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等离子体传感器在水产养殖质量控制监测工具方面的研究进展。

Progress in Plasmonic Sensors as Monitoring Tools for Aquaculture Quality Control.

机构信息

Universidad Autónoma de Nuevo León, Facultad de Ciencias Químicas, Av. Universidad S/N Ciudad Universitaria, San Nicolás de los Garza 66455, Mexico.

Centro de Investigación en Biotecnología y Nanotecnología (CIByN), Facultad de Ciencias Químicas, Universidad Autónoma de Nuevo León. Parque de Investigación e Innovación Tecnológica, Km. 10 autopista al Aeropuerto Internacional Mariano Escobedo, Apodaca 66629, Mexico.

出版信息

Biosensors (Basel). 2023 Jan 5;13(1):90. doi: 10.3390/bios13010090.

Abstract

Aquaculture is an expanding economic sector that nourishes the world's growing population due to its nutritional significance over the years as a source of high-quality proteins. However, it has faced severe challenges due to significant cases of environmental pollution, pathogen outbreaks, and the lack of traceability that guarantees the quality assurance of its products. Such context has prompted many researchers to work on the development of novel, affordable, and reliable technologies, many based on nanophotonic sensing methodologies. These emerging technologies, such as surface plasmon resonance (SPR), localised SPR (LSPR), and fibre-optic SPR (FO-SPR) systems, overcome many of the drawbacks of conventional analytical tools in terms of portability, reagent and solvent use, and the simplicity of sample pre-treatments, which would benefit a more sustainable and profitable aquaculture. To highlight the current progress made in these technologies that would allow them to be transferred for implementation in the field, along with the lag with respect to the most cutting-edge plasmonic sensing, this review provides a variety of information on recent advances in these emerging methodologies that can be used to comprehensively monitor the various operations involving the different commercial stages of farmed aquaculture. For example, to detect environmental hazards, track fish health through biochemical indicators, and monitor disease and biosecurity of fish meat products. Furthermore, it highlights the critical issues associated with these technologies, how to integrate them into farming facilities, and the challenges and prospects of developing plasmonic-based sensors for aquaculture.

摘要

水产养殖是一个不断发展的经济领域,由于其多年来作为高质量蛋白质来源的营养价值,为养活世界不断增长的人口做出了贡献。然而,由于环境污染、病原体爆发以及缺乏可追溯性等严重问题,其产品的质量保证受到了严重挑战。这种情况促使许多研究人员致力于开发新型、经济实惠且可靠的技术,其中许多技术基于纳米光子传感方法。这些新兴技术,如表面等离子体共振(SPR)、局域 SPR(LSPR)和光纤 SPR(FO-SPR)系统,在便携性、试剂和溶剂使用以及样品预处理的简单性方面克服了传统分析工具的许多缺点,这将有利于更可持续和盈利的水产养殖。为了突出这些技术在可转移到现场实施方面所取得的当前进展,以及在最先进的等离子体传感方面的差距,本综述提供了有关这些新兴方法学的最新进展的各种信息,这些信息可用于全面监测涉及养殖水产养殖不同商业阶段的各种操作。例如,检测环境危害、通过生化指标跟踪鱼类健康、监测鱼类产品的疾病和生物安全。此外,它还强调了与这些技术相关的关键问题、如何将它们集成到养殖设施中以及开发用于水产养殖的基于等离子体的传感器的挑战和前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ac1/9856096/18504239dece/biosensors-13-00090-g001.jpg

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