首页> 外文会议>Sensors Applications Symposium (SAS), 2009 IEEE; New Orleans,LA,USA >Label free electrical detection of salmonella typhimurium pathogens by microcellular trapping channels
【24h】

Label free electrical detection of salmonella typhimurium pathogens by microcellular trapping channels

机译:微细胞捕获通道无标记电检测鼠伤寒沙门氏菌病原体

获取原文
获取原文并翻译 | 示例

摘要

Salmonalla is one of the major causes of worldwide foodborne diseases. Conventional microbiological detection methods are time consuming and the recent signal transduction schemes based on fluorescence spectroscopy, surface plasmon resonance and others require specialized bulky and expensive instruments, which will increase the overall production cost in the food industry. This paper reports for the first time the use of microcellular trapping channels of oxidized macroporous silicon substrate with stable contacts directly from macroporous silicon using antibody-antigen binding method for label free, rapid, field deployable and inexpensive electrical detection of Salmonella Typhimurium by impedance measurements. Macroporous silicon is a regular array of pores of 1-2µm diameter which act as microcellular trapping medium for capture of bacteria. The preliminary reports show that a 2mm by 1mm electrode structure with a spacing of 1mm on oxidized macroporous silicon, without any optimization has been able to detect 103CFU-107CFU/ml of Salmonella Typhimurium using this microcellular trapping medium at a significantly lower processing cost and is comparable to much more sophisticated impedimetric measurements using interdigitated microelectrode array with dielectrophoresis (DEP). The relatively high sensitivity achieved with large electrode spacing can be attributed to the localization of fringing electric field lines through the trap holes occupied by bacterial analyte solution near the electrode. Using this technique an array of such sensitive sensors can be easily realized to yield a biochip for detection of various foodborne pathogens down to 103CFU/ml.
机译:沙门氏菌是全球食源性疾病的主要原因之一。常规的微生物检测方法很费时,并且最近的基于荧光光谱,表面等离子体共振等的信号转导方案需要专用的笨重且昂贵的仪器,这将增加食品工业的总体生产成本。本文首次报道了使用抗体-抗原结合方法直接从大孔硅中直接接触大孔硅的稳定接触的氧化大孔硅基质的微孔捕获通道,用于通过阻抗测量进行无标记,快速,现场部署和廉价的沙门氏菌电检测。大孔硅是规则排列的直径为1-2μm的孔,可作为捕获细菌的微细胞捕获介质。初步报告显示,在氧化大孔硅上间距为1mm的2mm x 1mm电极结构,无需进行任何优化即可检测10 3 CFU-10 7 CFU / ml鼠伤寒沙门氏菌,使用这种微细胞捕获介质的加工成本大大降低,与使用带介电电泳的叉指式微电极阵列(DEP)进行的更复杂的阻抗测定相当。在较大的电极间距下获得的相对较高的灵敏度可归因于边缘电场线通过电极附近细菌分析物溶液占据的捕获孔的定位。使用这种技术,可以很容易地实现这种敏感传感器的阵列,以生产出一种生物芯片,用于检测低至10 3 CFU / ml的各种食源性病原体。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号