Feruloylated arabinoxylan from wheat bran inhibited M1-macrophage activation and enhanced M2-macrophage polarization

INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES(2022)

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摘要
The effects of feruloylated arabinoxylan (AX) on typically activated inflammatory macrophages (M1) and alternatively anti-inflammatory macrophages (M2) and its possible mechanisms were investigated. The results revealed that feruloylated AX was composed of 37.63% arabinose and 52.23% xylose, with a weight-average molecular weight of 1.1374 x 104 Da, and bound ferulic acid content of 10.84 mg/g. Besides, feruloylated AX (50-1000 mu g/mL) markedly downregulated the mRNA expressions of NO, IL-1 beta, TNF-alpha, IL-6, and IL-23a, and reduced the phosphorylation levels of p38, ERK, and JNK in M1. In contrast, the mRNA expressions of Arg-1, Mrc-1, and CCL22 were significantly upregulated by feruloylated AX (50-1000 mu g/mL), and the phosphorylation level of AKT was significantly increased in M2. Overall, our results indicated that feruloylated AX could have an inhibitory or a promoting effect on already activated macrophages, and MAPK or PI3K signaling pathways might be involved in this regulation.
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Feruloylated arabinoxylan, Macrophage phenotype, MAPK and PI3K pathways
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