CRISPR/Cas12a-TriggeredVisible-Light-Driven PhotoelectrochemicalAssay with Single-Nucleotide Resolution for Drug-Resistant Foodborne Salmonella Detection

肠沙门氏菌 沙门氏菌 污染 检出限 高分辨率 微生物学 食品安全 劈理(地质) 食品污染物 生物 致病菌 食品科学 食品微生物学 食源性病原体 食品 分辨率(逻辑) 化学 食物中毒 环境科学 计算生物学
作者
Jun Li (6494),Jiaen Song (19704581),Yanbai Chen (19704584),Zhifeng Zhao (4859473),Song Wang (144220),Yi Deng (421971),Shuangquan Lai (13921697),Hao Yang (328526)
出处
期刊: [Figshare (United Kingdom)]
标识
DOI:10.1021/acs.jafc.4c05993.s001
摘要

The prevalence of foodborne pathogenic bacteria, especially drug-resistant strains, such as Salmonella enterica, poses serious threats to public health, highlighting the requirement for the development of rapid and precise detection methods. Herein, a CRISPR/Cas12a-triggered visible-light-driven photoelectrochemical (PEC) assay (CasPEC) was developed using a SiO2-quenched BiVO4/MoS2 p/n-type heterojunction as the photoactive material. The CRISPR/Cas12a recognition endowed the CasPEC assay with high specificity capable of resolving single-nucleotide polymorphisms (SNPs) and identifying SNP-involved drug-resistant bacteria. SiO2 was linked to the surface of the BiVO4/MoS2 heterojunction by single-stranded DNA (ssDNA), which would be cleaved by target-activated CRISPR/Cas12a. This cleavage of ssDNA resulted in the detachment of SiO2, thereby achieving a “signal-on” PEC output. Leveraging the multiple-turnover CRISPR cleavage and the outstanding photoactive performance of PEC signaling, the CasPEC assay for S. enterica showed a detection limit of 103 colony-forming units (CFU)/mL and the ability to detect as few as 0.01% drug-resistant strains. The CasPEC assay can accurately sense the S. enterica contamination in complex food matrices, including beef and milk. These findings demonstrated the great potential of the CasPEC assay for detecting pathogenic bacterial contamination in food, particularly concerning food safety related to SNP-involved drug-resistant bacteria.
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