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6篇 您的检索式:作者名="Xinbin Gu"
    题名 作者 年代 出处 被引量
1黄病毒载体技术显示文摘郭银汉 王晓鹏 Xiaowu Pang Xinbin Gu 2005病毒学报2005,21,6:2
2EFFECT OF ELECTRIC CURRENT PULSE ON SUPERPLASTICITY OF ALUMINIUM ALLOY 7475显示文摘The superplastic deformation of aluminium alloy 7475 applied electric current pulse has been studied.The results presented that applying a high density current pulse raises both the elongation rate and the m value,and makes supperior superplastic properties at high strain rate of 10^(-2)s^(-1),the optimum deformation temperature could move from 530℃to 480~510℃,TEM observation showed the superplastic deformation of the alloy is the results of grain boundary slips and dislocation slips in grains under function of the electron wind;the intergranular tear is a main behavior of fracture of the alloy.Li Yao Chen Hong Gu Yunqou Hu Xinbin 1996Transactions of Nonferrous Metals Society of China1996,6,1:2
3Enforced expression ofmiR -101 inhibits prostate cancer cell growth by modulating the COX-2 pathway in vivo cancer显示文摘Yubin Hao Xinbin Gu Yuan Zhao 2011Med Oncol2011,4,7:1
4Insights into low fish mercury bioaccumulation in a mercury-contaminated reservoir, Guizhou, China显示文摘Bian Liu Haiyu Yan Cuiping Wang Qiuhua Li Stéphane Guédron Jorge E. Spangenberg Xinbin Feng Janusz Dominik 2011Environmental Pollution2011,,:1
5含2A片段的重组黄热病毒17D疫苗表达载体的构建显示文摘黄热疫苗是一种减毒的黄热病毒17D(YF-17D)活疫苗,是现有疫苗中最安全、最有效的疫苗之一,适于发展为疫苗载体。用RT-PCR法扩增出覆盖YF-17D全长基因组的3个cDNA片段:5′cDNA(A)、3′cDNA(B)和中间cDNA(C),同时引入SP6增强子序列、酶切位点和重复序列。顺序将A和B同E.coli-yeast穿梭质粒pRS424连接,再与C共转染酵母菌,利用缺少色氨酸和尿嘧啶的选择性固体培养基筛选出含YF-17D全长基因组的cDNA质粒。以该质粒为模板,经过DNA重组和酵母同源重组,获得含有口蹄疫病毒蛋白水解酶2A片段的重组YF-17D表达载体。将该表达载体体外转录后,电击转染BHK-21细胞。间接免疫荧光检测结果表明,RNA转录体在BHK-21细胞中进行了稳定的表达;滴度测定与形态学观察结果表明,重组病毒在细胞中的生长曲线等特征同母本YF-17D十分相似。结果提示,利用酵母菌同源重组在2A部位引入异种抗原基因,重组YF-17D表达载体pRS-YF-2A1具有成为高效活疫苗表达载体的潜力。XiaowuPang 付文川 郭银汉 张立树 谢天培 Xinbin Gu 2006生物工程学报2006,22,3:0
6Mercury transformation processes in nature: Critical knowledge gaps and perspectives for moving forward显示文摘The transformation of mercury(Hg) in the environment plays a vital role in the cycling of Hg and its risk to the ecosystem and human health. Of particular importance are Hg oxidation/reduction and methylation/demethylation processes driven or mediated by the dynamics of light, microorganisms, and organic carbon, among others. Advances in understanding those Hg transformation processes determine our capacity of projecting and mitigating Hg risk. Here, we provide a critical analysis of major knowledge gaps in our understanding of Hg transformation in nature, with perspectives on approaches moving forward. Our analysis focuses on Hg transformation processes in the environment, as well as emerging methodology in exploring these processes. Future avenues for improving the understanding of Hg transformation processes to protect ecosystem and human health are also explored.Zhiyuan Gao Wang Zheng Yanbin Li Yurong Liu Mengjie Wu Shouying Li Ping Li Guangliang Liu Xuewu Fu Shuxiao Wang Feiyue Wang Yong Cai Xinbin Feng Baohua Gu Huan Zhong Yongguang Yin 2022Journal of Environmental Sciences2022,34,9:0
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