首页> 外文期刊>Marine biotechnology >Polysaccharides from Capsosiphon fulvescens Stimulate the Growth of IEC-6 Cells by Activating the MAPK Signaling Pathway
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Polysaccharides from Capsosiphon fulvescens Stimulate the Growth of IEC-6 Cells by Activating the MAPK Signaling Pathway

机译:来自Capsosiphon fulvescens的多糖通过激活MAPK信号通路刺激IEC-6细胞的生长。

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摘要

Seaweed extracts show diverse bioactivities, such as antioxidant and antitumor activity. Capsosiphon fulvescens is a green alga that is abundant along the southwest coast of South Korea. Although it is consumed for its purported health-enhancing properties, particularly as a treatment for stomach disorders and hangovers, the health effects of dietary C. fulvescens remain unclear. We extracted polysaccharides from C. fulvescens (Cf-PS), investigated their effects on the proliferation of rat small intestinal epithelial IEC-6 cells, and determined the signaling cascade involved. We cultured IEC-6 cells in the presence of Cf-PS, which stimulated cell proliferation in a dose-dependent manner, and analyzed the Wnt and MAPK signaling pathways, which are related to cell proliferation. Cf-PS treatment induced the translocation of beta-catenin, an effector of the Wnt signaling pathway, from the cytosol to the nucleus and increased the expression of cyclinD1 and c-myc. Cf-PS also induced ERK1/2 phosphorylation, which is activated by mitogenic and proliferative stimuli such as growth factors, but the phosphorylation of JNK and p38 was not enhanced. Our results show that Cf-PS regulates proliferation via stimulating the nuclear translocation of beta-catenin and ERK1/2 activation in intestinal epithelial cells.
机译:海藻提取物具有多种生物活性,例如抗氧化剂和抗肿瘤活性。 Capsosiphon fulvescens是一种绿藻,在韩国西南海岸沿岸丰富。尽管食用它的目的是增强健康,特别是作为治疗胃部疾病和宿醉的方法,但饮食中的黄腐梭菌对健康的影响仍不清楚。我们从C. fulvescens(Cf-PS)中提取了多糖,研究了它们对大鼠小肠上皮IEC-6细胞增殖的影响,并确定了涉及的信号传导级联。我们在Cf-PS存在下培养IEC-6细胞,该Cf-PS以剂量依赖性方式刺激细胞增殖,并分析了与细胞增殖有关的Wnt和MAPK信号通路。 Cf-PS处理可诱导Wnt信号通路的效应子β-catenin从胞浆转移到细胞核,并增加cyclinD1和c-myc的表达。 Cf-PS还诱导了ERK1 / 2磷酸化,该磷酸化被有丝分裂和增殖刺激物(如生长因子)激活,但JNK和p38的磷酸化并未增强。我们的结果表明,Cf-PS通过刺激小肠上皮细胞中β-catenin的核易位和ERK1 / 2活化来调节增殖。

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