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Optical biosensor chip technology for biochemical oxygen demand monitoring in environmental samples

机译:光学生物传感器芯片技术,用于监测环境样品中的生化需氧量

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An optical biosensor chip technology has been studied to perform as an effect free device for rapid biochemical oxygen demand (BOD) monitoring in environmental samples. A biofilm was embedded onto a polyethylene-polypropylene (PE-PP) film shielded oxygen sensing film for developing the biosensor chip. The oxygen sensing film was prepared by coating the ruthenium complex dye solution onto the SO group embedded glass slide and the biofilm was prepared by immobilizing baker's yeasts (Saccharomyces cerevisiae) with polyvinyl alcohol-styrylpyridinium (PVA-SbQ) matrix. Sensor sample injection cavity was made by using silicone rubber (SR) sheet upon the embedded biofilm. An inverted microscope was used to measure the biosensor responses as the changing of fluorescence intensity (FI) due to microbial respiration in presence and absence of BOD standard solutions, glucose and glutamic acid solution (GGA) with time profiles. Taking the maximum response at 3 min of the each BOD standard solution, calibration curves were drawn as I (intensity at 3 min time) divided by I (intensity at 0 min time) against GGA concentrations. An equal performance was obtained by the biosensor either the GGA in phosphate buffer solution (PBS) or in environmental samples such as river water (RW). A linear relationship was achieved in low GGA concentrations (up to 20 mg/L GGA having BOD 14.6 mg/L, R=0.99). The PE-PP shielding approach has completely eliminated the effects of heterogeneous components of environmental samples onto the sensor performances.
机译:光学生物传感器芯片技术已被研究为在环境样品中快速监测生化需氧量(BOD)的无影响设备。将生物膜嵌入到聚乙烯-聚丙烯(PE-PP)膜屏蔽的氧传感膜上,以开发生物传感器芯片。通过将钌络合物染料溶液涂覆到嵌入SO基的载玻片上来制备氧传感膜,并通过用聚乙烯醇-苯乙烯基吡啶鎓(PVA-SbQ)基质固定面包酵母(Saccharomyces cerevisiae)来制备生物膜。传感器样品注入腔是通过在嵌入式生物膜上使用硅橡胶(SR)片制成的。在存在和不存在BOD标准溶液,葡萄糖和谷氨酸溶液(GGA)的情况下,倒置显微镜用于测量由于微生物呼吸引起的荧光强度(FI)随时间变化的生物传感器响应。取每种BOD标准溶液在3分钟时的最大响应,绘制相对于GGA浓度的I(3分钟时的强度)除以I(0分钟时的强度)的校准曲线。生物传感器在磷酸盐缓冲溶液(PBS)或环境样品(例如河水(RW))中获得的性能均与GGA相当。在低GGA浓度(最高BOD为14.6 mg / L的GGA达到20 mg / L,R = 0.99)中实现了线性关系。 PE-PP屏蔽方法已完全消除了环境样品中异质成分对传感器性能的影响。

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