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首页> 外文期刊>Metabolic brain disease >Mitochondrial dysfunctions in myalgic encephalomyelitis/chronic fatigue syndrome explained by activated immuno-inflammatory, oxidative and nitrosative stress pathways.
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Mitochondrial dysfunctions in myalgic encephalomyelitis/chronic fatigue syndrome explained by activated immuno-inflammatory, oxidative and nitrosative stress pathways.

机译:肌炎性脑脊髓炎/慢性疲劳综合征的线粒体功能障碍可通过激活的免疫炎性,氧化性和亚硝化应激途径来解释。

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Myalgic encephalomyelitis/chronic fatigue syndrome (ME/cfs) is classified by the World Health Organization as a disorder of the central nervous system. ME/cfs is an neuro-immune disorder accompanied by chronic low-grade inflammation, increased levels of oxidative and nitrosative stress (O&NS), O&NS-mediated damage to fatty acids, DNA and proteins, autoimmune reactions directed against neoantigens and brain disorders. Mitochondrial dysfunctions have been found in ME/cfs, e.g. lowered ATP production, impaired oxidative phosphorylation and mitochondrial damage. This paper reviews the pathways that may explain mitochondrial dysfunctions in ME/cfs. Increased levels of pro-inflammatory cytokines, such as interleukin-1 and tumor necrosis factor-α, and elastase, and increased O&NS may inhibit mitochondrial respiration, decrease the activities of the electron transport chain and mitochondrial membrane potential, increase mitochondrial membrane permeability, interfere with ATP production and cause mitochondrial shutdown. The activated O&NS pathways may additionally lead to damage of mitochondrial DNA and membranes thus decreasing membrane fluidity. Lowered levels of antioxidants, zinc and coenzyme Q10, and ω3 polyunsaturated fatty acids in ME/cfs may further aggravate the activated immuno-inflammatory and O&NS pathways. Therefore, it may be concluded that immuno-inflammatory and O&NS pathways may play a role in the mitochondrial dysfunctions and consequently the bioenergetic abnormalities seen in patients with ME/cfs. Defects in ATP production and the electron transport complex, in turn, are associated with an elevated production of superoxide and hydrogen peroxide in mitochondria creating adaptive and synergistic damage. It is argued that mitochondrial dysfunctions, e.g. lowered ATP production, may play a role in the onset of ME/cfs symptoms, e.g. fatigue and post exertional malaise, and may explain in part the central metabolic abnormalities observed in ME/cfs, e.g. glucose hypometabolism and cerebral hypoperfusion.
机译:肌炎性脑脊髓炎/慢性疲劳综合症(ME / cfs)被世界卫生组织分类为中枢神经系统疾病。 ME / cfs是一种神经免疫疾病,伴有慢性低度炎症,氧化和亚硝化应激(O&NS)水平升高,O&NS介导的对脂肪酸,DNA和蛋白质的破坏,针对新抗原和脑疾病的自身免疫反应。在ME / cfs中发现线粒体功能障碍,例如降低了ATP的产生,削弱了氧化磷酸化和线粒体的损​​害。本文综述了可能解释ME / cfs中线粒体功能障碍的途径。促炎细胞因子(如白介素1和肿瘤坏死因子-α)和弹性蛋白酶的水平升高,以及O&NS的升高可能会抑制线粒体呼吸,降低电子转运链和线粒体膜电位的活性,增加线粒体膜通透性,干扰ATP产生并导致线粒体关闭。激活的O&NS途径可能另外导致线粒体DNA和膜的损伤,从而降低膜的流动性。 ME / cfs中抗氧化剂,锌和辅酶Q10以及ω3多不饱和脂肪酸的含量降低,可能会进一步加剧激活的免疫炎症和O&NS途径。因此,可以得出结论,免疫炎症和O&NS途径可能在线粒体功能障碍中发挥作用,并因此在ME / cfs患者中发现了生物能异常。反过来,ATP产生和电子传输复合物的缺陷与线粒体中超氧化物和过氧化氢的产生增加有关,从而产生适应性和协同损伤。有人认为线粒体功能障碍例如降低ATP的产生,可能在ME / cfs症状的发作中起作用,例如疲劳和劳累后不适,可能部分解释了在ME / cfs中观察到的中枢代谢异常,例如葡萄糖代谢不足和脑灌注不足。

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