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3篇 您的检索式:作者名="Xiqing Luo"
    题名 作者 年代 出处 被引量
1Assessment of the allergenicity and antigenicity potential of enzymatically hydrolyzed cow milk显示文摘Cow milk allergy is a major cause of food hypersensitivity in infants and children.However,to the best of our knowledge,there has been minimal research on the antigenicity of cow milk(CM).As it is currently unknown if enzymatically hydrolyzed cow milk(HM)induces severe immunogenic responses,the potential allergenicity of HM was systematically evaluated in this work.HM effectively attenuated symptoms of weight loss and diarrhea,suppressed levels of mast cell tryptase,and relieved allergic inflammation of the intestine.Moreover,HM reduced the B220+cell count in mouse blood.In addition,in vitro studies demonstrated that gastrointestinal digestion of HM was not resistant to pepsin or trypsin.Thus,HM effectively alleviated allergic reactions and exhibited lower potential allergenicity.These results provide practical information for the future development of hypoallergenic CM products.Xiaona Liang Hui Yang Xue Luo Na Chen Zhisong Ai Yu Xing Wei Huang Zongzhou Wang Yan Zheng Xiqing Yue 2022Food Bioscience2022,45,1:0
2Discovery of Large Bubble-Like Caves in the Laoshan Granites and Its Significance显示文摘Objective In recent years,the dispute regarding the Quaternary glacier of eastern China has become a research focus again,and one of the important focuses is the'glacial pothole'.In fact,the micro-topographic genesis of the rocky surface mortar may be interpreted differently in different places,including pothole,weathering pit,sea cave and wind-eroding pot.It is very controversial to determine this'glacial pothole'.SONG Zhaojun LIU Xiqing TANG Wenjia GAO Luo LI Jianping LUAN Shaogang 2016Acta Geologica Sinica(English Edition)2016,90,1:0
3Novel hierarchical yolk-shell α-Ni(OH)_(2)/Mn_(2)O_(3) microspheres as high specific capacitance electrode materials for supercapacitors显示文摘For high performance supercapacitors, novel hierarchical yolk-shell α-Ni(OH)_(2)/Mn_(2)O_(3) microspheres were controllably synthesized using a facile two-step method based on the solvothermal treatment. The unique α-Ni(OH)_(2) based yolk-shell microstructures decorated with numerous interconnected nanosheets and the heterocomposition features can synergistically enhance reactive site exposure and electron conduction within the microspheres, facilitate charge transfer between electrolyte and electrode materials, and release structural stress during OH− chemisorption/desorption. Moreover, the Mn2O3 sediments distributed over the α-Ni(OH)_(2) microspheres can serve as an effective protective layer for electrochemical reactions. Consequently, when tested in 1 mol·L^(−1) KOH aqueous electrolyte for supercapacitors, the yolk-shell α-Ni (OH)_(2)/Mn_(2)O_(3) microspheres exhibited a considerably high specific capacitance of 2228.6 F·g^(−1) at 1 A·g^(−1) and an impressive capacitance retention of 77.7% after 3000 cycles at 10 A·g^(−1). The proposed α-Ni(OH)_(2)/Mn_(2)O_(3) microspheres with hetero-composition and unique hierarchical yolk-shell microstructures are highly promising to be used as electrode materials in supercapacitors and other energy storage devices.Xiqing Luo Miaomiao Jiang Kun Shi Zhangxian Chen Zeheng Yang Weixin Zhang 2021Frontiers of Chemical Science and Engineering2021,15,5:0
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