Application of pre-amplification-based CRISPR-Cas nanostructured biosensors for bacterial detection.

Nanomedicine (London, England) Pub Date : 2025-04-01 Epub Date: 2025-03-07 DOI:10.1080/17435889.2025.2476384
Hehua Zhang, Li Xie, Hongmin Gao, Hongzhi Pan
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Abstract

Bacterial infections are one of the primary triggers of global disease outbreaks. Traditional detection methods, such as bacterial culture and PCR, while reliable, are limited by their time-consuming procedures and operational complexity. In recent years, the CRISPR-Cas system has demonstrated significant potential in gene editing and diagnostics due to its high specificity and precision, offering innovative solutions for bacterial detection. By integrating pre-amplification techniques, the CRISPR-Cas system has substantially enhanced detection sensitivity, particularly excelling in detecting low-concentration target bacteria. This review summarizes the principles and application examples of CRISPR-Cas-based fluorescence, electrochemical, lateral flow, and colorimetric nanostructured biosensors developed over the past three years, categorizing them according to their recognition methods (e.g. bacterial genomes, aptamers, antibodies). It systematically explores the broad application prospects of these sensors in medical diagnostics, environmental monitoring, and food safety assessment. Additionally, this review discusses future research directions and potential development prospects, providing new insights and technical support for the rapid diagnosis and treatment of bacterial infections.

基于预扩增的CRISPR-Cas纳米结构生物传感器在细菌检测中的应用
细菌感染是全球疾病暴发的主要诱因之一。传统的检测方法,如细菌培养和PCR,虽然可靠,但受其耗时和操作复杂性的限制。近年来,CRISPR-Cas系统以其高特异性和精确性在基因编辑和诊断方面显示出巨大的潜力,为细菌检测提供了创新的解决方案。通过整合预扩增技术,CRISPR-Cas系统大大提高了检测灵敏度,特别是在检测低浓度靶菌方面表现出色。本文综述了近三年来基于crispr - cas的荧光、电化学、横向流动和比色纳米结构生物传感器的原理和应用实例,并根据它们的识别方法(如细菌基因组、适体、抗体)进行了分类。系统探讨了这些传感器在医疗诊断、环境监测、食品安全评价等方面的广阔应用前景。并对今后的研究方向和潜在的发展前景进行了展望,为细菌感染的快速诊断和治疗提供新的见解和技术支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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