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首页> 外文期刊>Antioxidants and redox signalling >Role of redox imbalance in the molecular mechanisms responsible for immunosenescence.
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Role of redox imbalance in the molecular mechanisms responsible for immunosenescence.

机译:氧化还原失衡在负责免疫衰老的分子机制中的作用。

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摘要

The elderly suffer impairments to their immune system, evidenced by higher susceptibility to infections, cancer, and many diseases believed to be autoimmune in nature. A dysregulated overexpression of many proinflammatory cytokines also occurs with aging, as does the synthesis of enzymes that control expression of inflammatory lipid mediators and reactive oxygen species. An inappropriate activation of redox-controlled transcription factors, like nuclear factor-kappaB, occurs in many tissues from aged donors, and has been linked to excesses in cellular oxidative stress. Recently, the peroxisome proliferator-activated receptor-alpha (PPARalpha) has been evaluated for its effects on inflammatory and adaptive immune processes. PPARalpha provides redox-balancing influences on various lymphoid cell types and their inducible responses. We recently discovered that PPARalpha transiently suppresses the transcription of gamma-interferon (IFNgamma) by inhibiting the induction of T-bet. We now report that PPARalphaexpression in CD4+ T cells is affected by the aging process. Lower PPARalpha levels are present in aged CD4+ T cells, and appear responsible for the suppressed interleukin-2 and exaggerated IFNgamma responses by these cells. Restoration of PPARalpha, T-bet, interleukin-2, and IFNgamma responses was found in T cells from aged animals supplemented with vitamin E, suggesting that interventions that focus on restoring redox balance might benefit the ailing aged immune system.
机译:老年人的免疫系统受到损害,这表现为对感染,癌症和许多自然界认为自身免疫性疾病的敏感性更高。随着年龄的增长,许多促炎细胞因子的过度表达失调也会发生,控制炎症脂质介体和活性氧物种表达的酶的合成也是如此。氧化还原控制的转录因子(如核因子-κB)的不适当活化发生在来自老年供体的许多组织中,并与细胞氧化应激过度有关。最近,已经评估了过氧化物酶体增殖物激活受体-α(PPARalpha)对炎症和适应性免疫过程的影响。 PPARalpha对各种淋巴样细胞类型及其诱导反应提供氧化还原平衡影响。我们最近发现,PPARalpha通过抑制T-bet的诱导而瞬时抑制了γ-干扰素(IFNgamma)的转录。现在我们报告CD4 + T细胞中的PPARalpha表达受到衰老过程的影响。较低的PPARalpha水平存在于衰老的CD4 + T细胞中,并似乎是这些细胞抑制白介素2和过度的IFNγ反应的原因。在补充维生素E的老龄动物的T细胞中发现了PPARalpha,T-bet,白细胞介素2和IFNgamma反应的恢复,这表明专注于恢复氧化还原平衡的干预措施可能有益于衰老的免疫系统。

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