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Inhibition Effect of Triglyceride Accumulation by Large Yellow Croaker Roe DHA-PC in HepG2 Cells

机译:大黄鱼子DHA-PC对HepG2细胞中甘油三酸酯积累的抑制作用

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摘要

The phospholipids (PLs) of large yellow croaker (Pseudosciaena crocea, P. crocea) roe contain a high level of polyunsaturated fatty acids, especially docosahexaenoic acid (DHA), which can lower blood lipid levels. In previous research, PLs of P. crocea roe were found able to regulate the accumulation of triglycerides. However, none of these involve the function of DHA-containing phosphatidylcholine (DHA-PC), which is the main component of PLs derived from P. crocea roe. The function by which DHA-PC from P. crocea roe exerts its effects has not yet been clarified. Herein, we used purified DHA-PC and oleic acid (OA) induced HepG2 cells to establish a high-fat model, and the cell activity and intracellular lipid levels were then measured. The mRNA and protein expression of Fatty Acid Synthase (FAS), Carnitine Palmitoyl Transferase 1A (CPT1A) and Peroxisome Proliferator-Activated Receptor α (PPARα) in HepG2 cells were detected via RT-qPCR and western blot as well. It was found that DHA-PC can significantly regulate triglyceride accumulation in HepG2 cells, the effect of which was related to the activation of PPARα receptor activity, upregulation of CPT1A, and downregulation of FAS expression. These results can improve the understanding of the biofunction of hyperlipidemia mediated by DHA-PC from P. crocea roe, as well as provide a theoretical basis for the utilization of DHA-PC from P. crocea roe as a functional food additive.
机译:大黄鱼(Pseudosciaena crocea,P。crocea)鱼卵的磷脂(PLs)含有高含量的多不饱和脂肪酸,尤其是二十二碳六烯酸(DHA),可以降低血脂水平。在先前的研究中,发现大叶黄杨的PL能够调节甘油三酸酯的积累。但是,这些都没有涉及含DHA的磷脂酰胆碱(DHA-PC)的功能,DHA-PC是来自大叶假单胞菌的PL的主要成分。番红花鱼的DHA-PC发挥其作用的功能尚未阐明。在这里,我们使用纯化的DHA-PC和油酸(OA)诱导的HepG2细胞建立高脂模型,然后测量细胞活性和细胞内脂质水平。通过RT-qPCR和western blot检测HepG2细胞中脂肪酸合酶(FAS),肉碱棕榈酰转移酶1A(CPT1A)和过氧化物酶体增殖物激活受体α(PPARα)的mRNA和蛋白表达。已经发现DHA-PC可以显着调节HepG2细胞中的甘油三酸酯积累,其作用与PPARα受体活性的活化,CPT1A的上调和FAS表达的下调有关。这些结果可以增进对大隐孢子虫DHA-PC介导的高脂血症生物功能的理解,并为利用大隐孢子虫DHA-PC作为功能性食品添加剂提供理论依据。

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