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Features of the immune system and levels of blood transport components in residents of the arctic of the Russian Federation

Bibliographic Data

ID19458951
AuthorsKsenia O Pashinskaya (0000-0001-6774-4598, Institute of Physiology of Natural Adaptations N. Laverov Federal Center for Integrated Arctic Research of the Ural Branch of the Russian Academy of Sciences (FECIAR UrB RAS) Arkhangelsk Russian Federation, corresponding author), Samodova V Samodova (0000-0001-9835-8083, Institute of Physiology of Natural Adaptations N. Laverov Federal Center for Integrated Arctic Research of the Ural Branch of the Russian Academy of Sciences (FECIAR UrB RAS) Arkhangelsk Russian Federation), Liliya K Dobrodeeva (0000-0003-3211-7716, Institute of Physiology of Natural Adaptations N. Laverov Federal Center for Integrated Arctic Research of the Ural Branch of the Russian Academy of Sciences (FECIAR UrB RAS) Arkhangelsk Russian Federation)
Year2024
Volume36
Issue10
Pagese24136-e24136
Publication date2024-10-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueAmerican Journal of Human Biology (JOURNAL)
Journal identifiersISSN: 1042-0533 • E-ISSN: 1520-6300
PublisherWiley (PUBLISHER • GB)
DOI10.1002/ajhb.24136
PMID39032081
OpenAlexW4400841974
LanguageEN
References cited25

Changes in the immune status and the content of blood transport components reflect adaptations in the human body in response to adverse factors, showcasing the organism's adaptive capabilities and functional state. In this study, we aimed to determine the features of the immune system and levels of transport components of the blood system in residents of the Arctic of the Russian Federation. METHODS: The peripheral venous blood of 191 residents of the Arctic of the Russian Federation (Murmansk Oblast) aged 21-55 analyzed comprehensively. Blood was sampled from the ulnar vein on an empty stomach in the morning. The hemogram, phagocytic activity of neutrophils, lymphocyte content with CD3, CD4, CD8, CD10, CD19, CD16, CD71, CD25, HLA-DR and CD95 phenotypes, concentrations of cytokines: TNF-α, IFN-γ, IL-6, IL-10, extracellular receptor pool: sCD71, sCD62L, sApo-1/Fas, sFasL, circulating immune complexes (CIC) and blood transport components: haptoglobin (Hp), transferrin, IgM, IgG, IgA, IgE (immunoglobulins M, G, A and E) low-density lipoproteins (LDL), and high density lipoprotein (HDL) were evaluated. The results were analyzed using descriptive statistics and comparative, factorial, and regression analyses. RESULTS: Residents of the Murmansk Oblast exhibit a high prevalence of erythrocytosis (62.3%), thrombocytosis (25.0%), leukocytosis (20.1%), and increased hemoglobin (Hb) concentrations (42.5%), coupled with a significantly decreased level of active phagocytes (47.6%). A significantly decreased level of lymphocytes with phenotypes CD3 (92.4%), CD4 (40.4%), CD71 (62.3%) was revealed, coupled with the activation of lymphocytes with phenotypes CD16 (50.1%), CD8 (37.5%), CD19 (15.9%) and increased concentrations of pro-inflammatory IFN-γ (47.9%), IL-6 (33.3%), and TNF-α (20.1%). Elevated levels of sCD71 (56.6%), sCD62L (32.1%), sApo-1/Fas (22.1%), sFasL (10.2%), and autoantibodies to double-stranded DNA (57.1%), RNA (10.4%), and oLDL (oxidized-modified LDL) (16.3%) were recorded in residents of the Murmansk Oblast. Arctic residents showed elevated concentrations of Hp (63.3%), IgM (63.9%), IgA (42.4%), IgE (18.8%), LDL (24.9%), and a decreased level of HDL (21.1%) owing to an ApoA-I ligand deficiency (58.1%). Elevated levels of Hp in the blood are associated with increased erythrocyte aggregation frequency, T-lymphocyte activation, and increased concentration of free receptors of the extracellular pool. Increased IgM and IgA levels in the blood are attributed to the need to bind components of the extracellular receptor pool sCD71, sCD62L, sApo-1/Fas, sFasL and are associated with decreased levels lymphocyte with CD8 and CD16 phenotypes. The humoral immune response in Arctic residents is triggered when the cellular component of immunity is under strain which compounded by ineffective clearance of metabolic byproducts owing to imbalanced LDL and HDL lipid transport complexes. CONCLUSIONS: The immune system of Arctic residents is characterized by excessive cytotoxic activity of lymphocytes and increased concentrations of pro-inflammatory cytokines, free forms of receptors of the extracellular pool, and autoantibodies. The change in the content of transport components of the blood system is directed at maintaining homeostasis by exhibiting antioxidant, anti-inflammatory, and immunoregulatory properties

Biology · CD8 · Haptoglobin · Immune system · Human Health and Disease · Inflammatory Biomarkers in Disease Prognosis · Medicine · Probabilistic Statistics in Medicine · Immunology · Internal Medicine

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