臭氧:一种神奇的气体,对健康、美容和长寿具有多重作用。

L. Re
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引用次数: 0

摘要

尽管臭氧在医学上的使用已在世界上许多国家广泛使用,但其真正的药理作用仍未完全阐明。我们知道,除了它作为消毒剂的用途(自上个世纪初以来已有文献充分记载)之外,国际文献所描述的最近臭氧在几种疾病中的医疗用途仍未得到充分调查。此外,随着其在几种异质性疾病和疼痛的临床应用中表现出优异的临床反应,现在很清楚,这种气体的生物活性是通过对其应用后诱导的轻度氧化应激的分级反应来介导的。因此,我们细胞的祖先环境,其能量产生严格地与氧燃烧相结合,可能是由共同防御介导的,可能与Nrf2介导的无处不在的信号通路有关。此外,在20世纪70年代对氧化应激的首次描述和1994年Nrf2作为转录因子的发现之后,我们可以观察到关于其作为无数细胞过程的主要调节剂的功能及其与包括衰老在内的多种疾病模式的关联的文献的快速增长。总之,在我看来,系统医学方法最终可能是更好地理解广泛报道的臭氧治疗效果的真正关键。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ozone: A surprising gas with multiple action for health, beauty and longevity.
Notwithstanding the use of ozone in medicine has become widespread in many countries of the world, its real pharmacological action remains not completely clarified. We know that other than its uses as disinfectant, well documented by the literature since the beginning of the past century, the more recent medical use of ozone in several pathologies as described by the international literature is still poor investigated. Furthermore, following its clinical uses with excellent clinical responses on several heterogeneous diseases and pain, it is now clear that the biological activity of this gas is mediated by graded responses to the mild oxidative stress induced after its application. Thus, the ancestral environment of our cells, whose energy production is strictly bind to oxygen burn, may be mediated by common defenses probably linked to the ubiquitous signaling pathway mediated by Nrf2. Moreover, after the first description of the oxidative stress in the 1970s and the discovery of Nrf2 as transcription factor in 1994, we could observe a rapid growth of the literatures regarding its function as master regulator of a myriad of cellular processes and its association to a multiple pattern of diseases including aging. In conclusion, to my opinion, the Systems Medicine approach could finally represents the real key to better understand the wide reported efficacy of ozone treatment.
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