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Molecular Commonality Detection Using an Artificial Enzyme Membrane for in Situ One-Stop Biosurveillance

机译:使用人工酶膜进行原位一站式生物监测的分子共性检测

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Biodetection and biosensing have been developed basedon the concept of sensitivity toward specific molecules. However, current demand may require more levelheaded or far-sighted methods, especially in the field of biological safety and security. In the fields of hygiene, public safety, and security including fighting bioterrorism, the detection of biological contaminants, e.g., microorganisms, spores, and viruses, is a constant challenge. However, there is as yet no sophisticated method of detecting such contaminants in situ without oversight. The authors focused their attention on diphosphoric acid anhydride, which is a structure common to all biological phosphoric substances. Interestingly, biological phosphoric substances are peculiar substances present in all living things and include many different substances, e.g., ATP, ADP, dNTP, pyrophosphate, and so forth, all of which have a diphosphoric acid anhydride structure. The authors took this common structure as the basis of their development of an artificial enzyme membrane with selectivity for the structure common to all biological phosphoric substances and studied the possibility of its application to in situ biosurveillance sensors. The artificial enzyme membrane-based amperometric biosensor developed by the authors can detect various biological phosphoric substances, because it has a comprehensive molecular selectivity for the structure of these biological phosphoric substances. This in situ detection method of the common diphosphoric acid anhydride structure brings a unique advantage to the fabrication of in situ biosurveillance sensors for monitoring biological contaminants, e.g., microorganism, spores, and viruses, without an oversight, even if they were transformed.
机译:基于对特定分子的敏感性的概念,已经开发了生物检测和生物传感。但是,当前的需求可能需要更多的头脑冷静或有远见的方法,尤其是在生物安全性领域。在卫生,公共安全和治安领域,包括与生物恐怖主义作斗争,检测微生物,孢子和病毒等生物污染物一直是一项挑战。但是,还没有在没有监督的情况下就地检测这种污染物的复杂方法。作者将注意力集中在二磷酸酐上,它是所有生物磷物质共有的结构。有趣的是,生物磷物质是存在于所有生物中的特殊物质,并且包括许多不同的物质,例如ATP,ADP,dNTP,焦磷酸盐等,它们均具有二磷酸酐结构。作者以此共同的结构为基础开发了对所有生物磷物质共有的结构具有选择性的人工酶膜,并研究了将其应用于原位生物监测传感器的可能性。作者开发的基于人工酶膜的电流型生物传感器可以检测各种生物磷物质,因为它对这些生物磷物质的结构具有全面的分子选择性。这种常见的二磷酸酐结构的原位检测方法为原位生物监视传感器的制造带来了独特的优势,该传感器可以监测生物污染物,例如微生物,孢子和病毒,即使被转化也无需监督。

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