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The Cutaneous Physiological Redox: Essential to Maintain but Difficult to Define

机译:皮肤生理氧化还原:维护必不可少但难以定义

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摘要

Skin is a unique tissue, possessing extremely efficient protective and regulative mechanisms, similar only to the gut and lungs. These tissues serve as an interface with the environment and are exposed to stressors from both endogenous and exogenous sources. Interestingly, all these stressors lead downstream to a cellular production of reactive oxygen species (ROS) and other electrophiles, which, in turn could have deleterious outcomes for the living organism. Hence, such tissues should always maintain a “high-alert” condition in order to cope with these various insults. Nevertheless, a moderate production of ROS induced by stressors could actually be beneficial, although it is impossible to predict if and which exposure would lead to which outcome. Consequently, a parameter which would indicate the skin’s readiness to cope with continuously fluctuating conditions is required. It has been proposed that the redox status may serve as a suitable indicator. In this opinion manuscript, we argue that the redox status is a vague parameter that is difficult to characterized and quantify due to its extremely dynamic nature. The common convention that the redox status is composed solely of the balance between oxidants and reductants (ROS and antioxidants) is also thought-provoking. Since this parameter in vivo behaves in a dynamic and complex manner, it better fits the description of a process, rather than an individual parameter. We suggest that the homeostatic modulation of the physiological redox (PR) should be in focus, rather than the redox status parameter itself. It is further suggested that low molecular weight antioxidants (LMWA) are, in fact, rather insignificant concerning the PR maintenance, and that the major contributors to this delicate modulation are regulative, protein-based systems such as the protective phase II antioxidant enzymes. Moreover, we show that skin microbiome and cutaneous advanced lipid peroxidation end-products (ALEs) take part in sustaining the cutaneous PR homoeostasis via activation of the Nrf2–Keap1 protective pathway.
机译:皮肤是一种独特的组织,具有极其有效的保护和调节机制,仅仅与肠道和肺相似。这些组织用作与环境的界面,并暴露于内源和外源源的压力源。有趣的是,所有这些压力源均导致了反应性氧物种(ROS)和其他电子手机的细胞生产下游,这反过来可能对生物体具有有害的结果。因此,这种组织应始终保持“高警报”条件,以便应对这些各种损伤。尽管如此,压力源诱导的ros的适度生产实际上是有益的,尽管不可能预测,否则是什么,曝光会导致哪种结果。因此,需要指示皮肤对应对连续波动条件的准备的参数。已经提出,氧化还原状态可以用作合适的指标。在这种意见手稿中,我们认为氧化还原状态是​​一种模糊参数,这难以表征和量化由于其极其动态的性质。氧化还原状态仅仅是氧化剂和还原剂(ROS和抗氧化剂)之间的平衡组成的公共惯例也是思想引发的。由于Vivo中的此参数以动态和复杂的方式行为,因此它更好地适合处理过程的描述,而不是单个参数。我们建议,生理氧化还原(PR)的稳态调制应焦点,而不是氧化还原状态参数本身。进一步表明,低分子量抗氧化剂(LMWA)实际上是关于PR维护的相当微不足道,并且这种微妙调制的主要贡献者是调节性,基于蛋白质的系统,例如保护型蛋白质II抗氧化酶。此外,我们表明皮肤微生物组和皮肤先进的脂质过氧化终产物(ALES)参与通过NRF2-Keap1保护途径的激活来维持皮肤PR HomoooTosisis。

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