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4-羟基壬烯醛氧化还原信号转导的病理生理学改变与重大应激相关疾病的药理学治疗的相关性。

The relevance of pathophysiological alterations in redox signaling of 4-hydroxynonenal for pharmacological therapies of major stress-associated diseases.

机构信息

Qatar Analytics & BioResearch Lab, Anti Doping Lab Qatar, Sport City Street, Doha, Qatar.

Rudjer Boskovic Institute, Laboratory for Oxidative Stress, Div. of Molecular Medicine, Bijenicka 54, Zagreb, Croatia.

出版信息

Free Radic Biol Med. 2020 Sep;157:128-153. doi: 10.1016/j.freeradbiomed.2019.11.023. Epub 2019 Nov 19.

DOI:10.1016/j.freeradbiomed.2019.11.023
PMID:31756524
Abstract

Modern analytical methods combined with the modern concepts of redox signaling revealed 4-hydroxy-2-nonenal (4-HNE) as particular growth regulating factor involved in redox signaling under physiological and pathophysiological circumstances. In this review current knowledge of the relevance of 4-HNE as "the second messenger of reactive oxygen species" (ROS) in redox signaling of representative major stress-associated diseases is briefly summarized. The findings presented allow for 4-HNE to be considered not only as second messenger of ROS, but also as one of fundamental factors of the stress- and age-associated diseases. While standard, even modern concepts of molecular medicine and respective therapies in majority of these diseases target mostly the disease-specific symptoms. 4-HNE, especially its protein adducts, might appear to be the bioactive markers that would allow better monitoring of specific pathophysiological processes reflecting their complexity. Eventually that could help development of advanced integrative medicine approach for patients and the diseases they suffer from on the personalized basis implementing biomedical remedies that would optimize beneficial effects of ROS and 4-HNE to prevent the onset and progression of the illness, perhaps even providing the real cure.

摘要

现代分析方法结合氧化还原信号的现代概念揭示了 4-羟基-2-壬烯醛(4-HNE)作为参与生理和病理生理情况下氧化还原信号的特殊生长调节因子。在这篇综述中,简要总结了当前有关 4-HNE 作为“活性氧(ROS)的第二信使”在代表性主要应激相关疾病的氧化还原信号中的相关性的知识。提出的发现使 4-HNE 不仅可以被视为 ROS 的第二信使,而且可以被视为应激和年龄相关疾病的基本因素之一。虽然在这些疾病中的大多数中,标准的,甚至是现代的分子医学和相应的治疗方法主要针对特定疾病的症状。4-HNE,特别是其蛋白质加合物,可能是生物活性标志物,可以更好地监测反映其复杂性的特定病理生理过程。最终,这可以帮助开发针对患者及其所患疾病的个性化的先进综合医学方法,实施生物医学治疗,以优化 ROS 和 4-HNE 的有益作用,预防疾病的发生和进展,甚至可能提供真正的治疗。

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