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Comparative study of the effects of Tartary buckwheat seed and sprout consumption on the physiological indices and gut microbiota of C57BL/6J mice
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作者 Guohui Nan Haixia Zhao +6 位作者 Qiong Wu Lisong Liu zichao guan Chenglei Li Huala Wu Dabing Xiang Qi Wu 《Food Science and Human Wellness》 SCIE CSCD 2024年第2期791-800,共10页
Tartary buckwheat(Fagopyrum tataricum)is a well-known pseudocereal for its health and economic value.However,abundant antinutritional factors(ANFs)reduces its health benefits.As reported,germination can improve the nu... Tartary buckwheat(Fagopyrum tataricum)is a well-known pseudocereal for its health and economic value.However,abundant antinutritional factors(ANFs)reduces its health benefits.As reported,germination can improve the nutritional profile of grains.In this study,we systematically evaluate the safety of Tartary buckwheat seeds(TB)and Tartary buckwheat sprouts(TBS)used as high active ingredients.After evaluating nutrition levels,bioactive compounds and ANFs in TBS during germinating,5^(th)-day TBS were selected as the raw material.C57BL/6J mice were gavaged daily with distilled water,TB,or TBS for 6 weeks.The physiological indices related to ANFs were determined.Results showed that the TB intake tends to generate negative effects on the gut microbiota,and organs.Additionally,upon TB intake,the Fe^(3+)content in serum,trypsin activity in pancreas and jejunum decreased,while the cytokine,IgE,and histamine levels in serum,water content in faeces,cytokine levels in liver and jejunum increased.Conversely,TBS did not induce any obvious negative effects on the above relevant indices and showed better lipid-lowering effect.Altogether,TBS are safer and more effective as a raw material to produce the functional food for long-term consumption with the intention of preventing and treating hyperlipidaemia. 展开更多
关键词 Tartary buckwheat Tartary buckwheat sprouts Antinutritional factors Gut microbiota Health effect
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NiO/TiO_(2)异质结构纳米管阵列膜对不锈钢的光生阴极保护及其储能性能 被引量:1
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作者 金飘 官自超 +4 位作者 梁燕 谭凯 王霞 宋光铃 杜荣归 《物理化学学报》 SCIE CAS CSCD 北大核心 2021年第3期66-72,共7页
本工作通过修饰TiO_(2)制备半导体复合膜,提高其光吸收和光电化学性能,以期应用于光生阴极保护。先采用阳极氧化法在Ti表面制备TiO_(2)纳米管阵列膜,再应用水热处理法在膜表面沉积NiO纳米颗粒,形成具有异质结构纳米管复合膜。利用扫描... 本工作通过修饰TiO_(2)制备半导体复合膜,提高其光吸收和光电化学性能,以期应用于光生阴极保护。先采用阳极氧化法在Ti表面制备TiO_(2)纳米管阵列膜,再应用水热处理法在膜表面沉积NiO纳米颗粒,形成具有异质结构纳米管复合膜。利用扫描电子显微镜、X-射线衍射、X-射线光电子能谱、紫外-可见吸收光谱、光致发光谱和光电化学技术对制备的纳米膜进行表征。结果表明,与纯TiO_(2)纳米管膜比较,NiO/TiO_(2)纳米管复合膜的光吸收扩展到可见光区。白光照射下,其在0.5 mol·L^(−1) KOH和1 mol·L^(−1) CH3OH混合液中的光电流密度达到176μA·cm^(−2),是纯TiO_(2)纳米管膜的2倍。复合膜具有良好的光生阴极保护作用,与0.5 mol·L^(−1) NaCl溶液中的403不锈钢耦连后,可使其电极电位下降440 mV,在光照2.5 h再转为暗态后,因具有电荷储存能力还可继续提供约15.5 h的阴极保护效应。 展开更多
关键词 阳极氧化 水热处理 TiO_(2)纳米管 NIO 光电化学 光生阴极保护 不锈钢
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