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Quantitative Detection of Potassium Ions and Adenosine Triphosphate via a Nanochannel-Based Electrochemical Platform Coupled with G-Quadruplex Aptamers

机译:通过基于纳米通道的电化学平台与G四联体适体耦合定量检测钾离子和三磷酸腺苷

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The development of synthetic nanopores and nanochannels that mimick ion channels in living organisms for biosensing applications has been, and still remains, a great challenge. Although the biological applications of nanopores and nanochannels have achieved considerable development as a result of nanotechnology advancements, there are few reports of a facile way to realize those applications. Herein, a nanochannel-based electrochemical platform was developed for the quantitative detection of biorelated small molecules such as potassium ions (K~+) and adenosine triphosphate (ATP) in a facile way. For this purpose, K~+ or ATP G-quadruplex aptamers were covalently assembled onto the inner wall of porous anodic alumina (PAA) nanochannels through a Schiff reaction between -CHO groups in the aptamer and amino groups on the inner wall of the PAA nanochannels under mild reaction conditions. Conformational switching of the aptamers confined in the nanochannels occurs in the presence of the target molecules, resulting in increased steric hindrance in the nanochannels. Changes in steric hindrance in the nanochannels were monitored by the anodic current of indicator molecules transported through the nanochannels. As a result, quantitative detection of K~+ and ATP was realized with a concentration ranging from 0.005 to 1.0 mM for K~+ and 0.05 to 10.0 mM for ATP. The proposed platform displayed significant selectivity, good reproducibility, and universality. Moreover, this platform showed its potential for use in the detection of other aptamer-based analytes, which could promote its development for use in biological detection and clinical diagnosis.
机译:在生物传感应用中,模仿活生物体中离子通道的合成纳米孔和纳米通道的发展一直是而且仍然是巨大的挑战。尽管由于纳米技术的进步,纳米孔和纳米通道的生物学应用已经取得了可观的发展,但是很少有报道实现这些应用的简便方法。本文中,开发了一种基于纳米通道的电化学平台,用于以简便的方式定量检测生物相关的小分子,例如钾离子(K +)和三磷酸腺苷(ATP)。为此,通过适体中的-CHO基团和PAA纳米通道内壁上的氨基之间的席夫反应,将K〜+或ATP G-四链体适体共价组装到多孔阳极氧化铝(PAA)纳米通道的内壁上。在温和的反应条件下。限制在纳米通道中的适体的构象转换发生在靶分子的存在下,导致纳米通道中的空间位阻增加。纳米通道中的空间位阻的变化通过通过纳米通道传输的指示剂分子的阳极电流来监测。结果,定量检测K +和ATP,K +浓度为0.005至1.0 mM,ATP为0.05至10.0 mM。拟议的平台显示出显着的选择性,良好的可重复性和通用性。此外,该平台显示了其在检测其他基于适体的分析物方面的潜力,这可以促进其在生物学检测和临床诊断中的应用。

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