长期饲喂沙米(Agriophyllum squarosum seed)可提高小鼠的抗氧化能力

Pub Date : 2023-04-01 DOI:10.1016/j.rcar.2023.04.006
PengShu Zhao , Liang Shi , Xia Yan , ChaoJu Qian , WeiJia Zhao , Yan Chang , XiaoYue Yin , XingKe Fan , TingZhou Fang , YuQiu Liao , ShanShan Zhou , XiaoFei Ma
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引用次数: 0

摘要

不健康的饮食习惯与高糖和高脂肪的食物会带来营养失衡和其他慢性疾病。目前,通过功能性食品调节人体亚健康的需求日益增加。沙米(L.)Moq。原产于沙丘的先锋植物,具有生态修复功能,是沙区传统食用植物和蒙古族民间医药。大量研究证实,沙米种子,又称沙米,具有很高的营养价值。然而,食用沙米对健康的长期影响尚不清楚。为了更好地探索和评价其长期效果,本实验以不同比例(对照、60%和95%)喂养ICR小鼠100 d。结果表明,与对照组相比,实验小鼠的生长和血糖水平曲线更低且更稳定。此外,饲喂纯沙米成分(95%)的小鼠在28 d后体重和血糖更加稳定,这表明沙米是一种营养价值全面的食物,很少对身体生长性能产生负面影响。我们的数据还表明,以纯沙米为食的小鼠血液中甘油三酯(TG)、总胆固醇(TC)、低密度脂蛋白胆固醇(LDL-C)和高密度脂蛋白胆固醇(HDL-C)含量最低,分别为0.48、4.14、0.91和3.03 mmol/L。T-SOD和GSH-PX活性在纯沙米梯度小鼠中均保持较高水平,与对照组相比,T-SOD和GSH-PX活性分别显著提高了36%和19%。说明长期摄入纯沙米成分更有利于稳定血脂和提高抗氧化能力,对慢性疾病患者有益。本研究首次提供了动物证据来支持沙米是一种具有全面营养前景的功能性食品的说法。我们相信,随着沙米日常使用量的增加,在广大沙漠地区种植沙米将进一步增加当地经济和生态恢复,以应对全球变暖。
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Long-term feeding of sand rice (Agriophyllum squarrosum seed) can improve the antioxidant capacity of mice

Unhealthy eating habits with sugar-rich and high-fat foods can bring nutritional imbalance and other chronic diseases. At present, there is an increasing demand in regulating human sub-health through functional foods. Agriophyllum squarrosum (L.) Moq., a pioneer plant native to sand dunes with ecological restoration function, is a traditional food plant of sand regions and Mongolian folk medicine. Numerous studies have confirmed that A. squarrosum seed, also called sand rice, has high nutritional value. However, the long-term health effects of eating sand rice remain unclear. To better explore and evaluate its long-term effects, hereby, ICR mice were fed with sand rice flour at different ratios (control, 60% and 95%) for 100 days. Results show that the growth and blood glucose level curve of these experimental mice were lower and more stable than that of the control. In addition, mice fed pure sand rice ingredient (95%) gained more stable body weight and blood glucose after 28 days, which revealed that sand rice is a food with comprehensive nutritional value and rarely negatively impacts the body growth performance. Our data also demonstrates that, the content of triglyceride (TG), total cholesterol (TC), low-density lipoprotein cholesterol (LDL-C) and high-density lipoprotein cholesterol (HDL-C) provided the lowest level in the blood of mice with a diet of pure sand rice ingredient, 0.48, 4.14, 0.91, 3.03 mmol/L, respectively. Also, T-SOD and GSH-PX activity provided a high level in mice with pure sand rice gradient, which significantly increased by 36% (T-SOD) and 19% (GSH-PX) compared to the control. These results suggest that long term intake of the pure sand rice ingredients is more helpful for stabilizing blood lipid and improve antioxidant capacity and beneficial to people suffering from chronic disease. This study supplies the first animal evidence to support the claim that sand rice is a promising functional food with comprehensive nutrition in the future. We are confident that, with increasing demands of daily sand rice usage, planting A. squarrosum in the vast desert regions will further increase the local economy and ecological restoration when coping with global warming.

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