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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Electrochemical sensor for multiplex screening of genetically modified DNA: Identification of biotech crops by logic-based biomolecular analysis
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Electrochemical sensor for multiplex screening of genetically modified DNA: Identification of biotech crops by logic-based biomolecular analysis

机译:用于多重筛选转基因DNA的电化学传感器:通过基于逻辑的生物分子分析鉴定转基因作物

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摘要

Genetically modified (GM) technique, one of the modern biomolecular engineering technologies, has been deemed as profitable strategy to fight against global starvation. Yet rapid and reliable analytical method is deficient to evaluate the quality and potential risk of such resulting GM products. We herein present a biomolecular analytical system constructed with distinct biochemical activities to expedite the computational detection of genetically modified organisms (GMOs). The computational mechanism provides an alternative to the complex procedures commonly involved in the screening of GMOs. Given that the bioanalytical system is capable of processing promoter, coding and species genes, affirmative interpretations succeed to identify specified GM event in terms of both electrochemical and optical fashions. The biomolecular computational assay exhibits detection capability of genetically modified DNA below sub-nanomolar level and is found interference-free by abundant coexistence of non-GM DNA. This bioanalytical system, furthermore, sophisticates in array fashion operating multiplex screening against variable GM events. Such a biomolecular computational assay and biosensor holds great promise for rapid, cost-effective, and high-fidelity screening of GMO.
机译:转基因(GM)技术是现代生物分子工程技术之一,被认为是对抗全球饥饿的有利策略。然而,快速而可靠的分析方法不足以评估此类转基因产品的质量和潜在风险。我们在本文中提出了一种具有独特的生化活性构建的生物分子分析系统,以加快对转基因生物(GMO)的计算检测。该计算机制为筛选转基因生物通常涉及的复杂程序提供了一种替代方法。鉴于生物分析系统能够处理启动子,编码和物种基因,肯定的解释成功地从电化学和光学方式确定了特定的GM事件。生物分子计算测定法显示了低于纳摩尔水平的基因修饰的DNA的检测能力,并且发现非转基因DNA的大量共存可实现无干扰。此外,该生物分析系统以阵列方式对可变的GM事件进行了复杂的多重筛选。这种生物分子计算测定法和生物传感器对于快速,经济高效和高保真地筛选GMO有着广阔的前景。

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