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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A review: Aptamer-based analytical strategies using the nanomaterials for environmental and human monitoring of toxic heavy metals
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A review: Aptamer-based analytical strategies using the nanomaterials for environmental and human monitoring of toxic heavy metals

机译:综述:基于适体的分析策略,使用纳米材料进行毒性重金属的环境和人类监测

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摘要

Recent developments in biotechnology offer the new methods for the sensitive detection of heavy metals based on the affinity and specificity of aptamers, as nucleic acid ligands selected from random sequence pools in vitro. Heavy metals have received considerable importance as the most toxic metallic pollutants which may cause serious environmental damages. They are classified as trace elements because of their presence in trace concentrations in various environmental matrices. Thus, the precise and sensitive methods to detect heavy metals are important to ensure human and environment safety. Aptamers as the biological probes, show high binding affinity which can often be directly translated into high detection sensitivity. On the other hand, high selectivity and stability make them possible to detect a wide range of targets, especially metallic ions. This review provides current progress of aptamers for environmental and biological monitoring of heavy metals using the nanomaterials mainly in two groups: (i) aptamer based biosensors (aptasensors) and (ii) aptamer based biosorbents (aptasorbents). The introduction of nanomaterials can efficiently increase the immobilization quantity of aptamers. Furthermore, they play an important role in the orientation and assembly density controlling of aptamers for the optimized recognition ability.
机译:基于适体的亲和力和特异性,生物技术的最新发展提供了对重金属的敏感性检测的新方法,作为从体外选自随机序列池中的核酸配体。重金属受到可能导致严重环境损害的最具毒的金属污染物的重要性。它们被归类为痕量元素,因为它们存在于各种环境基质中的痕量浓度。因此,检测重金属的精确和敏感方法对于确保人类和环境安全是重要的。适体作为生物学探针,显示出高结合亲和力,其通常可以直接转化为高检测灵敏度。另一方面,高选择性和稳定性使得它们可以检测各种靶标,尤其是金属离子。本综述提供了使用纳米材料的环境和生物监测适体的采取适体的进展,其主要是两组:(i)基于适体的生物传感器(Aptasensors)和(II)基于适体的生物吸收剂(Aptasolbents)。纳米材料的引入可以有效地增加适体的固定量。此外,它们在用于优化识别能力的适体的方向和组装密度控制中发挥着重要作用。

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