衰老
免疫系统
下调和上调
表型
炎症
生物
线粒体生物发生
细胞生物学
活性氧
自噬
线粒体
转录组
基因表达
细胞
内科学
内分泌学
老化
HMGB1
免疫学
基因
氧化应激
拉明
电池类型
抗体
生物发生
免疫失调
基因表达调控
免疫
医学
癌症研究
内生
标识
DOI:10.14336/ad.2025.0871
摘要
Chronic systemic inflammation in the elderly is a hallmark of aging and a major contributor to age-related diseases. It both results from and promotes the accumulation of senescent immune cells. While the sex difference in the aging process has been widely studied, the impact of cellular sex on immune cell senescence remains unclear and was the focus of this present study. Senescence was induced in human male (THP-1) and female (HL-60) monocyte-like cells by treatment with D-galactose for 48 h. The expression of metabolic sensors (Sirt1 and pAMPK), mitochondrial biogenesis and respiration, reactive oxygen species formation, as well as pro-inflammatory markers was investigated alongside senescence markers. Treatment with D-galactose resulted in significant reduction of the nuclear proteins HMGB1 and lamin B1, and an upregulation of senescence-associated secretory phenotype factors including IL-6, VEGF, TGF-β, and MMP-9, in male and female cells. The expression of the metabolic sensors Sirt1 and pAMPK was reduced, whereas mitochondrial ROS production and mitochondrial gene expression were elevated in both male and female cells to a similar extent. In contrast, D-Galactose-induced senescence was accompanied by a significant elevation of pro-inflammatory markers (NF-κB, TNF-α, IL-1β, HLA-DR, and MCP-1) primarily in male monocytes, whereas primary monocytes did not display sex differences. This study suggests that male immune cells are more prone to developing a pro-inflammatory state under senescent stimuli. These findings highlight the potential significance of sex-specific anti-inflammatory therapies.
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