Exercise and inflammatory cytokine regulation among older adults with myeloid malignancies

Exp Gerontol. 2024 Mar:187:112364. doi: 10.1016/j.exger.2024.112364. Epub 2024 Jan 25.

Abstract

Tumor necrosis factor (TNF)α is a major regulator of inflammation. However, the epigenetic regulation of TNFα in the context of an exercise intervention among older adults with cancer is understudied. In this exploratory analysis, we used data from a single-arm mobile health (mHealth) exercise intervention among older adults with myeloid malignancies to 1) assess changes in TNFα promoter methylation, TNFα mRNA expression, serum TNFα and other related-cytokine levels after intervention; and 2) assess correlations between blood markers and exercise levels. Twenty patients were included. From baseline to post-intervention, there was no statistical changes in TNFα promoter methylation status at seven CpG sites, TNFα mRNA expression, and serum TNFα levels. Effect sizes, however, were moderate to large for several CpG sites (-120, -147, -162, and -164; Cohen's d = 0.44-0.75). Median serum TNFα sR1 levels increased (83.63, IQR 130.58, p = 0.06; Cohen's d = 0.18) but not the other cytokines. Increases in average daily steps were correlated with increases in TNFα promoter methylation at CpG sites -147 (r = 0.48; p = 0.06) and -164 (r = 0.51; p = 0.04). Resistance training minutes were negatively correlated with TNFα promoter methylation at CpG site -120 (r = -0.62; p = 0.02). All effect sizes were moderate to large. In conclusion, after a mHealth exercise intervention, we demonstrated changes with moderate to large effect sizes in several CpG sites in the TNFα promoter region. Exercise levels were correlated with increases in TNFα promoter methylation. Larger exercise trials are needed to better evaluate TNFα regulation to inform interventions to augment TNFα regulation in order to improve outcomes in older adults with cancer.

Keywords: Cytokines; DNA methylation; Exercise; Inflammation; Mobile health; Myeloid malignancies.

MeSH terms

  • Aged
  • Cytokines* / genetics
  • Cytokines* / metabolism
  • DNA Methylation
  • Epigenesis, Genetic
  • Humans
  • Neoplasms* / genetics
  • RNA, Messenger / genetics
  • Tumor Necrosis Factor-alpha

Substances

  • Cytokines
  • Tumor Necrosis Factor-alpha
  • RNA, Messenger