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用于现场检测流体中 O157:H7 的快速和超灵敏比色生物传感器。

Rapid and Ultrasensitive Colorimetric Biosensors for Onsite Detection of O157:H7 in Fluids.

机构信息

Biological and Agricultural Engineering, University of California, Davis, California 95616, United States.

Department of Food Science and Technology, University of California, Davis, California 95616, United States.

出版信息

ACS Sens. 2024 Feb 23;9(2):912-922. doi: 10.1021/acssensors.3c02339. Epub 2024 Feb 6.

Abstract

This study presents a breakthrough in the field of onsite bacterial detection, offering an innovative, rapid, and ultrasensitive colorimetric biosensor for the detection of () O157:H7, using chemically modified melamine foam (MF). Different from conventional platforms, such as 96-well plates and fiber-based membranes, the modified MF features a macroporous reticulated three-dimensional (3D) framework structure, allowing fast and free movement of large biomolecules and bacteria cells through the MF structure in every direction and ensuring good accessibility of entire active binding sites of the framework structure with the target bacteria, which significantly increased sensitive and volume-responsive detection of whole-cell bacteria. The biosensing platform requires less than 1.5 h to complete the quantitative detection with a sensitivity of 10 cfu/mL, discernible by the naked eye, and an enhanced sensitivity of 5 cfu/mL with the help of a smartphone. Following a short enrichment period of 1 h, the sensitivity was further amplified to 2 cfu/mL. The biosensor material is volume responsive, making the biosensing platform sensitivity increase as the volume of the sample increases, and is highly suitable for testing large-volume fluid samples. This novel material paves the way for the development of volume-flexible biosensing platforms for the record-fast, onsite, selective, and ultrasensitive detection of various pathogenic bacteria in real-world applications.

摘要

本研究在现场细菌检测领域取得突破,提供了一种创新的、快速的、超灵敏比色生物传感器,用于检测()O157:H7,使用化学修饰的三聚氰胺泡沫(MF)。与传统平台(如 96 孔板和纤维基膜)不同,修饰的 MF 具有大孔网状三维(3D)框架结构,允许大分子和细菌细胞在各个方向上快速自由地通过 MF 结构,并且保证了框架结构的整个活性结合位点与目标细菌的良好可达性,这显著提高了全细胞细菌的敏感和体积响应检测。该生物传感平台在 1.5 小时内完成定量检测,灵敏度为 10 cfu/mL,肉眼可见,借助智能手机灵敏度可提高到 5 cfu/mL。经过 1 小时的短富集期,灵敏度进一步提高到 2 cfu/mL。生物传感器材料对体积有响应,使生物传感平台的灵敏度随样品体积的增加而增加,非常适合测试大容量流体样品。这种新型材料为开发用于现场、选择性和超灵敏检测各种实际应用中病原体的体积灵活的生物传感平台铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be81/10897931/8983265b555d/se3c02339_0001.jpg

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