首页> 外文会议>Conference on Microfluidics, BioMEMS, and Medical Microsystems >Whole-cell luminescence biosensor-based lab-on-chip integrated system for water toxicity analysis
【24h】

Whole-cell luminescence biosensor-based lab-on-chip integrated system for water toxicity analysis

机译:基于整个细胞发光的生物传感器的实验室内综合体毒性分析

获取原文

摘要

A novel water chemical toxin sensor has been successfully developed and evaluated as a working portable laboratory prototype. This sensor relies on a disposable plastic biochip prepared with a 4x4 micro-laboratory (μLab) chambers array of Escherichia coli reporter cells and micro-fluidic channels for liquids translocation. Each bacterial strain has been genetically modified into a bioluminescent reporter that responds to a pre-determined class of chemical agents. When challenged with a water sample containing a toxic chemical, the sensor responds with an increased bioluminescent signal from the biochip that is monitored over time. The signal is received by a motorized photomultiplier-based analyzer and interpreted by signal processing software. We have performed several levels of analysis: (i) the change in the bioluminescent signal from the sensor bacteria serves as a rapid indication for the presence of toxic chemicals in the water sample; (ii) the intensity of the change indicates the toxin concentration level; and (iii) the pattern of the responses for the different members of the bacterial panel on the biochip characterizes the biological origin of the toxin. The analyzer contains housing mechanics, electro-optics for signal acquisition, motorized readout calibration accessories, hydro-pneumatics modules for water sample translocation into biochip micro laboratories, electronics for overall control and communication with the host computer. This prototype has a demonstrated sensitivity for broad classes of water-borne toxic chemicals including naladixic acid (a model genotoxic agent), botulinum and acetylcholine esterase inhibitors. This work has initiated an investigation of a novel handheld field-deployable Water Toxicity Analysis (WTA) device.
机译:新型水化学毒素传感器已成功开发并评估为工作便携式实验室原型。该传感器依赖于用4x4微实验室(μlab)腔室的大肠杆菌报告细胞和微流体通道制备的一次性塑料生物芯片,用于液体易位。将每种细菌菌株遗传修饰成生物发光的报告,该报告者应对预定类化学剂进行响应。当用含有有毒化学品的水样挑战时,传感器响应来自随时间监测的生物芯片的增加的生物发光信号。该信号由电动光电倍增管的分析仪接收并由信号处理软件解释。我们已经进行了几个分析级别:(i)来自传感器细菌的生物发光信号的变化是在水样中存在有毒化学物质的快速指示; (ii)变化的强度表明毒素浓度水平; (iii)Biochip对细菌面板的不同成员的反应的图案表征毒素的生物来源。分析仪含有外壳机械,用于信号采集的电光,电动读数校准配件,水样用于水样易位的水瓶模块,进入Biochip Micro实验室,电子设备进行整体控制和与主机通信。该原型对广泛的水传播有毒化学品具有较为敏感性,包括纳拉基酸(模型遗传毒剂),肉毒杆菌和乙酰胆碱酯酶抑制剂。这项工作已经开始调查新型手持场 - 可展开的水毒性分析(WTA)装置。

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