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纳米膜与硅烷化表面修饰相结合制备基因芯片载体

Preparation of Gene Chip Carrier by Surface Modification of Nano-membrane and Silanization

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【作者】 肖方竹; 邓健; 彭国文; 刘万兵; 周亮; 李乐;

【Author】 XIAO Fang-zhu1,DENG Jian2,PENG Guo-wen2,LIU Wan-bing1,ZHOU Liang1,LI Le1(1.School of Public Health,University of South China,Hengyang,Hunan 421001,China;2.School of Chemistry and Chemical Engineering,University of South China,Hengyang,Hunan 421001,China)

【机构】 南华大学公共卫生学院; 南华大学化学化工学院; 南华大学公共卫生学院 湖南衡阳421001; 湖南衡阳421001;

【摘要】 将洁净的玻片,在以溶胶-凝胶法制备的TiO2胶体溶液中浸渍提拉成膜,再将组装纳米薄膜的玻片进行硅烷化处理.用傅里叶变换红外光谱、扫描电镜、荧光显微镜对样品进行表征.结果表明,带氨基或醛基的"手臂分子"可以固定在纳米薄膜组装的玻片上,并且荧光信号强于仅用硅烷化处理的玻片.本研究建立的芯片载体表面化学修饰方法有较高的效率,操作简便易行,具备广阔的应用前景.

【Abstract】 Cleaned glass slides were dipped into the colloidal sol solution prepared by sol-gel method,and then covered with TiO2 nano-membrane.The slides coated with nanostructure thin film were silanized later.The samples were characterized by Fourier transform infrared spectrometer(FTIR),Scanning Electron microscope(SEM) and Fluorescence microscope.Results showed that "Linkers" which comprise amidogen and aldehyde groups can be immobilized on the improved surface,and fluorescence intensity was superior to those slides treated only with silanization.This method of silanization coupled with nanometer technology is simple and convenient.It is more efficient than only silanization,and shows broad prospects for gene chip’s industrialization.

【基金】 湖南省科技厅基金资助项目(2007FJ4152)
  • 【文献出处】 南华大学学报(自然科学版) ,Journal of University of South China(Science and Technology) , 编辑部邮箱 ,2007年04期
  • 【分类号】Q78
  • 【被引频次】1
  • 【下载频次】205
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