despite of considerable differences in etiology, pathogenesis, clinical and laboratory, data, and, finally, different clinical features of such diseases as atherosclerosis, autoimmune and allergic diseases, there exists a lot of evidence suggesting that, basically, these disorders have much in commo...

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Autor principal: V. A. Kozlov
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Lenguaje:RU
Publicado: SPb RAACI 2014
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spelling oai:doaj.org-article:ab4adbf9386946aa9e5c93f608619f892021-11-18T08:03:38ZCELLULAR GENOME IN PATHOGENESIS OF BASIC DISEASES IN HUMANS (ATHEROSCLEROSIS, AUTOIMMUNE DISEASES, CANCER)1563-06252313-741X10.15789/1563-0625-2010-4-5-285-296https://doaj.org/article/ab4adbf9386946aa9e5c93f608619f892014-07-01T00:00:00Zhttps://www.mimmun.ru/mimmun/article/view/125https://doaj.org/toc/1563-0625https://doaj.org/toc/2313-741XDespite of considerable differences in etiology, pathogenesis, clinical and laboratory, data, and, finally, different clinical features of such diseases as atherosclerosis, autoimmune and allergic diseases, there exists a lot of evidence suggesting that, basically, these disorders have much in common. First of all, it concerns epigenetic regulatory mechanisms of gene expression that show virtually identical patterns of changes, i.e., total hypomethylation and reversible hypermethylation of distinct genes. The events connected with regulation of telomere length are also similar in all the mentioned disorders. In general, this concept draws attention to current needs for urgent development of novel therapeutic approaches for these very common disorders, by means of drugs that would be able to influence some molecular mechanisms, underlying epigenetic regulation of gene expression.V. A. KozlovSPb RAACIarticlegenomemethylationatherosclerosistelomerecancerImmunologic diseases. AllergyRC581-607RUMedicinskaâ Immunologiâ, Vol 12, Iss 4-5, Pp 285-296 (2014)
institution DOAJ
collection DOAJ
language RU
topic genome
methylation
atherosclerosis
telomere
cancer
Immunologic diseases. Allergy
RC581-607
spellingShingle genome
methylation
atherosclerosis
telomere
cancer
Immunologic diseases. Allergy
RC581-607
V. A. Kozlov
CELLULAR GENOME IN PATHOGENESIS OF BASIC DISEASES IN HUMANS (ATHEROSCLEROSIS, AUTOIMMUNE DISEASES, CANCER)
description Despite of considerable differences in etiology, pathogenesis, clinical and laboratory, data, and, finally, different clinical features of such diseases as atherosclerosis, autoimmune and allergic diseases, there exists a lot of evidence suggesting that, basically, these disorders have much in common. First of all, it concerns epigenetic regulatory mechanisms of gene expression that show virtually identical patterns of changes, i.e., total hypomethylation and reversible hypermethylation of distinct genes. The events connected with regulation of telomere length are also similar in all the mentioned disorders. In general, this concept draws attention to current needs for urgent development of novel therapeutic approaches for these very common disorders, by means of drugs that would be able to influence some molecular mechanisms, underlying epigenetic regulation of gene expression.
format article
author V. A. Kozlov
author_facet V. A. Kozlov
author_sort V. A. Kozlov
title CELLULAR GENOME IN PATHOGENESIS OF BASIC DISEASES IN HUMANS (ATHEROSCLEROSIS, AUTOIMMUNE DISEASES, CANCER)
title_short CELLULAR GENOME IN PATHOGENESIS OF BASIC DISEASES IN HUMANS (ATHEROSCLEROSIS, AUTOIMMUNE DISEASES, CANCER)
title_full CELLULAR GENOME IN PATHOGENESIS OF BASIC DISEASES IN HUMANS (ATHEROSCLEROSIS, AUTOIMMUNE DISEASES, CANCER)
title_fullStr CELLULAR GENOME IN PATHOGENESIS OF BASIC DISEASES IN HUMANS (ATHEROSCLEROSIS, AUTOIMMUNE DISEASES, CANCER)
title_full_unstemmed CELLULAR GENOME IN PATHOGENESIS OF BASIC DISEASES IN HUMANS (ATHEROSCLEROSIS, AUTOIMMUNE DISEASES, CANCER)
title_sort cellular genome in pathogenesis of basic diseases in humans (atherosclerosis, autoimmune diseases, cancer)
publisher SPb RAACI
publishDate 2014
url https://doaj.org/article/ab4adbf9386946aa9e5c93f608619f89
work_keys_str_mv AT vakozlov cellulargenomeinpathogenesisofbasicdiseasesinhumansatherosclerosisautoimmunediseasescancer
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