利用 SERS 传感水凝胶直接检测受感染植物中的烟草花叶病毒

IF 9.1 1区 化学 Q1 CHEMISTRY, ANALYTICAL
Lyndsay N. Kissell, Huazhen Liu, Manisha Sheokand, Der Vang, Pradeep Kachroo and Pietro Strobbia*, 
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引用次数: 0

摘要

植物病原体对全球作物产量的影响是一个重大的社会问题。目前的农业诊断模式包括目测(不准确)或实验室分子检测(繁琐)。虽然近年来可在田间使用的诊断方法取得了进展,但在检测无症状感染、多重分析和田间样本处理要求等方面仍存在问题。为了克服这些问题,我们开发了表面增强拉曼散射(SERS)传感水凝胶,通过与叶片的简单接触来检测病原体。在这项工作中,我们开发了一种用于检测烟草花叶病毒(TMV)的新型无残留 SERS 传感器,并将其嵌入优化的水凝胶材料中,制成了传感水凝胶。为了测试我们的传感水凝胶在诊断方面的应用,我们展示了它们在检测烟草植物中 TMV 感染方面的应用。这项技术有可能改变目前的农业诊断模式,为病原体的无症状和多重分子鉴定提供一种可在田间部署的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Direct Detection of Tobacco Mosaic Virus in Infected Plants with SERS-Sensing Hydrogels

Direct Detection of Tobacco Mosaic Virus in Infected Plants with SERS-Sensing Hydrogels

Direct Detection of Tobacco Mosaic Virus in Infected Plants with SERS-Sensing Hydrogels

The impact of plant pathogens on global crop yields is a major societal concern. The current agricultural diagnostic paradigm involves either visual inspection (inaccurate) or laboratory molecular tests (burdensome). While field-ready diagnostic methods have advanced in recent years, issues remain with detection of presymptomatic infections, multiplexed analysis, and requirement for in-field sample processing. To overcome these issues, we developed surface-enhanced Raman scattering (SERS)-sensing hydrogels that detect pathogens through simple contact with a leaf. In this work, we developed a novel reagentless SERS sensor for the detection of tobacco mosaic virus (TMV) and embedded it in an optimized hydrogel material to produce sensing hydrogels. To test the diagnostic application of our sensing hydrogels, we demonstrate their use to detect TMV infection in tobacco plants. This technology has the potential to shift the current agricultural diagnostic paradigm by offering a field-deployable tool for presymptomatic and multiplexed molecular identification of pathogens.

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来源期刊
ACS Sensors
ACS Sensors Chemical Engineering-Bioengineering
CiteScore
14.50
自引率
3.40%
发文量
372
期刊介绍: ACS Sensors is a peer-reviewed research journal that focuses on the dissemination of new and original knowledge in the field of sensor science, particularly those that selectively sense chemical or biological species or processes. The journal covers a broad range of topics, including but not limited to biosensors, chemical sensors, gas sensors, intracellular sensors, single molecule sensors, cell chips, and microfluidic devices. It aims to publish articles that address conceptual advances in sensing technology applicable to various types of analytes or application papers that report on the use of existing sensing concepts in new ways or for new analytes.
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