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面向生物医学和农业食品分析应用的即时护理 SERS 传感器:近期进展综述。

Towards a point-of-care SERS sensor for biomedical and agri-food analysis applications: a review of recent advancements.

机构信息

Laboratory of Bio-Optical Imaging, Singapore Bioimaging Consortium (SBIC), Agency for Science Technology and Research (A*STAR), Singapore.

出版信息

Nanoscale. 2021 Jan 21;13(2):553-580. doi: 10.1039/d0nr06832b.

Abstract

The growing demand for reliable and robust methodology in bio-chemical sensing calls for the continuous advancement of sensor technologies. Over the last two decades, surface-enhanced Raman spectroscopy (SERS) has emerged as one of the most promising analytical techniques for sensitive and trace analysis or detection in biomedical and agri-food applications. SERS overcomes the inherent sensitivity limitation associated with Raman spectroscopy, which provides vibrational "fingerprint" spectra of molecules that makes it unique and versatile among other spectroscopy techniques. This paper comprehensively reviews the recent advancements of SERS for biomedical, food and agricultural applications over the last 6 years, and we envision that, in the near future, some of these platforms have the potential to be translated as a point-of-care and rapid sensor for real-life end-user applications. The merits and limitations of various SERS sensor designs are analysed and discussed based on critical features such as sensitivity, specificity, usability, repeatability and reproducibility. We conclude by highlighting the opportunities and challenges in the field while stressing the technological gaps to be addressed in realizing commercially viable point-of-care SERS sensors for practical biomedical and agri-food technological applications.

摘要

随着生物化学传感对可靠和稳健方法的需求不断增长,传感器技术也在不断进步。在过去的二十年中,表面增强拉曼光谱(SERS)已成为生物医学和农业食品应用中用于灵敏痕量分析或检测的最有前途的分析技术之一。SERS 克服了拉曼光谱固有的灵敏度限制,它提供了分子的振动“指纹”光谱,这使得它在其他光谱技术中具有独特性和多功能性。本文全面回顾了过去 6 年来 SERS 在生物医学、食品和农业应用方面的最新进展,我们设想,在不久的将来,其中一些平台有可能转化为即时检测和快速传感器,用于现实生活中的最终用户应用。基于灵敏度、特异性、可用性、重复性和再现性等关键特征,分析和讨论了各种 SERS 传感器设计的优缺点。最后,我们强调了该领域的机遇和挑战,同时强调了在实现用于实际生物医学和农业食品技术应用的商业上可行的即时检测 SERS 传感器方面需要解决的技术差距。

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