联系我们|留言板|设为首页|加入收藏
  • 网站首页
  • 学科概况
    • 学科简介
    • 学科条件
  • 学科新闻
  • 学科队伍
    • 学科带头人
    • 纳米材料化学
    • 物理化学
    • 有机及分子药物化学
    • 无机能源及环境分析化学
    • 应用高分子及皮革化学
  • 学科平台
  • 科研成果
    • 研究项目
    • 研究论文
    • 成果获奖
    • 著作专利
    • 科研动态
  • 开放基金
  • 联系我们
今天是:
,浙江省重中之重化学一级学科网站欢迎您!
科研成果
  • 研究项目
  • 研究论文
  • 成果获奖
  • 著作专利
  • 科研动态
学科方向
友情链接
当前位置: 网站首页 > 科研动态
学科新闻
祝贺聂华贵老师指导研究生张静在analytical chemistry 上发表学术论文
日期:2014-01-09阅读:次

Self-Catalytic Growth of Unmodified Gold Nanoparticles as Conductive Bridges Mediated Gap-Electrical Signal Transduction for DNA Hybridization Detection

A simple and sensitive gap-electrical biosensor based on self-catalytic growth of unmodified gold nanoparticles (AuNPs) as conductive bridges has been developed for amplifying DNA hybridization events. In this strategy, the signal amplification degree of such conductive bridges is closely related to the variation of the glucose oxidase (GOx)-like catalytic activity of AuNPs upon interaction with single- and double-stranded DNA (ssDNA and dsDNA), respectively. In the presence of target DNA, the obtained dsDNA product cannot adsorb onto the surface of AuNPs due to electrostatic interaction, which makes the unmodified AuNPs exhibiting excellent GOx-like catalytic activity. Such catalytic activity can enlarge the diameters of AuNPs in the glucose and HAuCl4 solution and result in a connection between most of the AuNPs and a conductive gold film formation with a dramatically increased conductance. For the control sample, the catalytic activity sites of AuNPs are fully blocked by ssDNA due to the noncovalent interaction between nucleotide bases and AuNPs. Thus, the growth of the assembled AuNPs will not happen and the conductance between microelectrodes will be not changed. Under the optimal experimental conditions, the developed strategy exhibited a sensitive response to target DNA with a high signal to noise ratio. Moreover, this strategy was also demonstrated to provide excellent differentiation ability for single-nucleotide polymorphism. Such performances indicated the great potential of this label-free electrical strategy for clinical diagnostics and genetic analysis under real biological sample separation.

原文:http://pubs.acs.org/doi/abs/10.1021/ac4032675

0
 
上一篇:祝贺蒋俊和吴华悦老师指导的研究生康国伟在Org.Lett.上发表学术论文
下一篇:祝贺杨小平老师在Coordination Chemistry Reviews 上发表学术论文

版权所有 © 2012浙江省重中之重化学一级学科  联系电话:0577-88373017

加入收藏|设为首页|留言板