评估АDRВ1、AGT、SOD2、CAT 基因及其组合的多态性,以评估罹患心血管疾病的风险

N. Golovanova, I. Astratenkova, I. Lukyanova, Aleksandra V. Basanko
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引用次数: 0

摘要

背景:心血管疾病仍然是一个与高死亡率相关的重大公共卫生问题。这些疾病的发生与许多遗传因素和心血管风险因素有关,因此根据基因多态性研究一个人发生心血管疾病的遗传易感性仍然是现实的。本研究旨在研究健康年轻人的 ADRB1 rs1801253、AGT rs4762、SOD2 rs4880 和 CAT rs1001179 基因的多态性组合,以评估心血管疾病发病的个体遗传易感性。材料与方法:研究涉及 33 名年龄在 19 至 21 岁之间、目前没有心血管系统病变的人。从口腔上皮细胞中分离出 DNA。使用实时聚合酶链反应对 DNA 样本进行基因分型。结果:在受检者中,39.4% 的人有一个或两个 ADRB1、AGT 基因的不利等位基因,这表明他们有患心血管疾病的遗传倾向。与 AGT 基因相比,ADRB1 基因的不利等位基因更为常见。在接受检查的心血管疾病高危人群中,每个人都有一个或两个等位基因与抗氧化系统酶的功能下降有关。在 33 人中,只有 4 人(12.1%)没有 SOD2 和 CAT 基因的不利等位基因。结论:我们相信,确定抗氧化系统酶基因的多态性将成为更早、更积极地预防心血管疾病的另一个重要标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prevalence of polymorphism of АDRВ1, AGT, SOD2, CAT genes and their combinations to assess the risk of developing cardiovascular disease
BACKGROUND: Cardiovascular disease remains a major public health problem associated with high mortality. The development of these diseases is associated with many genetic and cardiovascular risk factors, so the study of a person’s genetic predisposition to the development of cardiovascular disease based on gene polymorphism remains actual. The aim of research was to study the combination of polymorphisms of the ADRB1 rs1801253, AGT rs4762, SOD2 rs4880 and CAT rs1001179 genes in healthy young people to assess individual genetic predisposition to the development of cardiovascular disease. MATERIALS AND METHODS: The study involved 33 people aged 19 to 21 years who currently had no pathology of the cardiovascular system. DNA was isolated from oral epithelial cells. Genotyping of DNA samples was determined using real-time polymerase chain reaction. RESULTS: Among those examined, 39.4% had one or two unfavorable alleles for the ADRB1, AGT genes, suggesting a genetic predisposition to the development of cardiovascular disease. Unfavorable alleles of the ADRB1 gene were more common compared to the AGT gene. Each of those examined at risk of developing cardiovascular disease had one or two alleles associated with a decrease in the functioning of enzymes of the antioxidant system. Of the 33 people, only four (12.1%) do not have an unfavorable allele for the SOD2 and CAT genes. CONCLUSIONS: We believe that the determination of polymorphisms in genes for enzymes of the antioxidant system will be an important additional criterion for earlier and more active prevention of cardiovascular disease.
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