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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Selection of a DNA aptamer for cadmium detection based on cationic polymer mediated aggregation of gold nanoparticles?
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Selection of a DNA aptamer for cadmium detection based on cationic polymer mediated aggregation of gold nanoparticles?

机译:基于阳离子聚合物介导的金纳米粒子聚集,选择用于镉检测的DNA适体吗?

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The demand for selection of aptamers against various small chemical molecules has substantially increased in recent years. To incubate and separate target-specific aptamers, the conventional SELEX procedures generally need to immobilize target molecules on a matrix, which may be impotent to screen aptamers toward small molecules without enough sites for immobilization. Herein we chose Cd(II) as a model of a small molecule with less sites, and proposed a novel SELEX strategy of immobilizing ssDNA libraries rather than target molecules on a matrix, for selection of aptamers with high affinity to Cd(II). After eleven rounds of positive and negative selection, twelve T and G-rich of nonrepeating ssDNA sequences were identified, of which the Cd-4 aptamer displayed the highest binding affinity to Cd(II). The secondary structures of these sequences revealed that a stem-loop structure folded by the domain of their 30-random sequence is critical for aptamers to bind targets. Then the interaction between the selected Cd-4 aptamer and Cd(II) was confirmed by CD analysis, and the binding specificity toward other competitive metal ions was also investigated. The dissociation constant (K_d) of Cd-4 aptamer was determined as 34.5 nM for Cd(II). Moreover, the Cd-4 aptamer was considered a recognition element for the colorimetric detection of Cd(II) based on the aggregation of AuNPs by cationic polymer. Through spectroscopic quantitative analysis, Cd(II) in aqueous solution can be detected as low as 4.6 nM. The selected Cd-4 aptamer will offer a new substitute for the detection of Cd(II) or other applications like recovery of cadmium from polluted samples.
机译:近年来,针对各种小化学分子选择适体的需求已大大增加。为了孵育和分离靶标特异性适体,常规的SELEX程序通常需要将靶分子固定在基质上,这可能无法在没有足够固定位点的情况下向小分子筛选适体。在此,我们选择Cd(II)作为具有较少位点的小分子的模型,并提出了一种新颖的SELEX策略,该方法将ssDNA文库而不是靶分子固定在基质上,以选择对Cd(II)具有高亲和力的适体。经过十一轮正向和负向选择后,鉴定出十二个富含T和G的非重复ssDNA序列,其中Cd-4适体显示出与Cd(II)的最高结合亲和力。这些序列的二级结构表明,被其30个随机序列的结构域折叠的茎环结构对于适体结合靶标至关重要。然后通过CD分析证实了选定的Cd-4适体与Cd(II)之间的相互作用,并且还研究了其对其他竞争性金属离子的结合特异性。 Cd-4适体的解离常数(K_d)被确定为Cd(II)为34.5 nM。此外,基于阳离子聚合物对AuNPs的聚集,Cd-4适体被认为是比色检测Cd(II)的识别元素。通过光谱定量分析,可以检测到水溶液中的Cd(II)低至4.6 nM。所选的Cd-4适体将为检测Cd(II)或其他应用(如从污染样品中回收镉)提供新的替代物。

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