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首页> 外文期刊>PLoS One >Immune-enhancing effects of anionic macromolecules extracted from Codium fragile coupled with arachidonic acid in RAW264.7 cells
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Immune-enhancing effects of anionic macromolecules extracted from Codium fragile coupled with arachidonic acid in RAW264.7 cells

机译:免疫增强阴离子大分子从粗脆岩中提取的阴离子大分子与Raw264.7细胞中的花生酸结合

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摘要

Arachidonic acid (ARA) is an integral constituent of the biological cell membrane, conferring it with fluidity and flexibility, which are necessary for the function of all cells, especially nervous system, skeletal muscle, and immune system. Codium species biosynthesize sulfated polysaccharides with very distinct structural features. Some of them have different biological activities with great potential in pharmaceutical applications. In this study, anionic macromolecules extracted from Codium fragile were investigated for their cooperative immune-enhancing activities with ARA. The cooperation between ARA and Codium resulted in increased, dose-dependent nitric oxide production and iNOS gene expression. In addition, co-treatment of ARA and Codium effectively increased pro-inflammatory cytokines (IL-1β, IL-6, and TNF-α), compared with Codium alone. We also demonstrated that the expression of COX-2 mRNA was also increased, which is responsible for the production of inflammatory mediator prostaglandins and their metabolites. Compared to the Codium group, the co-treatment of Codium with ARA enhanced the phosphorylation of nuclear factor-κB p-65, p38, and extracellular signal-related kinase 1/2, indicating that this combination stimulated immune response through nuclear factor-κB and mitogen-activated protein kinase pathways. These results indicated that the coordination of arachidonic acid with polysaccharide extracted from seaweed may be a potential source of immunomodulatory molecules.
机译:花生素酸(ARA)是生物细胞膜的一体组成部分,其具有流动性和柔韧性,这对于所有细胞的功能,尤其是神经系统,骨骼肌和免疫系统是必要的。 Codium物种生物合成硫酸化多糖具有非常明显的结构特征。其中一些具有不同的生物活动,具有巨大的药物应用。在这项研究中,研究了从脆弱的阴离子大分子提取的脆弱性与ARA合作免疫增强活性。 ARA和Codium之间的合作导致增加剂量依赖性的一氧化氮产生和InOS基因表达。此外,与单独的密码相比,ARA和Codium的共同治疗有效地增加了促炎细胞因子(IL-1β,IL-6和TNF-α)。我们还证明了COX-2 mRNA的表达也增加,这是炎症介质前列蛋白和代谢物的产生负责。与病态组相比,具有ARA的阴量的共处理增强了核因子-κBP-65,P38和细胞外信号相关激酶1/2的磷酸化,表明这种组合通过核因子-κB刺激了免疫应答和丝裂原激活的蛋白激酶途径。这些结果表明,从海藻中提取的多糖的花生酸的配位可以是免疫调节分子的潜在来源。

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