基于实时荧光CRISPR/Cas12a的便携式集成电路诊断系统的开发

Chayanit Thairat, P. Kijamnajsuk, S. Chotikaprakhan, C. Kuleung, J. Chen
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引用次数: 0

摘要

为了在空间受限的实验装置中实现高性能的测量,开发了一种便携式培养仪器,利用校准的光谱仪在CRISPR-Cas12a检测中实时荧光检测稻瘟病菌AvrPi9基因。该系统温度控制准确,能耗低,与设定值温度偏差低(±0.16°C),灵敏度高,10 min内检测准确。LbCas12a和荧光猝灭报告基因在37℃下培养10 min。校准后的C12666MA光谱仪采用480 nm和520 nm的led与HR4000对照,其RMS分别为0.54和1.30,漂移为6.4 nm和4.84 nm,表明荧光检测具有较高的准确性和可靠性。在LED透照器下观察荧光信号,在480 nm高强度蓝色LED光源激发下通过光谱测量进行实时分析。阳性对照、非模板对照和非靶对照检测的准确性均有报道,未发现假阳性。该仪器具有可靠的定量检测能力,检测限为3.8 ng的DNA目标,与在商业实时PCR上运行相同反应时相当,检测限为1 ng。本研究表明,CRISPR-Cas12a检测方法具有快速、高灵敏度和便捷性等优点,是分子诊断领域的重大突破,可以开发出紧凑、节能的平台,实现实时现场诊断和精确的温度控制。
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Development of Real-Time Fluorescence CRISPR/Cas12a-Based Detection as a Portable Diagnostic System Using Integrated Circuits
A solution for achieving high-performance measurements in a space-constrained experimental setup was developed as a portable incubating instrument for real-time fluorescence detection of AvrPi9 gene in rice blast fungus by using a calibrated spectrometer in CRISPR-Cas12a detection. The system demonstrates accurate temperature control with low energy consumption and low deviation of ±0.16 °C from the setpoint temperatures, with high sensitivity and accurate detection within 10 min. The CRISPR-Cas12a detection reaction was demonstrated using AvrPi9 PCR product, crRNAs, LbCas12a and fluorescence-quencher reporter incubating at 37 °C for 10 min. Calibrated C12666MA spectrometer with 480 nm and 520 nm LEDs vs HR4000 reference exhibits low RMS of 0.54 and 1.30 and drift of 6.4 nm and 4.84 nm, respectively indicating high accuracy and reliability in fluorescence detection. Fluorescence signals were observed under an LED transilluminator, while real-time analysis was conducted through spectrometric measurements upon excitation by a 480 nm high-intensity blue LED source. Accuracy of detection between positive, non-template and non-target control was reported with no incidence of false positives observed. The instrument exhibits reliable quantitative detection capabilities with a limit of detection of 3.8 ng of DNA targets that are comparable to when running the same reaction on a commercial real-time PCR, with a detection limit of 1 ng. This study demonstrates that the CRISPR-Cas12a detection method represents a significant breakthrough in molecular diagnostics due to its advantages of rapidity, high sensitivity, and convenience allowing for the development of a compact, and energy-efficient platform that can facilitate real-time on-site diagnostics with accurate temperature control.
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来源期刊
Applied Science and Engineering Progress
Applied Science and Engineering Progress Engineering-Engineering (all)
CiteScore
4.70
自引率
0.00%
发文量
56
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