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DHA Modulates Immune Response and Mitochondrial Function of Atlantic Salmon Adipocytes after LPS Treatment

机译:DHA调节LPS治疗后大西洋鲑鱼脂肪细胞的免疫应答和线粒体功能

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摘要

Adipocytes play a central role in overall energy homeostasis and are important contributors to the immune system. Fatty acids (FAs) act as signaling molecules capable to modulate adipocyte metabolism and functions. To identify the effects of two commonly used FAs in Atlantic salmon diets, primary adipocytes were cultured in the presence of oleic (OA) or docosahexaenoic (DHA) acid. DHA decreased adipocyte lipid droplet number and area compared to OA. The increase in lipid load in OA treated adipocytes was paralleled by an increase in iNOS activity and mitochondrial SOD2-GFP activity, which was probably directed to counteract increase in oxidative stress. Under lipopolysaccharide (LPS)-induced inflammation, DHA had a greater anti-inflammatory effect than OA, as evidenced by the higher SOD2 activity and the transcriptional regulation of antioxidant enzymes and pro- and anti-inflammatory markers. In addition, DHA maintained a healthy mitochondrial structure under induced inflammation while OA led to elongated mitochondria with a thin thread like structures in adipocytes exposed to LPS. Overall, DHA possess anti-inflammatory properties and protects Atlantic salmon against oxidative stress and limits lipid deposition. Furthermore, DHA plays a key role in protecting mitochondria shape and function.
机译:脂肪细胞在总体能量稳态中起着核心作用,并且是免疫系统的重要贡献者。脂肪酸(FAs)充当信号分子,能够调节脂肪细胞的代谢和功能。为了确定两种常用的FA在大西洋鲑鱼饮食中的作用,在油酸(OA)或二十二碳六烯酸(DHA)酸存在下培养原代脂肪细胞。与OA相比,DHA减少了脂肪细胞脂质滴的数量和面积。 OA处理的脂肪细胞中脂质负荷的增加与iNOS活性和线粒体SOD2-GFP活性的增加同时发生,这可能是为了抵消氧化应激的增加。在脂多糖(LPS)引起的炎症作用下,DHA的抗炎作用比OA更大,这可以通过更高的SOD2活性以及抗氧化酶以及促炎和抗炎标志物的转录调控来证明。此外,DHA在诱发炎症的情况下保持健康的线粒体结构,而OA导致暴露于LPS的脂肪细胞中具有细线状结构的线粒体伸长。总体而言,DHA具有抗炎特性,可保护大西洋鲑鱼免受氧化应激并限制脂质沉积。此外,DHA在保护线粒体形状和功能中起关键作用。

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