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催化材料对病毒吸附及灭活作用特性的研究

Characteristics of Adsorption and Inactivation of Viruses by Catalyst Materials

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【作者】 赵春霞明平文杨凌刘中民张卓然马磊许磊齐越孙承林韩秀文陈严曲振平缪少军郑丛龙赵欣捷杜逊甫刘波孔宏伟王畅叶芬刘守新胡刚刘页张涛黄向阳包信和许国旺

【Author】 ZHAO Chunxia1, MING Pingwen1, YANG Ling1, LIU Zhongmin1, ZHANG Zhuoran2, MA Lei1, XU Lei1, QI Yue1, SUN Chenglin1, HAN Xiuwen1, CHEN Yan1, QU Zhenping1, MIAO Shaojun1, ZHENG Conglong2, ZHAO Xinjie1, DU Xunfu1, LIU Bo1, KONG Hongwei1, WANG Chang1, YE Fen1, LIU Shouxin1, HU Gang1, LIU Ye1, ZHANG Tao1, HUANG Xiangyang1, BAO Xinhe1, XU Guowang1(1. Dalian Institute of Chemical Physics, The Chinese Academy of Sciences, Dalian 116011, China; 2. Dalian Medical University, Dalian 116023, China)

【机构】 中国科学院大连化学物理研究所大连医科大学中国科学院大连化学物理研究所 辽宁大连116023辽宁大连116023辽宁大连116023

【摘要】 以核酸分子及普通病毒作为探针和模拟对象,进行了催化材料吸附、灭活副流感病毒的研究,旨在筛选出对病毒有过滤、吸附及灭活作用的高效非特异性催化材料,以应用于病毒的各种防护设施以及有效控制非典型性肺炎的传播。共评价了93种新合成的催化剂,发现两种催化材料对病毒具有杀灭作用。

【Abstract】 SARS ( severe acute respiratory syndrome) is a severe problem for people all over the world, and it is extremely urgent to control the spread of SARS. The purpose of this work is to evaluate and find effective catalyst(s), which can adsorb, decompose and inactivate viruses. In this study, nucleic acid and the parainfluenza virus, which is very similar to SARS, were selected as the probe and model object. Among the 93 newly synthesized catalysts evaluated using capillary electrophoretic and biochemical methods, two of them were found to be highly effective for killing the virus and will be useful for protection against the SARS infection.

  • 【文献出处】 色谱 ,Chinese Journal of Chromatography , 编辑部邮箱 ,2003年03期
  • 【分类号】R318.08
  • 【被引频次】3
  • 【下载频次】277
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