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Uptake and incorporation of saturated and unsaturated fatty acids into macrophage lipids and their effect upon macrophage adhesion and phagocytosis.

机译:饱和脂肪酸和不饱和脂肪酸的摄取和掺入巨噬细胞脂质及其对巨噬细胞粘附和吞噬作用的影响。

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摘要

Murine thioglycollate-elicited peritoneal macrophages were cultured in the presence of a variety of fatty acids added as complexes with bovine serum albumin. All fatty acids tested were taken up readily by the cells and both neutral and phospholipid fractions were enriched with the fatty acid provided in the medium. This generated a range of cells enriched in saturated, monounsaturated or polyunsaturated fatty acids, including n-3 acids of fish oil origin. Saturated fatty acid enrichment enhanced macrophage adhesion to both tissue culture plastic and bacterial plastic compared with enrichment with polyunsaturated fatty acids. Macrophages enriched with the saturated fatty acids myristate or palmitate showed decreases of 28% and 21% respectively in their ability to phagocytose unopsonized zymosan particles. Those enriched with polyunsaturated fatty acids showed 25-55% enhancement of phagocytic capacity. The greatest rate of uptake was with arachidonate-enriched cells. Phagocytic rate was highly correlated with the saturated/unsaturated fatty acid ratio, percentage of polyunsaturated fatty acid and index of unsaturation, except for macrophages enriched with fish-oil-derived fatty acids; they showed lower phagocytic activity than expected on the basis of their degree of unsaturation. These results suggest that membrane fluidity is important in determining macrophage adhesion and phagocytic activity. However, in the case of phagocytosis, this effect may be partially overcome if the cells are enriched with fish-oil-derived fatty acids. Thus it may be possible to modulate the activity of cells of the immune system, and so an immune response, by dietary lipid manipulation.
机译:在以与牛血清白蛋白复合的多种脂肪酸的存在下,培养鼠硫代乙醇酸引发的腹膜巨噬细胞。所有测试的脂肪酸都容易被细胞吸收,中性和磷脂级分均富含培养基中提供的脂肪酸。这产生了一系列富含饱和,单不饱和或多不饱和脂肪酸的细胞,包括鱼油来源的n-3酸。与多不饱和脂肪酸富集相比,饱和脂肪酸富集增强了巨噬细胞对组织培养塑料和细菌塑料的粘附。富含肉豆蔻酸酯或棕榈酸酯饱和脂肪酸的巨噬细胞吞噬未调理的酵母聚糖颗粒的能力分别降低了28%和21%。那些富含多不饱和脂肪酸的细胞显示吞噬能力提高了25-55%。吸收率最高的是富含花生四烯酸盐的细胞。除富含鱼油衍生脂肪酸的巨噬细胞外,吞噬速率与饱和/不饱和脂肪酸比率,多不饱和脂肪酸百分比和不饱和指数高度相关。由于它们的不饱和度,它们的吞噬活性低于预期。这些结果表明,膜流动性在确定巨噬细胞粘附和吞噬活性中很重要。但是,在吞噬作用的情况下,如果细胞富含鱼油衍生的脂肪酸,则可能会部分克服这种作用。因此,可以通过饮食脂质操纵来调节免疫系统细胞的活性,从而调节免疫应答。

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