Polymorphism of p-450 cytochrome detoxication genes in adolescents depending on the degree of contamination of the organism by heavy metals
- Authors: Setko N.P.1, Setko A.G.1, Bulycheva E.V.1, Tyurin A.V.1, Kalinina E.Y.1
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Affiliations:
- Orenburg State Medical University
- Issue: Vol 99, No 5 (2020)
- Pages: 478-482
- Section: HYGIENE OF CHILDREN AND ADOLESCENTS
- Published: 07.07.2020
- URL: https://archivog.com/0016-9900/article/view/639741
- DOI: https://doi.org/10.47470/0016-9900-2020-99-5-478-482
- ID: 639741
Cite item
Full Text
Abstract
Introduction. Changes in the body of children and adolescents aimed at adapting to environmental factors are determined by genetic polymorphism in xenobiotic biotransformation genes, determining the degree of susceptibility of the child’s body to pollutants, which is the basis of modern personalized preventive medicine when managing risks to the health of the child population under the influence of environmental factors.
Material and methods. Trace elements, including heavy metals, lead and cadmium, were determined in the hair of 256 practically healthy teenagers by atomic absorption spectrophotometry. Depending on the level of content of the latter, two groups of adolescents were formed to determine six genes of the cytochrome P-450 family. Group 1 consisted of adolescents whose cadmium lead content exceeded the average Russian indices. The second group included adolescents whose heavy metals were above the level of average Russian standards.
Results. Studies have shown that in adolescents of the 1st group, compared with the data of adolescents of the 2nd group, an increase in the number of carriers of two mutant alleles at the locus rs 1048943 (gene CYP1A1) is 3.08 times, rs 464621 (gene CYP1A1) is 1. 8 times; locus rs 2069522 (CYP1A2 gene) 3.63 times; locus rs 1799853 (CYP2C9 * 2 gene) 4.5 times; locus rs 1057910 (gene CYP2C9 * 3) 3.8 times and locus rs 2279343 (gene CYP2B6) 4.25 times. Moreover, carriers of two normal alleles in adolescents of the first group at the locus rs 1048943 (gene CYP1A1) were 5.14 times; locus rs 2279343 (CYP2B6 gene) was 6.5 fold less than among adolescents of the 2nd group; and at the locus rs 464621 (gene CYP1A1), rs 2069522 (gene CYP1A2), rs 1799853 (gene CYP2C9 * 2), rs 1057910 (gene CYP2C9 * 3) there were no carriers of normal homozygotes.
Conclusion. Group 1 adolescents with heavy metal contamination of the body are carriers significantly in a greater number of pathological mutations in the genes of the cytochrome P-450 detoxification system in comparison with data from group 2 adolescents.
About the authors
N. P. Setko
Orenburg State Medical University
Author for correspondence.
Email: noemail@neicon.ru
ORCID iD: 0000-0003-3373-4695
Russian Federation
A. G. Setko
Orenburg State Medical University
Email: noemail@neicon.ru
ORCID iD: 0000-0002-9724-8672
Russian Federation
Ekaterina V. Bulycheva
Orenburg State Medical University
Email: e-sosnina@mail.ru
ORCID iD: 0000-0002-8215-8674
MD, Ph.D., Associate Professor of the Department of Preventive Medicine, Orenburg State Medical University, Orenburg, 460000, Russian Federation.
e-mail: e-sosnina@mail.ru
Russian FederationA. V. Tyurin
Orenburg State Medical University
Email: noemail@neicon.ru
ORCID iD: 0000-0003-4263-0548
Russian Federation
E. Yu. Kalinina
Orenburg State Medical University
Email: noemail@neicon.ru
ORCID iD: 0000-0003-2895-0318
Russian Federation
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