Xiao Wenxue, Sun Chengjie, Chen Shu, Xue Liangliang, Wei Huamao, Jia Ru, Huang Tao, Yang Wenge, Xing Jiali, Zuo Enguang, Qiao Zhaohui
Zhejiang-Malaysia Joint Research Laboratory for Agricultural Product Processing and Nutrition, College of Food and Engineering, Ningbo University, Ningbo 315800, China.
Greentown Agricultural Science Testing Technology Co., Ltd Hangzhou 310052, China.
ACS Sens. 2025 Sep 26;10(9):6542-6552. doi: 10.1021/acssensors.5c00936. Epub 2025 Sep 15.
Foodborne diseases attributed to represent a substantial public health concern, necessitating the development of rapid and sensitive detection methodologies. In this study, we constructed a dual-mode fluorescent/colorimetric aptasensor, leveraging multivalent aptamer competitive assays and catalytic hairpin assembly (CHA), and integrated it with a smartphone-based portable device to expedite the detection of . In this detection system, the tetrahedral DNA nanostructure-based multivalent aptamer competitive probe was designed to achieve primary signal amplification by recognizing target bacteria with high binding avidity and releasing a substantial amount of cDNA. The released cDNA subsequently triggers fluorescent and colorimetric signal readout through CHA-mediated secondary signal amplification, facilitating sensitive detection with self-referenced correction in both signal modes. The concentration of bacteria can be captured and analyzed using a smartphone-based portable device. Consequently, this method enables the quantitative detection of within a linear range of 10 to 10 CFU/mL, with detection limits of 28 CFU/mL for colorimetric detection and 10 CFU/mL for fluorescent detection. Additionally, the methods demonstrated high specificity in milk, egg, cod, and chicken samples, demonstrating its practical applicability. The inherent versatility of aptamers additionally permits the potential detection of other bacterial pathogens, rendering this platform a valuable tool for food safety monitoring and clinical diagnostics.
由……引起的食源性疾病是一个重大的公共卫生问题,因此需要开发快速且灵敏的检测方法。在本研究中,我们构建了一种双模式荧光/比色适体传感器,利用多价适体竞争分析和催化发夹组装(CHA),并将其与基于智能手机的便携式设备集成,以加快对……的检测。在该检测系统中,基于四面体DNA纳米结构的多价适体竞争探针被设计用于通过以高结合亲和力识别目标细菌并释放大量cDNA来实现初级信号放大。释放的cDNA随后通过CHA介导的次级信号放大触发荧光和比色信号读出,便于在两种信号模式下进行具有自参考校正的灵敏检测。细菌浓度可以使用基于智能手机的便携式设备进行捕获和分析。因此,该方法能够在10至10 CFU/mL的线性范围内对……进行定量检测,比色检测的检测限为28 CFU/mL,荧光检测的检测限为10 CFU/mL。此外,该方法在牛奶、鸡蛋、鳕鱼和鸡肉样品中表现出高特异性,证明了其实际适用性。适体固有的多功能性还允许潜在地检测其他细菌病原体,使该平台成为食品安全监测和临床诊断的有价值工具。