Transcriptomics study of hippocampus in mice exposed to heat stress.

Psychoneuroendocrinology

College of Bioscience and Biotechnology, Yangzhou University, Yangzhou, Jiangsu, China. Electronic address:

Published: January 2025

AI Article Synopsis

  • Heat stress (HS) prompts neuroinflammation and cognitive issues in the brain, leading to a study that compared the gene expression of mouse hippocampal tissue under HS conditions versus control.
  • Analysis showed that HS exposure resulted in 210 differentially expressed genes, indicating significant changes, with 72 genes upregulated and 138 downregulated.
  • Notably, the study found that taurine treatment could improve cognitive functions affected by HS, suggesting potential strategies for mitigating heat-induced cognitive impairments in vulnerable groups.

Article Abstract

Heat stress (HS) triggers various pathophysiological responses in the brain, including neuroinflammation and cognitive impairments. The objective of this study was to examine the impact of HS by comparing the hippocampal transcriptomes of mice exposed to HS with those under control conditions. Our analysis revealed that HS exposure did not affect the number of SNP or InDel mutations in the mouse hippocampus, nor did it influence SNP functions, distribution, or types. However, HS did lead to differential gene expression in the hippocampus, with 210 differentially expressed genes (DEGs), including 72 upregulated and 138 downregulated genes. Gene Ontology (GO) analysis indicated that these DEGs are involved in hippocampal responses to various stimuli (chemical, oxygen-containing compounds, peptide hormones), metabolic processes (arachidonic acid, olefinic compound metabolism, lipid metabolism), and other functions. The regulation of these functions may be closely linked to specific DEGs, such as Card14, Ntrk1, Lcn2, Irs4, Cyp2c70, Hamp, Ambp, Gh, Mup19, and others, which exhibit the highest degree of differential variation. Furthermore, we observed that pre-treatment with taurine primarily modulated cognitive functions in the hippocampus following HS. Therefore, our study offers valuable insights for future research on heat stress-induced cognitive impairments and provides a theoretical foundation for developing taurine-based preventive strategies for high-risk populations.

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Source
http://dx.doi.org/10.1016/j.psyneuen.2025.107279DOI Listing

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