Department of Nutritional Sciences, University of Connecticut, Storrs, CT 06269, USA.
Nutrients. 2017 Oct 28;9(11):1180. doi: 10.3390/nu9111180.
Chronic inflammation is a common underlying factor in many major metabolic diseases afflicting Western societies. Sphingolipid metabolism is pivotal in the regulation of inflammatory signaling pathways. The regulation of sphingolipid metabolism is in turn influenced by inflammatory pathways. In this review, we provide an overview of sphingolipid metabolism in mammalian cells, including a description of sphingolipid structure, biosynthesis, turnover, and role in inflammatory signaling. Sphingolipid metabolites play distinct and complex roles in inflammatory signaling and will be discussed. We also review studies examining dietary sphingolipids and inflammation, derived from in vitro and rodent models, as well as human clinical trials. Dietary sphingolipids appear to influence inflammation-related chronic diseases through inhibiting intestinal lipid absorption, altering gut microbiota, activation of anti-inflammatory nuclear receptors, and neutralizing responses to inflammatory stimuli. The anti-inflammatory effects observed with consuming dietary sphingolipids are in contrast to the observation that most cellular sphingolipids play roles in augmenting inflammatory signaling. The relationship between dietary sphingolipids and low-grade chronic inflammation in metabolic disorders is complex and appears to depend on sphingolipid structure, digestion, and metabolic state of the organism. Further research is necessary to confirm the reported anti-inflammatory effects of dietary sphingolipids and delineate their impacts on endogenous sphingolipid metabolism.
慢性炎症是困扰西方社会的许多主要代谢疾病的共同潜在因素。鞘脂代谢在炎症信号通路的调节中起着关键作用。炎症途径反过来又影响鞘脂代谢的调节。在这篇综述中,我们概述了哺乳动物细胞中的鞘脂代谢,包括鞘脂结构、生物合成、周转和在炎症信号中的作用的描述。鞘脂代谢物在炎症信号中发挥着独特而复杂的作用,我们将对其进行讨论。我们还回顾了来自体外和啮齿动物模型以及人类临床试验的研究,这些研究检查了饮食鞘脂与炎症的关系。饮食鞘脂似乎通过抑制肠道脂质吸收、改变肠道微生物群、激活抗炎核受体以及中和炎症刺激反应,来影响与炎症相关的慢性疾病。与大多数细胞鞘脂在增强炎症信号中发挥作用的观察结果相反,观察到食用饮食鞘脂具有抗炎作用。饮食鞘脂与代谢紊乱中低度慢性炎症之间的关系很复杂,似乎取决于鞘脂结构、消化和生物体的代谢状态。需要进一步的研究来证实饮食鞘脂的抗炎作用,并阐明它们对内源性鞘脂代谢的影响。