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Coal mining environment causes adverse effects on workers

Bibliographic Data

ID22071191
AuthorsHuihui Chen (0000-0001-5272-7250, Wannan Medical College), Xinping Ding, Wenzhong Zhang (0000-0003-2340-7295, Wannan Medical College, corresponding author), Xichen Dong (Chinese Academy of Medical Sciences & Peking Union Medical College, corresponding author)
Year2024
Volume12
Pages1368557-1368557
Publication date2024-04-29
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueFrontiers in Public Health (JOURNAL)
Journal identifiersISSN: 2296-2565 • E-ISSN: 2296-2565
PublisherFrontiers Media SA (PUBLISHER • CH)
DOI10.3389/fpubh.2024.1368557
PMID38741904
OpenAlexW4396219460
LanguageEN
References cited35

Background The objective of this study is to study the adverse effects of coal mining environment on workers to discover early effective biomarkers. Methods The molecular epidemiological study was conducted with 502 in-service workers, who were divided into miner and auxiliary. We measured the individual levels of dust exposure for participants. Clinical examinations were conducted by qualified doctors. Peripheral blood was collected to measure biochemistry, hemogram, and karyocyte apoptosis. Results All workers were healthy who have not found with any diseases that can be diagnosed medically in the physical examination and showed no difference in dust exposure level, age, height, weight, and body mass index between groups. The working years of miners were lower than that of auxiliaries ( p < 0.001). Compared with auxiliaries, the concentration and percentage of lymphocytes ( p = 0.040, p = 0.012), basophils ( p = 0.027, p = 0.034), and red blood cells ( p < 0.001) and the concentration of hemoglobin of miners were lower ( p < 0.001). The percentage of neutrophils ( p = 0.003), the concentration of mean corpuscular hemoglobin concentration ( p = 0.002), and the proportion of karyocyte apoptosis in miners were higher ( p < 0.001). Miners presented higher blood urea nitrogen ( p < 0.001), ratio of blood urea nitrogen to creatinine ( p < 0.001), the high density lipoprotein cholesterol ( p < 0.001), lower creatinine ( p < 0.05), and cholesterol ( p < 0.001). Conclusion The coal mining environment impacted mining workers’ immune function, renal function, and the hematopoietic system, including BUN/CRE, HGB, RBC, and LYMPH, which could be used as early biomarkers to screen the health of coal miners

Animal science · Biology · Blood urea nitrogen · Body mass index · Cholesterol · Creatinine · Hemoglobin · Mean corpuscular volume · Urea · Air Quality and Health Impacts · Chemistry · Heavy Metal Exposure and Toxicity · Medicine · Occupational and environmental lung diseases · Biochemistry · Gastroenterology · Internal Medicine · Physiology

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