首页> 外文会议>NSTI Nanotechnology Conference and Trade Show(NSTI Nanotech 2005) vol.1; 20050508-12; Anaheim,CA(US) >Use of Magnetoresistive Biochips for Monitoring of Pathogenic Microorganisms in Water through Bioprobes: Oligonucleotides and Antibodies
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Use of Magnetoresistive Biochips for Monitoring of Pathogenic Microorganisms in Water through Bioprobes: Oligonucleotides and Antibodies

机译:利用磁阻生物芯片通过生物探针监测水中的病原微生物:寡核苷酸和抗体

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摘要

Magnetoresistive spin valve sensors have been integrated in a micro-engineered biochip and applied to the detection of pathogenic microorganisms for water biological quality management. Two different strategies of biomolecular recognition events, involving 16S rDNA oligonucleotide sequences and antibodies as recognition agents, are suggested for the detection of Escherichia coli and Salmonella sp. as model microorganisms. The development of the platform involves the immobilization of specific probes for target capture, as well as the labeling of the target species with nanometer-sized paramagnetic markers. The molecular interaction between probe and target is monitored almost in real-time through the measurement of the variation of the sensor resistance with the magnetic stray fields created by the labels. Preliminary results for the detection of Salmonella whole cells using this immunosensor platform are presented.
机译:磁阻自旋阀传感器已集成在微工程生物芯片中,并应用于水生物质量管理的病原微生物检测。建议使用两种不同的生物分子识别事件策略,包括16S rDNA寡核苷酸序列和抗体作为识别剂,来检测大肠杆菌和沙门氏菌。作为模型微生物。该平台的开发涉及固定用于目标捕获的特定探针,以及使用纳米级顺磁性标记物标记目标物种。探针和靶标之间的分子相互作用几乎可以通过标记物产生的杂散磁场对传感器电阻的变化进行实时监测。提出了使用该免疫传感器平台检测沙门氏菌全细胞的初步结果。

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