Institute of Nutrition and Health, Qingdao University, Qingdao, 266071, Shandong, China.
National R&D Center for Nuts Processing Technology, Qiaqia Food Co., Ltd, Hefei, 230601, Anhui, China.
Food Funct. 2022 Oct 3;13(19):9904-9917. doi: 10.1039/d2fo01479c.
The consumption of mixed nuts is a healthy dietary strategy to reduce the risk of cardiovascular disease and has a prebiotic effect on the gut microbiota. However, there is a lack of basic research based on mixed nut formulation. This study established a new method for optimizing mixed nut formulations using the Nutrient Rich Food (NRF) index model. Nutrient indices were adjusted by combining 10 and 8 encouraging nutrients and 3 limiting nutrients of nuts and dried fruits, respectively. The optimized mixed nut formulation had the highest total NRF and the lowest energy, which was achieved by applying linear programming. The effect of an optimized mixed nut formulation on insulin resistance and gut microbiota was investigated in an animal model of metabolic disorders caused by a high-fat diet. Male C57BL/6J mice ( = 12 per group) were fed a low-fat diet, a high-fat diet (HFD), HFD with a supplemented classical randomized controlled trial mixed nut formula (MN1), a commercially available mixed nut formula (MN2), a high-nutrient density mixed nut formula (MN3), or ellagic acid (positive control). MN3 treatment decreased total plasma cholesterol, homeostasis model assessment-insulin resistance index, high sensitivity C-reactive protein, and zonulin levels, strengthened the intestinal barrier, and significantly altered the β-diversity of the intestinal microbiota as compared to the HFD group. These effects of MN3 were superior to MN1 and MN2. In conclusion, MN3 had the highest nutrient density and improved insulin resistance in low-grade inflammation gut microbiota remodeling.
食用混合坚果是一种健康的饮食策略,可以降低心血管疾病的风险,并对肠道微生物群具有益生元作用。然而,基于混合坚果配方的基础研究还很缺乏。本研究采用营养素丰富食物(NRF)指数模型建立了一种优化混合坚果配方的新方法。通过分别结合坚果和干果果干的 10 种和 8 种鼓励营养素和 3 种限制营养素,调整营养素指数。通过线性规划,优化后的混合坚果配方具有最高的总 NRF 和最低的能量。在高脂肪饮食引起代谢紊乱的动物模型中,研究了优化混合坚果配方对胰岛素抵抗和肠道微生物群的影响。雄性 C57BL/6J 小鼠(每组 12 只)分别喂食低脂饮食、高脂肪饮食(HFD)、补充经典随机对照试验混合坚果配方(MN1)、市售混合坚果配方(MN2)、高营养密度混合坚果配方(MN3)或鞣花酸(阳性对照)。与 HFD 组相比,MN3 处理降低了总血浆胆固醇、稳态模型评估-胰岛素抵抗指数、高敏 C 反应蛋白和肠紧密连接蛋白水平,增强了肠道屏障,并显著改变了肠道微生物群的 β 多样性。MN3 的这些作用优于 MN1 和 MN2。总之,MN3 具有最高的营养密度,可改善低度炎症和肠道微生物群重塑引起的胰岛素抵抗。