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基于纳米材料的光学差分传感在生物分析中的发展。

Development of Optical Differential Sensing Based on Nanomaterials for Biological Analysis.

机构信息

Key Laboratory of Bioanalysis and Metrology for State Market Regulation, Shanghai Institute of Measurement and Testing Technology, 1500 Zhang Heng Road, Shanghai 201203, China.

出版信息

Biosensors (Basel). 2024 Mar 31;14(4):170. doi: 10.3390/bios14040170.

Abstract

The discrimination and recognition of biological targets, such as proteins, cells, and bacteria, are of utmost importance in various fields of biological research and production. These include areas like biological medicine, clinical diagnosis, and microbiology analysis. In order to efficiently and cost-effectively identify a specific target from a wide range of possibilities, researchers have developed a technique called differential sensing. Unlike traditional "lock-and-key" sensors that rely on specific interactions between receptors and analytes, differential sensing makes use of cross-reactive receptors. These sensors offer less specificity but can cross-react with a wide range of analytes to produce a large amount of data. Many pattern recognition strategies have been developed and have shown promising results in identifying complex analytes. To create advanced sensor arrays for higher analysis efficiency and larger recognizing range, various nanomaterials have been utilized as sensing probes. These nanomaterials possess distinct molecular affinities, optical/electrical properties, and biological compatibility, and are conveniently functionalized. In this review, our focus is on recently reported optical sensor arrays that utilize nanomaterials to discriminate bioanalytes, including proteins, cells, and bacteria.

摘要

生物靶标的鉴别和识别在生物研究和生产的各个领域都至关重要,包括生物医学、临床诊断和微生物分析等领域。为了从广泛的可能性中高效、经济地识别特定目标,研究人员开发了一种称为差分传感的技术。与传统的“锁钥”传感器不同,后者依赖于受体和分析物之间的特定相互作用,差分传感利用了交叉反应受体。这些传感器的特异性较低,但可以与广泛的分析物发生交叉反应,产生大量数据。已经开发了许多模式识别策略,并在识别复杂分析物方面显示出了有前途的结果。为了创建用于更高分析效率和更大识别范围的先进传感器阵列,已经利用了各种纳米材料作为传感探针。这些纳米材料具有独特的分子亲和力、光学/电学性质和生物相容性,并且方便地进行了功能化。在这篇综述中,我们重点介绍了最近报道的利用纳米材料来区分生物分析物(包括蛋白质、细胞和细菌)的光学传感器阵列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d931/11048167/ddd1b4570f04/biosensors-14-00170-sch002.jpg

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