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Metabolism and phospholipid assembly of polyunsaturated fatty acids in human bone marrow mesenchymal stromal cells

机译:人骨髓间充质基质细胞中多不饱和脂肪酸的代谢和磷脂组装

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摘要

High arachidonic acid (20:4n-6) and low n-3 PUFA levels impair the capacity of cultured human bone marrow mesenchymal stromal cells (hBMSCs) to modulate immune functions. The capacity of the hBMSCs to modify PUFA structures was found to be limited. Therefore, different PUFA supplements given to the cells resulted in very different glycerophospholipid (GPL) species profiles and substrate availability for phospholipases, which have preferences for polar head group and acyl chains when liberating PUFA precursors for production of lipid mediators. When supplemented with 20:4n-6, the cells increased prostaglandin E2 secretion. However, they elongated 20:4n-6 to the less active precursor, 22:4n-6, and also incorporated it into triacylglycerols, which may have limited the proinflammatory signaling. The n-3 PUFA precursor, 18:3n-3, had little potency to reduce the GPL 20:4n-6 content, while the eicosapentaenoic (20:5n-3) and docosahexaenoic (22:6n-3) acid supplements efficiently displaced the 20:4n-6 acyls, and created diverse GPL species substrate pools allowing attenuation of inflammatory signaling. The results emphasize the importance of choosing appropriate PUFA supplements for in vitro hBMSC expansion and suggests that for optimal function they require an exogenous fatty acid source providing 20:5n-3 and 22:6n-3 sufficiently, but 20:4n-6 moderately, which calls for specifically designed optimal PUFA supplements for the cultures.
机译:高花生四烯酸(20:4n-6)和低n-3 PUFA水平会损害培养的人骨髓间充质基质细胞(hBMSC)调节免疫功能的能力。发现hBMSC修饰PUFA结构的能力是有限的。因此,给予细胞的不同PUFA补充剂导致磷脂酶的甘油磷脂(GPL)种类特征和底物利用率非常不同,当释放PUFA前体以生产脂质介体时,磷脂酶对极性头基和酰基链具有偏爱。当补充20:4n-6时,细胞会增加前列腺素E2的分泌。但是,他们将20:4n-6延长至活性较低的前体22:4n-6,并将其并入三酰基甘油中,这可能限制了促炎信号传导。 n-3 PUFA前体18:3n-3几乎没有降低GPL 20:4n-6含量的功效,而二十碳五烯酸(20:5n-3)和二十二碳六烯酸(22:6n-3)的酸补充剂却被有效地取代了20:4n-6酰基,并创建了多种GPL物种底物库,从而减弱了炎症信号。结果强调了为体外hBMSC扩增选择合适的PUFA补充剂的重要性,并建议为了获得最佳功能,它们需要提供足以提供20:5n-3和22:6n-3,但适度为20:4n-6的外源脂肪酸源,这就需要针对文化专门设计的最佳PUFA补充剂。

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