Collage of Food Science and Technology, Northwest University, 229 North TaiBai Road, Xi'an, 710069, China.
School of Chemical Engineering, Northwest University, 229 North TaiBai Road, Xi'an, 710069, China.
Mol Nutr Food Res. 2019 Dec;63(23):e1900638. doi: 10.1002/mnfr.201900638. Epub 2019 Nov 12.
Ulcerative colitis (UC) is a multifaceted and recurrent immune disorder that requires long-term potent pharmacological treatment. Honey, as a natural food of nourishment and pharmaceutical value, has been found to defend against colitis.
The effects of different constituents in honey are investigated on DSS-induced colitis in rats. Rats are given DSS, sugars, honey, polyphenols, or SASP for a week, with blood and colon samples collected for the biochemical parameters and inflammation-related gene analysis and colon contents for gut microbiota. The results show that pretreatments with honey polyphenols significantly improve SOD, GSH-Px, NO, and MPO levels and reduce DSS-induced colonic apoptosis, the colonic inflammatory cytokines IL-6, TNF-α, and TGF-β1 accompanied by downregulation of IL-1β, IL-6, TNF-α, and IFN-γ gene and upregulation of IκB-α gene. Furthermore, honey polyphenols and SASP show similar microbial community structure shifts and selective enrichment of key species. At the genus level, honey polyphenols significantly reduce the population of Bacteroides, Corynebacterium, and Proteus species. The correlation analysis indicates that colonic gene expression regulated by honey polyphenols is relative to the key species of gut microbiota.
Honey polyphenols improve intestinal inflammation and oxidative stress resistance via modulating gut microbiota, which is conducive to revealing the host-microbe interactions.
溃疡性结肠炎(UC)是一种多方面且反复发作的免疫性疾病,需要长期进行强效的药物治疗。蜂蜜作为一种具有营养和药用价值的天然食品,已被发现具有防治结肠炎的作用。
研究了蜂蜜中不同成分对 DSS 诱导的大鼠结肠炎的影响。给大鼠给予 DSS、糖、蜂蜜、多酚或 SASP 一周,采集血液和结肠样本进行生化参数和炎症相关基因分析,并对结肠内容物进行肠道微生物群分析。结果表明,蜂蜜多酚预处理可显著改善 SOD、GSH-Px、NO 和 MPO 水平,减少 DSS 诱导的结肠细胞凋亡,降低结肠炎症细胞因子 IL-6、TNF-α 和 TGF-β1 的水平,同时下调 IL-1β、IL-6、TNF-α 和 IFN-γ 基因的表达,上调 IκB-α 基因的表达。此外,蜂蜜多酚和 SASP 表现出相似的微生物群落结构变化和关键物种的选择性富集。在属水平上,蜂蜜多酚显著降低了拟杆菌属、棒状杆菌属和变形菌属的种群。相关性分析表明,蜂蜜多酚调节的结肠基因表达与肠道微生物群的关键物种有关。
蜂蜜多酚通过调节肠道微生物群来改善肠道炎症和氧化应激抗性,有助于揭示宿主-微生物相互作用。