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European contribution to the study of ROS: A summary of the findings and prospects for the future from the COST action BM1203 (EU-ROS)

机译:欧洲对ROS研究的贡献:COST行动BM1203(EU-ROS)的发现和对未来的总结

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Highlights ? RONS are chemical mediators and a communication tool. ? RONS and disturbed redox balance play a role in a broad range of diseases and aging. ? Bacteria and toxins are important stimulators of cellular RONS formation. ? Drugs should preserve beneficial redox signaling and inhibit detrimental RONS sources. ? Redox drugs may target the origin, identity, location and time of RONS formation. The European Cooperation in Science and Technology (COST) provides an ideal framework to establish multi-disciplinary research networks. COST Action BM1203 (EU-ROS) represents a consortium of researchers from different disciplines who are dedicated to providing new insights and tools for better understanding redox biology and medicine and, in the long run, to finding new therapeutic strategies to target dysregulated redox processes in various diseases. This report highlights the major achievements of EU-ROS as well as research updates and new perspectives arising from its members. The EU-ROS consortium comprised more than 140 active members who worked together for four years on the topics briefly described below. The formation of reactive oxygen and nitrogen species (RONS) is an established hallmark of our aerobic environment and metabolism but RONS also act as messengers via redox regulation of essential cellular processes. The fact that many diseases have been found to be associated with oxidative stress established the theory of oxidative stress as a trigger of diseases that can be corrected by antioxidant therapy. However, while experimental studies support this thesis, clinical studies still generate controversial results, due to complex pathophysiology of oxidative stress in humans. For future improvement of antioxidant therapy and better understanding of redox-associated disease progression detailed knowledge on the sources and targets of RONS formation and discrimination of their detrimental or beneficial roles is required. In order to advance this important area of biology and medicine, highly synergistic approaches combining a variety of diverse and contrasting disciplines are needed. Graphical Figure options
机译:强调 ? RONS是化学介体和沟通工具。 ? RONS和受干扰的氧化还原平衡在各种疾病和衰老中起作用。 ?细菌和毒素是细胞RONS形成的重要刺激物。 ?药物应保留有益的氧化还原信号并抑制有害的RONS来源。 ?氧化还原药物可能针对RONS形成的来源,身份,位置和时间。欧洲科技合作组织(COST)提供了建立多学科研究网络的理想框架。 COST Action BM1203(EU-ROS)由来自不同学科的研究人员组成,致力于提供新的见解和工具,以更好地了解氧化还原生物学和医学,从长远来看,旨在寻找针对失调的氧化还原过程的新治疗策略。各种疾病。本报告重点介绍了EU-ROS的主要成就以及其成员提出的研究更新和新观点。 EU-ROS联盟由140多名积极成员组成,他们在以下简要描述的主题上共同努力了四年。活性氧和氮物种(RONS)的形成是我们有氧环境和新陈代谢的既定标志,但RONS还可通过重要细胞过程的氧化还原调节充当信使。已经发现许多疾病与氧化应激有关的事实确立了氧化应激理论是可以通过抗氧化剂疗法纠正的疾病的触发因素。然而,尽管实验研究支持了这一论点,但由于人类氧化应激的复杂病理生理,临床研究仍产生有争议的结果。为了将来改进抗氧化剂治疗并更好地理解氧化还原相关疾病的进展,需要对RONS形成的来源和目标以及它们的有害或有益作用的区分有详细的了解。为了推进生物学和医学这一重要领域的发展,需要将多种多样且截然不同的学科相结合的高度协同的方法。图形图形选项

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