慢性疲劳综合征和表观遗传学:高压氧治疗在生物标志物鉴定中的应用

Rajit J Shah
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引用次数: 1

摘要

慢性疲劳综合征(CFS)是一种鲜为人知的呼吸系统疾病,影响着数百万人。高压氧治疗(HBOT)被认为是治疗慢性疲劳综合症的一种治疗选择,因为它被建议对抗疲劳和增加氧合。HBOT为推进CFS的研究提供了两个机会:一是提供症状改善的数据,二是用于寻找生物标志物。通过在使用HBOT之前识别生物标志物,比较治疗前后患者的表观基因组,或者使用HBOT发现治疗前后患者的表观遗传差异,将表观遗传调控与症状改善相匹配,可以显著促进对CFS病因和治疗机制的认识。EPAS1/HIF-2α是表观遗传生物标志物的主要候选者,因为它对缺氧和常氧条件的反应不同,在缺氧条件下降解得更慢。在这些差异条件下EPAS1/HIF-2α的表观遗传调控可以在HBOT实验中探索。除了HBOT作为CFS症状的一种有希望的治疗选择外,它还可以帮助识别CFS的生物标志物。强烈鼓励对这两种结果进行进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chronic fatigue syndrome and epigenetics: The case for hyperbaric oxygen therapy in biomarker identification
Chronic fatigue syndrome (CFS) is a poorly-understood respiratory condition that affects millions of individuals. Hyperbaric oxygen therapy (HBOT) is a treatment option being considered to address CFS as it is suggested to combat fatigue and increase oxygenation. HBOT provides two opportunities in advancing research of CFS: it may provide data on symptom amelioration and be utilized in the search for a biomarker. By either identifying biomarkers before using HBOT to compare epigenomes of patients before and after treatment or using HBOT to find epigenetic discrepancies between patients with and without treatment, matching epigenetic regulation with symptom amelioration may significantly advance the understanding of the etiology and treatment mechanism for CFS. EPAS1/HIF-2α is a leading candidate for an epigenetic biomarker as it responds differentially to hypoxic and normoxic conditions, which degrades more slowly in hypoxic conditions. Epigenetic regulation of EPAS1/HIF-2α in such differential conditions may be explored in HBOT experiments. In addition to HBOT as a promising treatment option for CFS symptoms, it may aid the identification of biomarkers in CFS. Further research into both outcomes is strongly encouraged.
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