Chronic stress increases transcriptomic indicators of biological aging in mouse bone marrow leukocytes.

Brain Behav Immun Health

Cousins Center for Psychoneuroimmunology, Semel Institute for Neuroscience and Human Behavior, University of California, Los Angeles, USA.

Published: July 2022

Research with animals and humans has demonstrated that chronic stress exposure can impact key biological aging pathways such as inflammation and DNA damage, suggesting a mechanism through which stress may increase risk for age-related disease. However, it is less clear whether these effects extend to other hallmarks of the aging process, such as cellular senescence. Male SCID mice were exposed to 14 days of restraint stress, with ( ​= ​6) or without ( ​= ​10) propranolol administration, or a non-stress control condition ( ​= ​10). Normal femoral bone marrow leukocytes were isolated from engrafted leukemia cells that had been injected prior to the stressor, as the mice were also under a cancer challenge. We performed whole genome transcriptional profiling to assess indicators of biological aging: cell stress, DNA damage repair, cellular senescence markers p16 and p21, and the pro-inflammatory senescence-associated secretory phenotype (SASP). ANCOVAs that adjusted for tumor load and Fisher's pairwise comparisons revealed that stressed mice had enhanced p16 ( ​= ​.02) and p21 ( ​= ​.004), lower DNA damage repair ( ​< ​.001), and higher SASP ( ​= ​.03) gene expression than control mice. Stressed mice also showed up-regulated beta-adrenergic (CREB) and inflammatory (NF-B, AP-1) and down-regulated cell stress (Nrf2) transcription factor activity relative to control mice (s ​< ​.01). Propranolol reversed CREB and Nrf2 activity (s ​< ​.03). Findings suggest that chronic stress exposure can impact several key biological aging pathways within bone marrow leukocytes and these effects may be partially mediated by sympathetic beta-adrenergic receptor activation.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9035650PMC
http://dx.doi.org/10.1016/j.bbih.2022.100461DOI Listing

Publication Analysis

Top Keywords

biological aging
12
dna damage
12
chronic stress
8
indicators biological
8
bone marrow
8
marrow leukocytes
8
cellular senescence
8
damage repair
8
stress increases
4
increases transcriptomic
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!