Guangdong Academy of Agricultural Sciences, Sericultural & Agri-Food Research Institute/Key Laboratory of Functional Foods, Ministry of Agriculture and Rural Affairs/Guangdong Key Laboratory of Agricultural Products Processing, Guangzhou, 510610, China.
J Food Sci. 2021 Apr;86(4):1432-1447. doi: 10.1111/1750-3841.15679. Epub 2021 Mar 24.
The effect of mulberry leaf powder and components on preventing obesity and regulating lipid metabolism were investigated in the present study. The mechanism of action was explored by examining the gut microbiota and lipid metabolism-related signaling pathways. As evidenced by the nutritional obesity rats model experiments, the middle concentration mulberry leaf powder (MLP) group (0.8 g/kg·d) significantly reduced Lee's index (25.1, compared with model control group [MC] 25.7) and had the strongest lipid metabolism regulation effect. Furthermore, the suppression effects of different mulberry leaf components on nutritional obesity were compared and the mulberry leaf phenolics and fiber mixture (Mulberry leaf mixture [MLM]) group (0.6 g/kg·d) was found to have the strongest efficacy (body weight [BW] reduced 12.4%). Real time PCR (RT-qPCR) and western blot analyses demonstrated that MLP (0.8 g/kg·d) and its components inhibited adipocyte differentiation and triglyceride synthesis through the PPAR-γ- C/EBP-α signaling pathway, resulting in lipid metabolism regulation. Gut microbiota analysis indicated that MLM (0.6 g/kg·d) prevented the reduction in intestinal flora diversity (reach 491 species) caused by high-energy feed, and reduced the Firmicutes/Bacteroidetes ratio (to 7.99%) and the obesity associated flora, Lachnospiraceae (to 19.1%), whereas it improved the content of the beneficial flora, Lactobacilli, Lactobacillus_johnsonii (reach 11.77%). MLM improved the bioaccessibility and bioavailability of the two functional components (phenolics and fiber) and maximized the anti-obesity effect through the gut microbiota-host metabolism pathway. PRACTICAL APPLICATION: The anti-obesity and lipid metabolism regulation effect of mulberry leaf components were evaluated in this study. The fiber and phenolics of this plant have the potential for development of weight-loss functional foods.
本研究探讨了桑叶粉及其成分预防肥胖和调节脂代谢的作用。通过研究肠道微生物群和脂代谢相关信号通路,探讨了其作用机制。营养性肥胖大鼠模型实验结果表明,中浓度桑叶粉(MLP)组(0.8 g/kg·d)显著降低了 Lee 指数(25.1,与模型对照组[MC] 25.7 相比),且具有最强的脂代谢调节作用。此外,比较了不同桑叶成分对营养性肥胖的抑制作用,发现桑叶酚和纤维混合物(桑叶混合物[MLM])组(0.6 g/kg·d)效果最强(体重[BW]降低 12.4%)。实时 PCR(RT-qPCR)和 Western blot 分析表明,MLP(0.8 g/kg·d)及其成分通过 PPAR-γ-C/EBP-α 信号通路抑制脂肪细胞分化和甘油三酯合成,从而调节脂代谢。肠道微生物群分析表明,MLM(0.6 g/kg·d)可防止高脂肪饲料引起的肠道菌群多样性降低(达到 491 种),降低厚壁菌门/拟杆菌门比值(至 7.99%)和肥胖相关菌群lachnospiraceae(至 19.1%),同时提高有益菌群乳杆菌、Lactobacillus_johnsonii 的含量(达到 11.77%)。MLM 通过肠道微生物群-宿主代谢途径提高了两种功能成分(酚类和纤维)的生物利用度和生物可及性,最大限度地发挥了其抗肥胖作用。实用建议:本研究评价了桑叶成分的抗肥胖和调节脂代谢作用。该植物的纤维和酚类物质具有开发减肥功能性食品的潜力。