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Portable Fluorometer for Cyanobacteria Detection

机译:便携式蓝藻荧光检测仪

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摘要

A portable system for fluorescence measurement has been developed for cyanobacteria detection. Exploiting commercially available low-cost photodiodes and a single 9 V supply, the system was able to measure two fluorescence emissions simultaneously. Output voltages resulting from the fluorescence intensity were measured by utilizing two quantum dots of QD565 and QD655. These quantum dots were employed into a NanoGene assay for mcyD gene (synthetase of toxic microcystin) detection of Microcystis aeruginosa. We investigated various operational parameters (e.g., distance, angle between laser emission and sample, and so on) for the proposed system. Measurements indicated the highest output voltage signal was obtained at a distance of 0.5 cm with the right angle (90°) between the laser source and a sample vial. Also, the mcyD gene hybridized with QD565 and QD655 was quantitatively detected by the proposed detection system, i.e., the normalized output voltage (QD655/QD565) was linearly proportional to the mcyD gene copy numbers (y = 0.41 log x + 6.6, r2 = 0.92). Finally, the quantitative data were transferred wirelessly to the readout via Bluetooth.
机译:已经开发了用于蓝藻检测的便携式荧光测量系统。利用市售的低成本光电二极管和单个9 V电源,该系统能够同时测量两个荧光发射。通过利用QD565和QD655的两个量子点来测量由荧光强度产生的输出电压。这些量子点被用于铜绿微囊藻的mcyD基因(毒性微囊藻毒素的合成酶)检测的NanoGene检测中。我们研究了拟议系统的各种操作参数(例如,距离,激光发射与样品之间的角度等)。测量表明,在激光源与样品瓶之间的直角(90°)处,距离0.5 cm处获得了最高输出电压信号。此外,通过提出的检测系统定量检测了与QD565和QD655杂交的mcyD基因,即归一化输出电压(QD655 / QD565)与mcyD基因拷贝数成线性比例(y = 0.41 log x + 6.6,r2 = 0.92)。最后,定量数据通过蓝牙无线传输到读数仪。

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