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首页> 外文期刊>South african journal of chemical engineering >DNA hybridisation sensors for product authentication and tracing: State of the art and challenges
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DNA hybridisation sensors for product authentication and tracing: State of the art and challenges

机译:用于产品鉴定和追踪的DNA杂交传感器:最新技术和挑战

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摘要

The wide use of biotechnology applications in bioprocesses such as the food and beverages industry, pharmaceuticals, and medical diagnostics has led to not only the invention of innovative products but also resulted in consumer and environmental concerns over the safety of biotechnology-derived products. Controlling and monitoring the quality and reliability of biotechnology-derived products is a challenge. Current tracking and tracing systems such as barcode labels and radio frequency identification systems track the location of products from primary manufactures and/or producers throughout globalised distribution channels. However, when it comes to product authentication and tracing, simply knowing the location of the product in the supply chain is not sufficient. DNA hybridisation sensors allows for a holistic approach into product authentication and tracing in that they enable the attribution of active ingredients in biotechnology-derived products to their source. In this article, the state-of-the-art of DNA hybridisation sensors, with a focus on the application of graphene as the backbone, for product authentication and tracing is reviewed. Candidate DNA biocompatible materials, properties and transduction schemes that enable detection of DNA are covered in the discussion. Limitations and challenges of the use of DNA biosensing technologies in real-life environmental, biomedical and industrial fields as opposed to clean-cut laboratory conditions are also enumerated. By considering experimental research versus reality, this article outlines and highlights research needed to overcome commercialisation barriers faced by DNA biosensing technologies. In addition, the content is thought-provoking to facilitate development of cutting edge research activities in the field.
机译:生物技术在诸如食品和饮料行业,制药和医学诊断等生物过程中的广泛应用不仅导致创新产品的发明,而且引起了消费者和环境方面对生物技术衍生产品安全性的担忧。控制和监视生物技术衍生产品的质量和可靠性是一个挑战。当前的跟踪和追踪系统,例如条形码标签和射频识别系统,会在全球化的分销渠道中跟踪主要制造商和/或生产商的产品位置。但是,当涉及到产品认证和跟踪时,仅了解产品在供应链中的位置是不够的。 DNA杂交传感器允许对产品进行鉴定和追踪的整体方法,因为它们可以将生物技术衍生产品中的活性成分归因于其来源。在本文中,对DNA杂交传感器的最新技术进行了综述,重点是将石墨烯作为骨干的应用,以进行产品认证和跟踪。讨论中涵盖了能够检测DNA的候选DNA生物相容性材料,特性和转导方案。还列举了在现实的环境,生物医学和工业领域中使用DNA生物传感技术的局限性和挑战,这与干净的实验室条件相反。通过考虑实验研究与现实研究,本文概述并强调了克服DNA生物传感技术所面临的商业化障碍所需的研究。此外,内容引人深思,以促进该领域前沿研究活动的发展。

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