Biomonitoring of toxic and potentially toxic trace elements in the urine of residents of an industrial region

Автор(и)

DOI:

https://doi.org/10.26641/2307-0404.2025.1.325456

Ключові слова:

heavy metals, trace elements, biosubstrates, urine, biomonitoring, industrial region, imbalance

Анотація

The problem of the influence of environmental heavy metals on the human body is extremely relevant. At the same time, the study of trace element status under the influence of environment and during various pathological processes in the body using modern biomonitoring methods is increasingly used as a tool for risk assessment, risk communication and decision-making on public health risk management. The purpose of the work was to determine the concentration and gender-age characteristics of the content of toxic and potentially toxic trace elements from the group of heavy metals in the urine of clinically healthy residents of the industrial region and patients with pyelonephritis. To achieve the goal, the content of toxic and potentially toxic trace elements – aluminum, lead, barium, cadmium and strontium - was determined in the urine of 108 residents of the Dnipropetrovsk region - clinically healthy individuals and patients with pyelonephritis during 2022-2024. It was established that the content of toxic and potentially toxic metals in the urine of conditionally "healthy" residents of the industrial region fluctuates in a wide range, cadmium concentration in the urine of the inhabitants of the region corresponds to the reference values, however it exceeds them in terms of aluminum, barium, lead and strontium content. The content of such xenobiotics as lead, cadmium and barium is 1.4-14.2 times higher than the data of studies conducted in the territory of the ecological-geochemical optimum according to the maximum and average indicators, which indicates their technogenic origin. Concentrations of barium, cadmium, lead, and strontium in urine of men is higher than in women, with lower levels of aluminum. The development of diseases of the urinary system is accompanied and may be aggravated by microelement imbalance, which is manifested by a significant increase in the concentration of aluminum and cadmium by 1.4-1.7 times with a decrease in the content of barium. During kidney diseases development adaptation of the organism was defined as a stage of tension and was related to the duration of the disease. The obtained results are an important basis for the further development of the national base of reference values for microelements content in the biosubstrates during biomonitoring for the timely diagnosis of microelement dyshomeostasis and the implementation of a set of measures to improve public health.

Посилання

Zhang Z, Guo S, Hua L, et al. Urinary levels of 14 metal elements in general population: a region-based exploratory study in china. Toxics. 2023;11(6):488. doi: https://doi.org/10.3390/toxics11060488

Andrusyshyna I. Elemental state of the organism of workers and population as manifestation of adaptation to the technogenic effect of metals: new methodological approaches. Medicni Perspektivi. 2021;26(4):174-80. doi: https://doi.org/10.26641/2307-0404.2021.4.248220

Lv Y, Wei Y, Zhou J, et al. Human biomonitoring of toxic and essential metals in younger elderly, octo-genarians, nonagenarians and centenarians: Analysis of the Healthy Ageing and Biomarkers Cohort Study (HABCS) in China. Environ Int. 2021;156:106717. doi: https://doi.org/10.1016/j.envint.2021.106717

Onul NM, Biletska EM, Stus VP, Polion MY. The role of lead in the etiopathogenesis of male fertility reduction. Wiad Lek. 2018;71(6):1155-60. PMID: 30267492

Saravanabhavan G, Werry K, Walker M, et al. Human biomonitoring reference values for metals and trace elements in blood and urine derived from the Canadian health measures survey 2007-2013. Inter J of Hygiene and Environmental health. 2017 Mar;220(2 Pt A):189-200. doi: https://doi.org/10.1016/j.ijheh.2016.10.006

Satarug S. Is chronic kidney disease due to cadmium exposure inevitable and can it be reversed? Biomedicines. 2024;12(4):718. doi: https://doi.org/10.3390/biomedicines12040718

Heitland P, Köster HD. Biomonitoring of 30 trace elements in urine of children and adults by ICP-MS. Clin Chim Acta. 2006;365(1-2):310-8. doi: https://doi.org/10.1016/j.cca.2005.09.013

Stojsavljević A, Ristić Medić D, Krstić D, et al. Circulatory imbalance of essential and toxic trace elements in pre dialysis and hemodialysis patients. Biological Trace Element Research. 2022 Jul;200(7):3117-25. doi: https://doi.org/10.1007/s12011-021-02940-7

Huber S, Michel J, Maurice R. A Fast-Forward Dilute-and-Shoot мultielement method for analysis of 33 elements in human whole blood, serum, and urine by inductively coupled plasma mass spectrometry: a stream-lined approach for clinical diagnostic and biomonitoring. Journal of Analytical Methods in Chemistry. 2024;2024:9944995. doi: https://doi.org/10.1155/2024/9944995

Ishcheikin KIe, Andrusyshyna IM, Holub IO, Lampeka OH, Pyvovar TM, Tsapko VH. [New approaches to hygienic standardization of optimal concentrations of toxic metals and essential trace elements in human biological environments]. Ukrainian Journal of Occupational Health. 2022;18(2):96-106. Ukrainian. doi: https://doi.org/10.33573/ujoh2022.02.096

National Report on Human Exposure to Environmental Chemicals. National Center for Environmental Health. U.S. Department of Health and Human Services, Centers for Disease Control and Prevention [Internet. 2022 [cited 2024 Dec 16]; updated 2024 Mar]. Available from: https://stacks.cdc.gov/view/cdc/133100 doi: https://doi.org/10.15620/cdc:133100

Heitland P, Koster HD. Human biomonitoring of 73 elements in blood, serum, erythrocytes and urine. Journal of Trace Elements in Medicine & Biology. 2021;64:126706. doi: https://doi.org/10.1016/j.jtemb.2020.126706

Goullé JP, Mahieu L, Castermant J, Neveu N, Bonneau L, Lainé G, et al. Metal and metalloid multi-elementary ICP-MS validation in whole blood, plasma, urine and hair. Reference values. Forensic Sci Int. 2005;153(1):39-44. doi: https://doi.org/10.1016/j.forsciint.2005.04.020

Riffenburgh R, Gillen D. Statistics in medicine. Elsevier Inc. London. 2020. 822 p.

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Опубліковано

2025-03-28

Як цитувати

1.
Onul N, Yuntunen H, Rodionova V, Biletska E, Polion M, Turenko O. Biomonitoring of toxic and potentially toxic trace elements in the urine of residents of an industrial region. Med. perspekt. [інтернет]. 28, Березень 2025 [цит. за 12, Квітень 2025];30(1):166-73. доступний у: https://journals.uran.ua/index.php/2307-0404/article/view/325456

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