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分子氢作为一种新型抗氧化剂:氢在医学应用中的优势概述。

Molecular hydrogen as a novel antioxidant: overview of the advantages of hydrogen for medical applications.

作者信息

Ohta Shigeo

机构信息

Department of Biochemistry and Cell Biology, Institute of Development and Aging Sciences, Graduate School of Medicine, Nippon Medical School, Kawasaki, Japan.

出版信息

Methods Enzymol. 2015;555:289-317. doi: 10.1016/bs.mie.2014.11.038. Epub 2015 Jan 21.

Abstract

Molecular hydrogen (H2) was believed to be inert and nonfunctional in mammalian cells. We overturned this concept by demonstrating that H2 reacts with highly reactive oxidants such as hydroxyl radical ((•)OH) and peroxynitrite (ONOO(-)) inside cells. H2 has several advantages exhibiting marked effects for medical applications: it is mild enough neither to disturb metabolic redox reactions nor to affect signaling by reactive oxygen species. Therefore, it should have no or little adverse effects. H2 can be monitored with an H2-specific electrode or by gas chromatography. H2 rapidly diffuses into tissues and cells to exhibit efficient effects. Thus, we proposed the potential of H2 for preventive and therapeutic applications. There are several methods to ingest or consume H2: inhaling H2 gas, drinking H2-dissolved water (H2-water), injecting H2-dissolved saline (H2-saline), taking an H2 bath, or dropping H2-saline onto the eyes. Recent publications revealed that, in addition to the direct neutralization of highly reactive oxidants, H2 indirectly reduces oxidative stress by regulating the expression of various genes. Moreover, by regulating gene expression, H2 functions as an anti-inflammatory, antiallergic, and antiapoptotic molecule, and stimulates energy metabolism. In addition to growing evidence obtained by model animal experiments, extensive clinical examinations were performed or are under way. Since most drugs specifically act on their specific targets, H2 seems to differ from conventional pharmaceutical drugs. Owing to its great efficacy and lack of adverse effects, H2 has potential for clinical applications for many diseases.

摘要

分子氢(H₂)曾被认为在哺乳动物细胞中是惰性且无功能的。我们通过证明H₂在细胞内与高活性氧化剂如羟基自由基(•OH)和过氧亚硝酸盐(ONOO⁻)发生反应,推翻了这一概念。H₂具有几个优势,在医学应用中显示出显著效果:它足够温和,既不会干扰代谢氧化还原反应,也不会影响活性氧信号传导。因此,它应该没有或只有很少的副作用。H₂可以用H₂特异性电极或气相色谱法进行监测。H₂能迅速扩散到组织和细胞中以发挥有效作用。因此,我们提出了H₂在预防和治疗应用中的潜力。有几种摄取或消耗H₂的方法:吸入H₂气体、饮用溶有H₂的水(富氢水)、注射溶有H₂的盐水(氢生理盐水)、进行氢浴或向眼睛滴入氢生理盐水。最近的出版物表明,除了直接中和高活性氧化剂外,H₂还通过调节各种基因的表达间接减轻氧化应激。此外,通过调节基因表达,H₂起到抗炎、抗过敏和抗凋亡分子的作用,并刺激能量代谢。除了模型动物实验获得的越来越多的证据外,广泛的临床检查已经进行或正在进行。由于大多数药物特异性作用于其特定靶点,H₂似乎不同于传统的药物。由于其巨大的功效和缺乏副作用,H₂在许多疾病的临床应用中具有潜力。

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