Feelisch Martin, Cortese-Krott Miriam M, Santolini Jérôme, Wootton Stephen A, Jackson Alan A
Clinical and Experimental Sciences, Faculty of Medicine, University of Southampton and NIHR Biomedical Research Center, University Hospital Southampton, NHS Foundation Trust, Tremona Road, Southampton, SO16 6YD, UK.
Myocardial Infarction Research Laboratory, Department of Cardiology, Pulmonology and Angiology, Medical Faculty, Heinrich Heine University of Düsseldorf, Moorenstr. 5, D-40225 Düsseldorf, Germany.
EXCLI J. 2022 Mar 21;21:623-646. doi: 10.17179/excli2022-4793. eCollection 2022.
Living organisms need to be able to cope with environmental challenges and other stressors and mount adequate responses that are as varied as the spectrum of those challenges. Understanding how the multi-layered biological stress responses become integrated across and between different levels of organization within an organism can provide a different perspective on the nature and inter-relationship of complex systems in health and disease. We here compare two concepts which have been very influential in stress research: Selye's '' and Sies's '' paradigm. We show that both can be embraced within a more general framework of 'change and response'. The '' allows each of these to be considered as distinct but complementary aspects of the same system, representative of roles at different levels of organization within a functional hierarchy. The versatile chemistry of sulfur - exemplified by hydrogen sulfide, glutathione and proteinous cysteine thiols - enriched by its interactions with reactive oxygen, nitrogen and sulfur species, would seem to sit at the heart of the 'Redox Code' and underpin the ability of complex organisms to cope with stress.
生物体需要能够应对环境挑战和其他应激源,并做出与这些挑战范围一样多样的适当反应。了解多层次的生物应激反应如何在生物体不同组织层次之间以及跨层次进行整合,能够为健康和疾病中复杂系统的本质及相互关系提供不同的视角。我们在此比较在应激研究中非常有影响力的两个概念:塞利的“ ”和西耶斯的“ ”范式。我们表明,两者都可以纳入一个更通用的“变化与反应”框架。“ ”使这些中的每一个都可被视为同一系统中不同但互补的方面,代表功能层次结构中不同组织层次的作用。硫的多功能化学——以硫化氢、谷胱甘肽和蛋白质半胱氨酸硫醇为例——因其与活性氧、氮和硫物种的相互作用而丰富,似乎处于“氧化还原密码”的核心,并支撑复杂生物体应对压力的能力。