College of Food Science, Fujian Agriculture and Forestry University, Fuzhou, Fujian 350002, China.
Food Funct. 2020 Nov 18;11(11):10033-10046. doi: 10.1039/d0fo01840f.
Luteolin (LU) is a flavonoid compound and metformin hydrochloride (MH) is a kind of drug. Studies have shown that both LU and MH have the function of hypoglycemic effect. However, there are few reports indicating that LU cooperated with MH (LU·MH) can relieve lipid metabolism disorders and optimize intestinal flora compositions of high-fat diet mice. In this research, we investigated the effects of LU, MH and LU·MH on lipid metabolism disorders and intestinal flora composition in high-fat diet mice. The study found that compared with high-fat diet (HFD) alone, LU, MH and LU·MH could significantly reduce the lipid metabolism disorder. Furthermore, compared with LU or MH alone, the biochemical indicators of LU·MH were significantly improved and the results of the histopathological section also showed that LU·MH has stronger liver repair ability. It revealed that the potential mechanisms of the LU·MH alleviating lipid metabolism disorders were involved in the simultaneous regulation of SREBP-1c/FAS and SREBP-1c/ACC/Cpt-1. In addition, LU·MH could regulate the intestinal flora compositions. This includes significantly reducing the ratio of Firmicutes and Bacteroidetes(F/B) and at the family level, increasing the relative abundance of Lachnospiraceae, Helicobacteraceae, Marinifilaceae and Peptococcaceae to relieve lipid metabolism disorders. In conclusion, the work found that LU·MH regulates the signal pathway of SREBP-1c/FAS and SREBP-1c/ACC/Cpt-1 simultaneously and decreases the ratio of F/B, as well as increases the relative abundance of certain microbiota to alleviate the lipid metabolism disorders of HFD-fed mice.
木樨草素(LU)是一种类黄酮化合物,盐酸二甲双胍(MH)是一种药物。研究表明,LU 和 MH 都具有降血糖作用。然而,很少有报道表明 LU 与 MH(LU·MH)联合使用可以缓解高脂饮食小鼠的脂代谢紊乱并优化肠道菌群组成。在这项研究中,我们研究了 LU、MH 和 LU·MH 对高脂饮食小鼠脂代谢紊乱和肠道菌群组成的影响。研究发现,与单独高脂饮食(HFD)相比,LU、MH 和 LU·MH 均可显著降低脂代谢紊乱。此外,与单独 LU 或 MH 相比,LU·MH 的生化指标有明显改善,组织病理学切片结果也表明 LU·MH 具有更强的肝脏修复能力。这表明 LU·MH 缓解脂代谢紊乱的潜在机制涉及 SREBP-1c/FAS 和 SREBP-1c/ACC/Cpt-1 的同时调节。此外,LU·MH 可以调节肠道菌群组成。这包括显著降低厚壁菌门和拟杆菌门(Firmicutes 和 Bacteroidetes,F/B)的比例,在科水平上,增加lachnospiraceae、Helicobacteraceae、Marinifilaceae 和 Peptococcaceae 的相对丰度,以缓解脂代谢紊乱。总之,这项工作发现 LU·MH 同时调节 SREBP-1c/FAS 和 SREBP-1c/ACC/Cpt-1 的信号通路,降低 F/B 比值,并增加某些微生物群的相对丰度,以缓解 HFD 喂养小鼠的脂代谢紊乱。