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Dietary Polyunsaturated Fatty Acids and Inflammation: The Role of Phospholipid Biosynthesis

机译:膳食多不饱和脂肪酸与炎症:磷脂生物合成的作用

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The composition of fatty acids in the diets of both human and domestic animal species can regulate inflammation through the biosynthesis of potent lipid mediators. The substrates for lipid mediator biosynthesis are derived primarily from membrane phospholipids and reflect dietary fatty acid intake. Inflammation can be exacerbated with intake of certain dietary fatty acids, such as some ω-6 polyunsaturated fatty acids (PUFA), and subsequent incorporation into membrane phospholipids. Inflammation, however, can be resolved with ingestion of other fatty acids, such as ω-3 PUFA. The influence of dietary PUFA on phospholipid composition is influenced by factors that control phospholipid biosynthesis within cellular membranes, such as preferential incorporation of some fatty acids, competition between newly ingested PUFA and fatty acids released from stores such as adipose, and the impacts of carbohydrate metabolism and physiological state. The objective of this review is to explain these factors as potential obstacles to manipulating PUFA composition of tissue phospholipids by specific dietary fatty acids. A better understanding of the factors that influence how dietary fatty acids can be incorporated into phospholipids may lead to nutritional intervention strategies that optimize health.
机译:人类和家畜的饮食中的脂肪酸组成都可以通过有效的脂质介体的生物合成来调节炎症。脂质介体生物合成的底物主要来源于膜磷脂,反映了饮食中脂肪酸的摄入量。摄入某些饮食脂肪酸(例如某些ω-6多不饱和脂肪酸(PUFA))并随后掺入膜磷脂中会加剧炎症。然而,可以通过摄入其他脂肪酸来解决炎症,例如ω-3PUFA。饮食中PUFA对磷脂成分的影响受控制细胞膜内磷脂生物合成的因素的影响,例如某些脂肪酸的优先掺入,新摄入的PUFA与脂肪从商店(如脂肪)释放的竞争以及碳水化合物代谢的影响和生理状态。这篇综述的目的是解释这些因素,这些因素是通过特定饮食脂肪酸操纵组织磷脂的PUFA组成的潜在障碍。对影响饮食脂肪酸如何掺入磷脂的因素的更好理解可能会导致优化健康的营养干预策略。

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