Transcriptome alterations in long-term mining region residents: Insights into immune response and molecular pathways.

Abstract:

Pollution with metals and metalloids is a global problem that adversely affects human health and environment. Although several studies have reported gene expression changes in response to human exposures to metals, there are a limited number of studies exploring the effect of long-term residence in mining areas. The evidence of increased levels of several essential and non-essential metals in soil, water, and plants in Kapan mining area (Armenia) has been previously demonstrated in several environmental studies. Our study investigated the impact of long-term residence in this mining area on the transcriptome state of human peripheral blood mononuclear cells and the possible association of transcriptome changes with the blood metallome. In total, 58 participants including 27 mining region residents (MRR) and 31 non-mining region residents (NMR) were selected for our study. Transcriptomic analysis of peripheral blood mononuclear cells was performed by mRNA sequencing. Differential expression analyses were conducted using generalized linear modeling, optimized for participant demographics, cell types, and sequencing technical factors, followed by pathway analysis. The study revealed that long-term residence in a mining area is correlated with alterations in the blood transcriptome, with responses varying by sex. The identified transcriptome changes were enriched for pathways related to immune response and RNA translation. These changes correlated with higher blood levels of a mixture of non-essential metals, including arsenic, antimony, nickel, thallium, and beryllium. Additionally, the study identified differences in the transcriptome response between male and female MRR. While females exhibited a stronger immune response, males show dysregulation in ion transport and epigenetic modifications. Our findings contribute to understanding the effects of long-term residence in mining regions and can aid in developing more effective risk assessment and mitigation approaches in target populations.

SEEK ID: https://armlifebank.am/publications/23

PubMed ID: 40023890

Projects: Omics-Based Insights into Human Long-Term Exposure to Environmental Metals

Publication type: Journal

Journal: Environ Int

Citation: Environ Int. 2025 Mar;197:109344. doi: 10.1016/j.envint.2025.109344. Epub 2025 Feb 21.

Date Published: 24th Mar 2025

Registered Mode: by PubMed ID

Authors: A. Stepanyan, A. Arakelyan, J. Schug

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Created: 10th Apr 2025 at 12:12

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