Cabrera Dominick, Thompson Kayla, Thomas Julius D, Peacock Corey, Antonio Jose, Tartar Jaime L, Tartar Aurelien
Psychology, Nova Southeastern University Dr. Kiran C. Patel College of Osteopathic Medicine, Davie, USA.
Psychology, Nova Southeastern University, Davie, USA.
Cureus. 2023 Feb 13;15(2):e34944. doi: 10.7759/cureus.34944. eCollection 2023 Feb.
Psychological and physical stress can induce dysregulation of gene expression via changes in DNA methylation and microRNA (miRNA) expression. Such epigenetic modifications are yet to be investigated in professional Mixed Martial Arts (MMA) fighters subject to highly stressful training involving repetitive head impacts. This study examined differences in DNA methylation and miRNA expression in elite MMA fighters compared to active controls. Global methylation differences between groups were assessed via a LINE-1 assay. At the same time, PCR arrays were used to estimate differential expression in samples of 21 fighters and 15 controls for 192 different miRNAs associated with inflammatory diseases. An Independent-Samples -Test found no significant difference in LINE-1 methylation between groups. However, an Independent-Samples Mann-Whitney U Test revealed a significant upregulation in the expression of miR-155 in MMA fighter plasma. Since miR-155 has been recognized as an important regulator of neuroinflammation, this dysregulation suggests a possible epigenetic mechanism responsible for chronic inflammation associated with professional-level MMA training. Consistent with other published works, this study highlights the potential of miR-155 not only as a biomarker for monitoring long-term health risks linked to head trauma but also as a target to remediate the impact of chronic neuroinflammation.
心理和生理压力可通过DNA甲基化和微小RNA(miRNA)表达的变化诱导基因表达失调。在经历涉及重复性头部撞击的高度压力训练的职业综合格斗(MMA)运动员中,这种表观遗传修饰尚未得到研究。本研究调查了精英MMA运动员与活跃对照组相比在DNA甲基化和miRNA表达方面的差异。通过LINE-1检测评估两组之间的整体甲基化差异。同时,使用PCR阵列估计21名运动员和15名对照组样本中与炎症性疾病相关的192种不同miRNA的差异表达。独立样本t检验发现两组之间LINE-1甲基化无显著差异。然而,独立样本曼-惠特尼U检验显示MMA运动员血浆中miR-155的表达显著上调。由于miR-155已被认为是神经炎症的重要调节因子,这种失调表明可能存在一种表观遗传机制,导致与职业水平MMA训练相关的慢性炎症。与其他已发表的研究一致,本研究强调了miR-155不仅作为监测与头部创伤相关的长期健康风险的生物标志物的潜力,而且作为缓解慢性神经炎症影响的靶点的潜力。