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Recent Advances and Achievements in Nanomaterial-Based and Structure Switchable Aptasensing Platforms for Ochratoxin A Detection

机译:基于纳米材料和结构可转换的Achratoxin A检测的传感平台的最新进展和成就

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摘要

Aptamer-based bioreceptors that can easily adopt their surroundings have captured the attention of scientists from a wide spectrum of domains in designing highly sensitive, selective and structure switchable sensing assays. Through elaborate design and chemical functionalization, numerous aptamer-based assays have been developed that can switch their conformation upon incubation with target analyte, resulting in an enhanced output signal. To further lower the detection limits to picomolar levels, nanomaterials have attracted great interest in the design of aptamer-based sensing platforms. Associated to their unique properties, nanomaterials offer great promise for numerous aptasensing applications. This review will discuss current research activities in the aptasensing with typical example of detection of ochratoxin A (OTA). OTA, a secondary fungal metabolite, contaminates a variety of food commodities, and has several toxicological effects such as nephrotoxic, hepatotoxic, neurotoxic, teratogenic and immunotoxic activities. The review will introduce advances made in the methods of integrating nanomaterials in aptasensing, and will discuss current conformational switchable design strategies in aptasensor fabrication methodologies.
机译:可以轻松适应周围环境的基于适体的生物受体在设计高度灵敏,选择性和结构可切换的传感测定法时引起了广泛领域科学家的关注。通过精心设计和化学功能化,已开发出许多基于适体的测定法,可在与目标分析物孵育后切换其构象,从而增强输出信号。为了将检测极限进一步降低到皮摩尔级,纳米材料对基于适体的传感平台的设计引起了极大的兴趣。纳米材料与其独特的性能相关,为众多贴切应用提供了广阔的前景。本文将就will曲毒素A(OTA)检测的典型实例,讨论适体性方面的当前研究活动。 OTA是一种次要的真菌代谢产物,会污染多种食品,并具有多种毒理作用,例如肾毒性,肝毒性,神经毒性,致畸性和免疫毒性。这篇综述将介绍在适体化中集成纳米材料的方法所取得的进展,并将讨论适体传感器制造方法中当前的构象可转换设计策略。

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