Education Department of Guangxi Zhuang Autonomous Region, Laboratory of Optic-electric Chemo/Biosensing and Molecular Recognition, Guangxi Collaborative Innovation Center for Chemistry and Engineering of Forest Products, Guangxi Key Laboratory of Chemistry and Engineering of Forest Products, Key Laboratory of Chemistry and Engineering of Forest Products, State Ethnic Affairs Commission, School of Chemistry and Chemical Engineering, Guangxi Minzu University, Nanning, 530006, China.
Guangxi Academy of Agricultural Sciences, Nanning, 530007, China.
Biosens Bioelectron. 2025 Jan 1;267:116874. doi: 10.1016/j.bios.2024.116874. Epub 2024 Oct 23.
Sucrose, a common sugar primarily derived from sugarcane, is a crucial national strategic resource. However, its yield is significantly affected by various serious diseases, with pokkah boeng disease being one of the most damaging. Therefore, developing a sensitive method for the accurate detection of the pokkah boeng disease pathogen is crucial for ensuring the safety of sugar. This work presents a portable dual-modal detection device, assisted by a smartphone, which is based on MoS@GDY, MnO@Au nanomenzyme, cross-N DNA framework and Exo III exonuclease-assisted CHA signal amplification technology. The cross-N DNA framework provides many binding sites and is not restricted by AuNPs scattering positions, enhancing the signal output strength of the sensor. Additionally, the detection system incorporates a high-power-density capacitor to further amplify the electrochemical detection signal, increasing sensitivity by 9.1 times. Moreover, the use of electrochemical and colorimetric dual-mode detection effectively avoids mutual interference, reducing the likelihood of false positives from a single signal. Under optimized conditions, the proposed method has a linear range of 0.0001-10,000 pM, and with a detection limit of 6.1 aM (S/N=3). This high-sensitivity, high-reliability portable sensing method shows significant potential for the early detection and real-time on-site monitoring of the pokkah boeng disease pathogen.
蔗糖,一种主要来源于甘蔗的常见糖,是一种重要的国家战略资源。然而,它的产量受到各种严重疾病的显著影响,其中包括菠萝灰斑病。因此,开发一种灵敏的方法来准确检测菠萝灰斑病病原体对于确保糖的安全至关重要。本工作提出了一种基于 MoS@GDY、MnO@Au 纳米酶、交叉 N 型 DNA 框架和 Exo III 外切酶辅助 CHA 信号放大技术的便携式双模态检测装置,该装置由智能手机辅助。交叉 N 型 DNA 框架提供了许多结合位点,不受 AuNPs 散射位置的限制,增强了传感器的信号输出强度。此外,检测系统采用高功率密度电容器进一步放大电化学检测信号,使灵敏度提高了 9.1 倍。此外,电化学和比色双模态检测的结合有效地避免了相互干扰,降低了单一信号产生假阳性的可能性。在优化条件下,该方法的线性范围为 0.0001-10,000 pM,检测限为 6.1 aM(S/N=3)。这种高灵敏度、高可靠性的便携式传感方法在菠萝灰斑病病原体的早期检测和实时现场监测方面具有显著的应用潜力。