表观遗传学
DNA甲基化
免疫系统
甲基化
免疫学
细胞因子
生物
CpG站点
白细胞介素6
免疫
医学
疾病
基因表达调控
先天免疫系统
免疫疗法
生物信息学
表观遗传学
基因
基因表达
后生
亚硫酸氢盐测序
亚硫酸氢盐
癌症研究
全血
表观基因组
作者
Zerrin Yulugkural,Mustafa Yildiz,Ertugrul Topcu,Habibe Tülin Elmaslar Mert,Alp Temiz
摘要
Background Host immune responses, including cytokine production, shape the severity of viral epidemics. Epigenetic mechanisms such as DNA methylation regulate cytokine gene expression and may contribute to immune dysregulation in severe disease. Methods This study analyzed interleukin‐7 (IL‐7), IL‐8, and IL‐10 promoter methylation in 145 COVID‐19 patients (91 wards, 54 intensive care units (ICUs)), excluding 12 patients receiving epigenetically active drugs. Peripheral blood DNA underwent bisulfite conversion, followed by PCR and gel electrophoresis. Gene‐specific methylation levels were quantified using beta values. Results IL‐7 was significantly hypermethylated overall (β = 0.835, p < 0.001), especially in ICU patients (β = 0.863, p = 0.001), independent of age, mortality, and malignancy. An interaction between age and ICU status indicated group‐specific effects. IL‐10 showed significant hypomethylation (β = 0.243, p < 0.001), while IL‐8 methylation did not differ significantly ( p = 0.373). ICU patients had higher mortality (26% vs 5.5%, p < 0.001). Conclusion IL‐7 hypermethylation may impair T‐cell–mediated immunity in severe cases, while IL‐10 hypomethylation may reflect enhanced immunosuppression. These findings suggest a role for epigenetic cytokine regulation in disease progression and may guide future immunomodulatory strategies.
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