Norling Lucy V, Ly Lucy, Dalli Jesmond
aThe William Harvey Research Institute bQMUL Lipid Mediator Unit, Barts and The London School of Medicine and Dentistry, Queen Mary University of London, Charterhouse Square, London, UK.
Curr Opin Clin Nutr Metab Care. 2017 Mar;20(2):145-152. doi: 10.1097/MCO.0000000000000353.
PURPOSE OF REVIEW: Inflammation is a unifying component of many of the diseases that afflict Western civilizations. Nutrition therapy and, in particular, essential fatty acid supplementation is one of the approaches that is currently in use for the treatment and management of many inflammatory conditions. The purpose of the present review is to discuss the recent literature in light of the discovery that essential fatty acids are converted by the body to a novel genus of lipid mediators, termed specialized proresolving mediators (SPMs). RECENT FINDINGS: The SPM genus is composed of four mediator families - the lipoxins, resolvins, protectins, and maresins. These molecules potently and stereoselectively promote the termination of inflammation, tissue repair, and regeneration. Recent studies indicate that in disease, SPM production becomes dysregulated giving rise to a status of failed resolution. Of note, several studies found that omega-3 fatty acid supplementation, at doses within the recommended daily allowance, led to increases in several SPM families that correlate with enhanced white blood cell responses in humans and reduced inflammation in mice. SUMMARY: Given the potent biological actions of SPM in organ protection and promoting bacterial clearance, nutritional therapies enriched in omega-3 fatty acids hold promise as a potential co-therapy approach when coupled with functional lipid mediator profiling.
综述目的:炎症是困扰西方文明的许多疾病的一个共同组成部分。营养疗法,特别是补充必需脂肪酸,是目前用于治疗和管理许多炎症性疾病的方法之一。本综述的目的是根据必需脂肪酸被人体转化为一种新型脂质介质(称为特殊促消退介质,SPMs)这一发现,讨论最近的文献。 最新发现:SPM类由四个介质家族组成——脂氧素、消退素、保护素和maresin。这些分子有力且立体选择性地促进炎症的终止、组织修复和再生。最近的研究表明,在疾病中,SPM的产生会失调,导致消退失败的状态。值得注意的是,几项研究发现,补充推荐每日摄入量范围内的ω-3脂肪酸会导致几个SPM家族增加,这与人类白细胞反应增强和小鼠炎症减轻相关。 总结:鉴于SPM在器官保护和促进细菌清除方面的强大生物学作用,富含ω-3脂肪酸的营养疗法有望成为一种潜在的联合治疗方法,与功能性脂质介质分析相结合。
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