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Energy extraction from nuts: walnuts almonds and pistachios

机译:从坚果中提取能量:核桃杏仁和开心果

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摘要

The bioaccessibility of fat has implications for satiety and postprandial lipidaemia. The prevailing view holds that the integrity of plant cell wall structure is the primary determinant of energy and nutrient extraction from plant cells as they pass through the gastrointestinal (GI) tract. However, comparisons across nuts (walnuts, almonds and pistachios) with varying physical properties do not support this view. In the present study, masticated samples of three nuts from healthy adults were exposed to a static model of gastric digestion followed by simulated intestinal digestion. Primary outcomes were particle size and lipid release at each phase of digestion. Walnuts produced a significantly larger particle size post-mastication compared with almonds. Under gastric and intestinal conditions, the particle size was larger for walnuts compared with pistachios and almonds ( < 0·05). However, the masticated and digesta particle sizes were not related to the integrity of cell walls or lipid release. The total lipid release was comparable between nuts after the intestinal phase ( > 0·05). Microstructural examination showed ruptured and fissured cell walls that would allow digestion of cellular contents, and this may be governed by internal cellular properties such as oil body state. Furthermore, the cell walls of walnuts tend to rupture rather than separate and as walnut tissue passes through the GI tract, lipids tend to coalesce reducing digestion efficiency.
机译:脂肪的生物可及性对饱腹感和餐后脂质血症有影响。普遍的观点认为,当植物细胞通过胃肠道时,植物细胞壁结构的完整性是从植物细胞中提取能量和营养的主要决定因素。但是,对具有不同物理特性的坚果(核桃,杏仁和开心果)进行比较不支持该观点。在本研究中,将来自健康成年人的三颗坚果的咀嚼样品暴露于静态的胃消化模型中,然后模拟肠道消化。主要结果是每个消化阶段的粒径和脂质释放。与杏仁相比,核桃在咀嚼后产生的粒径明显更大。在开心果中,与开心果和杏仁相比,核桃的粒径更大(<0·05)。但是,咀嚼和消化的颗粒大小与细胞壁的完整性或脂质释放无关。肠道阶段后,坚果之间的总脂质释放相当(> 0·05)。显微组织检查显示细胞壁破裂和裂开,这将使细胞内的物质消化,这可能受内部细胞特性(如油体状态)支配。此外,核桃的细胞壁倾向于破裂而不是分离,并且随着核桃组织穿过胃肠道,脂质倾向于聚结,从而降低消化效率。

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