From Molecular Mechanisms to Clinical Therapy: Understanding Sepsis-Induced Multiple Organ Dysfunction

败血症 器官功能障碍 医学 重症监护医学 炎症 生物信息学 氧化应激 肠道菌群 免疫学 生物 内科学
作者
Tijana Srdić,Siniša Đurašević,Iva Lakić,Aleksandra Ružičić,Predrag Vujović,Tanja Jevdjović,Tamara Dakić,Jelena Djordjević,Tomislav Tosti,Sofija Glumac,Zoran Todorović,Nebojša Jasnić
出处
期刊:International Journal of Molecular Sciences [MDPI AG]
卷期号:25 (14): 7770-7770
标识
DOI:10.3390/ijms25147770
摘要

Sepsis-induced multiple organ dysfunction arises from the highly complex pathophysiology encompassing the interplay of inflammation, oxidative stress, endothelial dysfunction, mitochondrial damage, cellular energy failure, and dysbiosis. Over the past decades, numerous studies have been dedicated to elucidating the underlying molecular mechanisms of sepsis in order to develop effective treatments. Current research underscores liver and cardiac dysfunction, along with acute lung and kidney injuries, as predominant causes of mortality in sepsis patients. This understanding of sepsis-induced organ failure unveils potential therapeutic targets for sepsis treatment. Various novel therapeutics, including melatonin, metformin, palmitoylethanolamide (PEA), certain herbal extracts, and gut microbiota modulators, have demonstrated efficacy in different sepsis models. In recent years, the research focus has shifted from anti-inflammatory and antioxidative agents to exploring the modulation of energy metabolism and gut microbiota in sepsis. These approaches have shown a significant impact in preventing multiple organ damage and mortality in various animal sepsis models but require further clinical investigation. The accumulation of this knowledge enriches our understanding of sepsis and is anticipated to facilitate the development of effective therapeutic strategies in the future.
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