CC..png    

Legal and postal addresses of the publisher: office 1336, 17 Naberezhnaya Severnoy Dviny, Arkhangelsk, 163002, Russian Federation, Northern (Arctic) Federal University named after M.V. Lomonosov

Phone: (818-2) 21-61-21
E-mail: vestnik_med@narfu.ru
https://vestnikmed.ru/en/

ABOUT JOURNAL

Phospholipid Profile at Different ω-6 Fatty Acids Levels in the Blood Serum of the Able-Bodied Population of the Yamalo-Nenets Autonomous Okrug. P. 54–60

Версия для печати

Section: Physiology

UDC

[612.12:577.125](571.121)

DOI

10.17238/issn2542-1298.2020.8.1.54

Authors

Boris A. Shengof* ORCID: 0000-0002-3776-1474
Fatima A. Bichkaeva* ORCID: 0000-0003-2970-4469
Sergey V. Andronov** ORCID: 0000-0002-5616-5897
*N. Laverov Federal Center for Integrated Arctic Research, Russian Academy of Sciences (Arkhangelsk, Russian Federation)
*Arctic Research Center (Yamalo-Nenets Autonomous Okrug, Salekhard, Russian Federation)
Corresponding author: Boris Shengof, address: prosp. Lomonosova 249, Arkhangelsk, 163000, Russian Federation; e-mail: b-shengof@yandex.ru

Abstract

This paper presents the results of a comparative analysis of phosphatidylserine, sphingomyelin, phosphatidylcholine and phosphatidylethanolamine content in the peripheral blood of the able-bodied population of the Yamalo-Nenets Autonomous Okrug at different levels of ω-6 fatty acids. The research was conducted in the period from 2015 to 2018 and involved 254 subjects aged between 22 and 60 years (mean age (M±SD) 43.25±10.05 years) born and permanently residing in the aforementioned area. Serum phospholipid concentrations were determined after preliminary lipid extraction by means of thin-layer chromatography. The next stage included methylation of the lipid extract followed by the production of fatty acid methyl esters. The content of ω-6 polyunsaturated fatty acids was determined by gas-liquid chromatography. As variables for subsequent analysis we used the sums of ω-6 fatty acids. According to the concentrations of ω-6 fatty acids, the subjects were divided into three groups: 1) 718.31–1052.82 μg/ml; 2) 433.44–718.31 μg/ml; 3) 1052.82–1198.06 μg/ml. Based on the results of the nonparametric analysis of variance, statistically significant differences in sphingomyelin and phosphatidylcholine were established between the groups, while phosphatidylserine and phosphatidylethanolamine levels showed no such differences. Post hoc comparisons revealed that in persons with a high content of ω-6 fatty acids (1052.82–1198.06 μg/ml) the proportion of sphingomyelin in the total pool of serum phospholipids decreases, which, in its turn, leads to a relative increase in the percentage of phosphatidylcholine.
For citation: Shengof B.A., Bichkaeva F.A., Andronov S.V. phospholipid profile at different ω-6 fatty acids levels in the blood serum of the Able-Bodied Population of the Yamalo-Nenets Autonomous Okrug. Journal of Medical and Biological Research, 2020, vol. 8, no. 1, pp. 54–60. DOI: 10.17238/issn2542-1298.2020.8.1.54

Keywords

phosphatidylserine, sphingomyelin, phosphatidylcholine, phosphatidylethanolamine, ω-6 fatty acids, population of the Yamalo-Nenets Autonomous Okrug
Download (pdf, 0.7MB )

References

1. Sevost’yanova E.V. Osobennosti lipidnogo i uglevodnogo metabolizma cheloveka na Severe (literaturnyy obzor) [Some Features of Human Lipid and Carbohydrate Metabolism in the North (Literature Review)]. Byulleten’ sibirskoy meditsiny, 2013, vol. 12, no. 1, pp. 93–100.
2. Snodgrass J.J., Sorensen M.V., Tarskaia L.A., Leonard W.R. Adaptive Dimensions of Health Research Among Indigenous Siberians. Am. J. Hum. Biol., 2007, vol. 19, no. 2, pp. 165–180.
3. Uvarova T.E., Burtseva T.E., Sofronova S.I., Efremova S.D., Gol’derova A.S. Lipidnyy profil’ krovi i osobennosti narusheniy lipidnogo obmena u korennykh malochislennykh narodov Severa Yakutii [Lipid Profile and Lipid Metabolism Disorders in Indigenous Small-Numbered Peoples of Northern Yakutia]. Dal’nevostochnyy meditsinskiy zhurnal, 2012, no. 3, pp. 85–88.
4. Panin L.E. Chelovek v ekstremal’nykh usloviyakh Arktiki [Man in Extreme Conditions in the Arctic]. Byulleten’ Sibirskogo otdeleniya RAMN, 2010, vol. 30, no. 3, pp. 92–98.
5. Zaytseva O.I., Tereshchenko V.P., Kolodyazhnaya T.A., Dvoryashina E.M. Adaptivnye variatsii fosfolipidnogo sostava membran eritrotsitov u detey razlichnykh regionov Sibiri [Adaptive Variations in the Phospholipid Composition of Erythrocyte Membranes in Children Living in Different Regions of Siberia]. Sibirskoe meditsinskoe obozrenie, 2008, no. 3, pp. 18–21.
6. Shengof B.A. Sravnitel’naya otsenka fraktsiy syvorotochnykh fosfolipidov u trudosposobnogo naseleniya yuzhnogo regiona Kavkaza i Yamalo-Nenetskogo avtonomnogo okruga [Comparative Evaluation of Serum Phospholipid Fractions in the Able-Bodied Population of the Southern Region of the Caucasus and the Yamalo-Nenets Autonomous Okrug]. Byulleten’ Severnogo gosudarstvennogo meditsinskogo universiteta, 2018, no. 1, pp. 78–80.
7. Boyko E.R. Fiziologo-biokhimicheskie osnovy zhiznedeyatel’nosti cheloveka na Severe [Physiological and Biochemical Bases of Human Life in the North]. Yekaterinburg, 2005. 190 p.
8. Binder H., Gawrisch K. Dehydration Induces Lateral Expansion of Polyunsaturated 18:0–22:6 Phosphatidylcholine in a New Lamellar Phase. Biophys. J., 2001, vol. 81, no. 2, pp. 969–982.
9. Simons K., Ikonen E. Functional Rafts in Cell Membranes. Nature, 1997, vol. 387, no. 6633, pp. 569–572.
10. Diatta A., Diallo F., Sarr N.G., Traore S., Diagne I., Lopez-Sall P., Sall N.D., Toure M. Defects in Peroxidation of Erythrocyte Phospholipids in Sickle Cell Trait. Dakar Med., 2002, vol. 47, no. 1, pp. 33–37.
11. Bichkaeva F.A., Baranova N.F., Vlasova O.S., Nesterova E.V., et al. FR.1.31.2019.33742. Methods of Measuring the Mass Concentration of Fatty Acid Methyl Esters (FAME) in the Serum by Means of Gas-Liquid Chromatography: MI 88-16365-001-2019. Arkhangelsk, 2019 (in Russ.).
12. State Standard R 53022.3–2008. Clinical laboratory technologies. Requirements of quality of clinical laboratory tests. Part 3. Assessment of laboratory tests clinical significance. Moscow, 2009. 18 p. (in Russ.).
13. Visnjić D., Batinić D., Banfić H. Arachidonic Acid Mediates Interferon-γ-Induced Sphingomyelin Hydrolysis and Monocytic Marker Expression in HL-60 Cell Line. Blood, 1997, vol. 89, no. 1, pp. 81–91.



Make a Submission


INDEXED IN: 

DOAJ_logo-colour.png

Elibrary.ru

logotype.png

infobaseindex

Логотип.png




Лань

OTHER NArFU JOURNALS: 

Vestnik of NArFU.
Series "Humanitarian and Social Sciences"

Forest Journal 
Лесной журнал 

Arctic and North