首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Design and validation of a low cost surface plasmon resonance bioanalyzer using microprocessors and a touch-screen monitor
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Design and validation of a low cost surface plasmon resonance bioanalyzer using microprocessors and a touch-screen monitor

机译:使用微处理器和触摸屏监视器的低成本表面等离子体共振生物分析仪的设计和验证

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摘要

An economical and high-performance bioanalyzer, with no use of laptop computer, based on the use of TSPR1k23 biosensors was systematically designed, and validated experimentally for its high performance. The analyzer is composed of a micro-flow cell, a thermoelectric cooler (TEC), a clamp, a touch-screen monitor, and an electronic control unit (ECU) incorporated with photoelectric conversion device. The micro-flow cell is made of stainless steel with high thermal conductivity, and the micro-flow system is based on PID temperature-control led algorithm to keep the constant temperature (25 degrees C) of the liquid sample via thermal exchange with the clamp. With a peristaltic pump implemented by an injection loop flow system, the bioanalyzer allows the core sensor to be completely exposed to samples. The touch-screen monitor displays the normalized response signal values updated every 0.25 s, with a typical noise level less than 5 RU (response unit) within 2h. The bioanalyzer was validated using hepatitis B surface antigen (HBsAg) as an example. Anti-HBsAg monoclonal antibody is adhered to the surface of the sensor chip by a bifunctional cross-linker with the technology of self-assembly. The duration of the HBsAg measurement only lasts 5 min with a dilution factor ranging from 200 to 1200, optimized with a R-squared value 0.998. The results suggested that the bioanalyzer has higher selectivity, lower cost, expanded detection limit, and shorter measuring time as compared with the HBsAg ELISA kit, especially for low concentrations of analyte.
机译:系统地设计了一种基于TSPR1k23生物传感器的经济,高性能,不使用笔记本电脑的生物分析仪,并对其高性能进行了实验验证。该分析仪由微流通池,热电冷却器(TEC),夹具,触摸屏监视器和装有光电转换装置的电子控制单元(ECU)组成。微流通池由高导热率的不锈钢制成,微流通系统基于PID温度控制led算法,通过与夹具进行热交换来保持液体样品的恒定温度(25摄氏度) 。通过由注射回路流动系统实现的蠕动泵,生物分析仪可使核心传感器完全暴露于样品中。触摸屏监视器显示每0.25 s更新的归一化响应信号值,典型噪声水平在2h内小于5 RU(响应单位)。以乙肝表面抗原(HBsAg)为例验证了该生物分析仪。抗HBsAg单克隆抗体通过具有自组装技术的双功能交联剂粘附在传感器芯片的表面。 HBsAg测量的持续时间仅持续5分钟,稀释倍数从200到1200不等,R平方值0.998对其进行了优化。结果表明,与HBsAg ELISA试剂盒相比,该生物分析仪具有更高的选择性,更低的成本,更大的检测限和更短的测量时间,尤其是对于低浓度的分析物。

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