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Development of Microalgae Biosensor Chip by Incorporating Microarray Oxygen Sensor for Pesticides Sensing

机译:结合微阵列氧气传感器开发用于农药感测的微藻生物传感器芯片

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摘要

A microalgae ( ) biosensor chip for pesticide sensing has been developed by attaching the immobilized microalgae biofilm pon the microarray dye spots (size 100 μm and pitch 200 μm). The dye spots (ruthenium complex) were printed upon SO -modified glass slides using a polydimethylsiloxane (PDMS) stamp and a microcontact printer (μCP). Emitted fluorescence intensity (FI) variance due to photosynthetic activity (O production) of microalgae was monitored by an inverted fluorescent microscope and inhibition of the oxygen generation rate was calculated based on the FI responses both before and after injection of pesticide sample. The calibration curves, as the inhibition of oxygen generation rate (%) due to photosynthetic activity inhibition by the pesticides, depicted that among the 6 tested pesticides, the biosensor showed good sensitivity for 4 pesticides (diuron, simetryn, simazine, and atrazine) but was insensitive for mefenacet and pendimethalin. The detection limits were 1 ppb for diuron and 10 ppb for simetryn, simazine, and atrazine. The simple and low-cost nature of sensing of the developed biosensor sensor chip has apparently created opportunities for regular water quality monitoring, where pesticides are an important concern.
机译:通过将固定化的微藻生物膜附着在微阵列染料斑点(尺寸为100μm,间距为200μm)上,开发了一种用于农药感测的微藻生物传感器芯片。使用聚二甲基硅氧烷(PDMS)印章和微接触打印机(μCP)将染料斑点(钌络合物)印刷在经过SO改性的玻璃片上。通过倒置荧光显微镜监测由于微藻的光合作用(产生O)而产生的荧光强度(FI)变化,并根据注射农药样品前后的FI响应来计算氧气产生速率的抑制。校准曲线(由于农药对光合作用的抑制导致对氧气生成速率的抑制(%))表明,在6种被测试农药中,生物传感器对4种农药(敌草隆,西草碱,辛嗪和阿特拉津)表现出良好的敏感性,但是对甲芬沙丁和二甲戊灵不敏感。敌草隆的检出限为1 ppb,simetryn,simazine和atrazine的检出限为10 ppb。显然,对已开发的生物传感器芯片的传感具有简单且低成本的特性,这显然为常规水质监测创造了机会,而农药是一个重要的问题。

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