School of Food and Biology Engineering, Hefei University of Technology, Hefei, Anhui, China.
Engineering Research Center of Biology, Ministry of Education, Hefei University of Technology, Hefei, Anhui, China.
J Food Biochem. 2020 Sep;44(9):e13362. doi: 10.1111/jfbc.13362. Epub 2020 Jul 14.
Banana (Musa nana Lour.) have the effect of anti-obesity and lipid modulating properties. However, the influences of banana pulp dietary fibers (BP-DF) on metabolic syndrome (MetS) and gut microbiota (GM) are unknown. In this research, we explore a novel strategy for dietary BP-DF on attenuation of lipid metabolic disease, GM disorder, and associated mechanisms in high-fat diet (HFD) mice. BP-DF can strongly suppress on HFD caused body weight and epididymal fat mass gain, and significantly improved serum lipid profiles, liver lipid profiles, and intestinal function. BP-DF also significantly improved fecal short-chain fatty acids formation and fecal ammonia content. BP-DF impacted the intestinal microorganism at all kinds of taxonomic levels by increasing the proportions of beneficial Lactobacillus, Bacteroidales _S24_7_group, and Alloprevotella and decreasing the disease or obesity associated Sutterella, Streptococcaceae, and Erysipelotrichaceae. The experiments show that BP-DF may use as a functional ingredient for preventing obesity, MetS, and intestinal microorganism imbalance. PRACTICAL APPLICATIONS: Obesity result in many metabolic complications, and it poses a great threat to people's health. Nowadays, the introduction of DF may lead to the development of a new strategy in the treatment of obesity and its metabolic syndrome. Our experiments findings show that BP-DF may use as a functional ingredient for preventing obesity, MetS, and intestinal microorganism imbalance. Therefore, BP-DF can be applied to the development and production of functional food, and can also be used as an important food functional ingredient, which can be added to various food, such as bread, noodles, baked goods, cakes, etc., to improve its nutritional value.
香蕉(Musa nana Lour.)具有抗肥胖和调节脂质的作用。然而,香蕉果肉膳食纤维(BP-DF)对代谢综合征(MetS)和肠道微生物群(GM)的影响尚不清楚。在这项研究中,我们探索了一种新的策略,即通过饮食 BP-DF 来减轻高脂肪饮食(HFD)小鼠的脂质代谢疾病、GM 紊乱和相关机制。BP-DF 能强烈抑制 HFD 引起的体重和附睾脂肪质量增加,并显著改善血清脂质谱、肝脂质谱和肠道功能。BP-DF 还显著改善了粪便短链脂肪酸的形成和粪便氨含量。BP-DF 通过增加有益的乳杆菌、拟杆菌 _S24_7_群和 Alloprevotella 的比例,降低与疾病或肥胖相关的 Sutterella、链球菌科和肠杆菌科的比例,对肠道微生物群在各种分类水平上都产生了影响。实验表明,BP-DF 可作为预防肥胖、MetS 和肠道微生物失衡的功能性成分。
肥胖会导致许多代谢并发症,对人们的健康构成极大威胁。如今,DF 的引入可能会导致肥胖及其代谢综合征治疗的新策略的发展。我们的实验结果表明,BP-DF 可作为预防肥胖、MetS 和肠道微生物失衡的功能性成分。因此,BP-DF 可应用于功能性食品的开发和生产,也可作为一种重要的食品功能性成分,添加到各种食品中,如面包、面条、烘焙食品、蛋糕等,以提高其营养价值。