Ru Zhiying, Xu Mingsheng, Zhu Gaoxiang, Tu Yonggang, Jiang Yan, Du Huaying
Key Laboratory of Natural Product and Functional Food of Jiangxi Jiangxi Agricultural University Nanchang China.
Food Sci Nutr. 2021 Sep 8;9(11):6162-6175. doi: 10.1002/fsn3.2569. eCollection 2021 Nov.
The immune regulation function of ovotransferrin (OVT) explored using the RAW264.7 was induced by lipopolysaccharide (LPS) as vitro model in this study. The results showed that RAW264.7 cultured with OVT (200 μg/ml) alone not only enhanced the phagocytic activity and the production and expression of inflammatory factors, but also expression of toll-like receptor 4 (TLR4) gene was significantly promoted by OVT. OVT (50 μg/ml) significantly inhibited the secretion and expression of inflammatory factors in LPS-stimulated RAW264.7, but CD14 and TLR4 genes expressions were no obvious effects. Inflammatory cytokines and NO secreted by OVT-induced macrophages pretreated with inhibitors of TLR4 were down-regulated. We further verified the effects of OVT on inflammatory signaling pathway-related proteins through immunofluorescence and western blotting, MyD88, TLR4 and the phosphorylation of IκBα and p65 were significantly promoted by OVT, but there was no significant effects on the phosphorylation of IRF3. OVT promoted the phosphorylation of ERK and p38 in RAW264.7 and inhibited the phosphorylated expression of MAPK in LPS-mediated inflammation. These results indicated that OVT had the bidirectional immunoregulatory function through TLR4-mediated NF-κB/MAPK signaling pathway, that is, anti-inflammatory effect of low concentration and immune-enhancing activity of high concentration were showed. That provides a theoretical utilization for the development and utilization of OVT.
本研究以脂多糖(LPS)诱导的RAW264.7细胞为体外模型,探讨了卵转铁蛋白(OVT)的免疫调节功能。结果表明,单独用OVT(200μg/ml)培养RAW264.7细胞,不仅增强了吞噬活性以及炎症因子的产生和表达,而且OVT还显著促进了Toll样受体4(TLR4)基因的表达。OVT(50μg/ml)显著抑制LPS刺激的RAW264.7细胞中炎症因子的分泌和表达,但对CD14和TLR4基因的表达没有明显影响。用TLR4抑制剂预处理的OVT诱导的巨噬细胞分泌的炎性细胞因子和NO下调。我们通过免疫荧光和蛋白质免疫印迹进一步验证了OVT对炎症信号通路相关蛋白的影响,OVT显著促进了MyD88、TLR4以及IκBα和p65的磷酸化,但对IRF3的磷酸化没有显著影响。OVT促进RAW264.7细胞中ERK和p38的磷酸化,并抑制LPS介导的炎症中MAPK的磷酸化表达。这些结果表明,OVT通过TLR4介导的NF-κB/MAPK信号通路具有双向免疫调节功能,即表现出低浓度的抗炎作用和高浓度的免疫增强活性。这为OVT的开发利用提供了理论依据。