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Arachidonic acid induces ER stress and apoptosis in HT-29 human colon cancer cells

机译:花生素酸在HT-29人结肠癌细胞中诱导ER应激和凋亡

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摘要

Polyunsaturated fatty acids (PUFAs) have important functions in biological systems. The beneficial effects of dietary PUFAs against inflammatory diseases, cardiovascular diseases, and metabolic disorders have been shown. Studies using cancer cells have presented the anti-tumorigenic effects of docosahexaenoic acid (DHA), an n-3 PUFA, while arachidonic acid (AA), an n-6 PUFA, has been shown to elicit both pro- and anti-tumorigenic effects. In the current study, the anti-tumorigenic effects of AA were evaluated in HT-29 human colon cancer cells. Upon adding AA in the media, more than 90% of HT-29 cells died, while the MCF7 cells showed good proliferation. AA inhibited the expression of SREBP-1 and its target genes that encode enzymes involved in fatty acid synthesis. As HT-29 cells contained lower basal levels of fatty acid synthase, a target gene of SREBP-1, than that in MCF7 cells, the inhibitory effects of AA on the fatty acid synthase levels in HT-29 cells were much stronger than those in MCF-7 cells. When oleic acid (OA), a monounsaturated fatty acid that can be synthesized endogenously, was added along with AA, the HT-29 cells were able to proliferate. These results suggested that HT-29 cells could not synthesize enough fatty acids for cell division in the presence of AA because of the suppression of lipogenesis. HT-29 cells may incorporate more AA into their membrane phospholipids to proliferate, which resulted in ER stress, thereby inducing apoptosis. AA could be used as an anti-tumorigenic agent against cancer cells in which the basal fatty acid synthase levels are low.
机译:多不饱和脂肪酸(PUFAS)在生物系统中具有重要功能。显示膳食PUFA对炎症性疾病,心血管疾病和代谢障碍的有益效果。使用癌细胞的研究表明,使用癌细胞(DHA),N-3 PUFA的抗旋转致致致致致致致致致致致致致致致荷致致致致致致致致荷的作用,而Arachidonic酸(AA),N-6 Pufa,已被证明引发促进和抗致致致瘤效应。在目前的研究中,在HT-29人结肠癌细胞中评估AA的抗致旋转致瘤效应。在培养基中添加AA后,超过90%的HT-29细胞死亡,而MCF7细胞显示出良好的增殖。 AA抑制Srebp-1及其靶基因的表达,其编码参与脂肪酸合成的酶。随着HT-29细胞含有较低的基础水平的脂肪酸合酶,Srebp-1的靶基因比MCF7细胞中的靶基因,AA对HT-29细胞中脂肪酸合酶水平的抑制作用比那些更强烈MCF-7细胞。当油酸(OA)中,与AA一起加入可以内源合成的单一饱和脂肪酸,HT-29细胞能够增殖。这些结果表明,由于抑制脂肪生成,HT-29细胞不能在AA存在下为细胞分裂合成足够的脂肪酸。 HT-29细胞可以将更多AA掺入它们的膜磷脂中以增殖,这导致ER应激,从而诱导细胞凋亡。 AA可以用作抗致致荷瘤剂的癌细胞,其中基底脂肪酸合酶水平低。

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