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Functional nucleic acid-based sensors for heavy metal ion assays

机译:基于核酸的功能性传感器,用于重金属离子测定

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Heavy metal contaminants such as lead ions (Pb2+), mercury ions (Hg2+) and silver ions (Ag+) can cause significant harm to humans and generate enduring bioaccumulation in ecological systems. Even though a variety of methods have been developed for Pb2+, Hg2+ and Ag+ assays, most of them are usually laborious and time-consuming with poor sensitivity. Due to their unique advantages of excellent catalytic properties and high affinity for heavy metal ions, functional nucleic acids such as DNAzymes and aptamers show great promise in the development of novel sensors for heavy metal ion assays. In this review, we summarize the development of functional nucleic acid-based sensors for the detection of Pb2+, Hg2+ and Ag+, and especially focus on two categories including the direct assay and the amplification-based assay. We highlight the emerging trends in the development of sensitive and selective sensors for heavy metal ion assays as well.
机译:铅离子(Pb2 +),汞离子(Hg2 +)和银离子(Ag +)等重金属污染物可能对人体造成重大伤害,并在生态系统中产生持久的生物蓄积性。尽管已经开发出了多种方法来检测Pb2 +,Hg2 +和Ag +,但大多数方法通常都很费力且费时,而且灵敏度较低。由于它们具有优异的催化性能和对重金属离子的高亲和力的独特优势,功能性核酸(如DNA酶和适体)在开发用于重金属离子测定的新型传感器方面显示出巨大的希望。在这篇综述中,我们总结了用于检测Pb2 +,Hg2 +和Ag +的基于功能核酸的传感器的开发,特别是专注于两类,包括直接测定和基于扩增的测定。我们重点介绍了用于重金属离子测定的灵敏和选择性传感器的发展趋势。

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