Pysanka-Inspired Electrode Modification with Aptamer Encapsulation in ZIF-8 for Urine Creatinine Electrochemical Biosensing

IF 3.7 3区 工程技术 Q2 CHEMISTRY, ANALYTICAL
Antra Ganguly, Anirban Paul, Shalini Prasad
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引用次数: 0

Abstract

Drawing inspiration from the several thousand beautiful Pysanky egg art of Ukraine, we have developed a novel material, Aptamer–Gold Nanoparticles (AuNPs)@ZIF-8, that can be used for building sensitive and highly stable POC biosensors for longitudinal health mapping. Here, we demonstrate a sensitive and specific novel electrochemical biosensor, made of a novel synthesized in situ encapsulated aptamer-AuNPs@ZIF-8 composite, for monitoring levels of creatinine (0.1–1000 μg/mL). In this work, we have reported the synthetic protocol for the first-of-a-kind in situ encapsulation of aptamer and AuNPs together in a ZIF-8 matrix, and explored the characteristic properties of this novel material composite using standard analytical techniques and its application for biosensor application. The as-synthesized material, duly characterized using various physicochemical analytical methods, portrays the characteristics of the unique encapsulation strategy to develop the first-of-a-kind aptamer and AuNP encapsulation. Non-faradaic Electrochemical Impedance Spectroscopy (EIS) and Chronoamperometry were used to characterize the interfacial electrochemical properties. The biosensor performance was first validated using artificial urine in a controlled buffer medium. The stability and robustness were tested using a real human urine medium without filtration or sample treatment. Being versatile, this Ukrainian-art-inspired biosensor can potentially move the needle towards developing the next generation of sample-in-result-out robust POC diagnostics.
pysanka启发电极修饰与ZIF-8适体包封用于尿肌酐电化学生物传感
从乌克兰数千个美丽的Pysanky蛋艺术中汲取灵感,我们开发了一种新型材料,Aptamer-Gold Nanoparticles (AuNPs)@ZIF-8,可用于构建敏感且高度稳定的POC生物传感器,用于纵向健康绘图。在这里,我们展示了一种敏感和特异的新型电化学生物传感器,由一种新型合成的原位封装aptamer-AuNPs@ZIF-8复合材料制成,用于监测肌酐水平(0.1-1000 μg/mL)。在这项工作中,我们报道了在ZIF-8基质中首次将适配体和AuNPs一起原位封装的合成方案,并使用标准分析技术探索了这种新型材料复合材料的特征特性及其在生物传感器中的应用。利用各种物理化学分析方法对合成材料进行了适当的表征,描绘了独特的封装策略的特征,以开发首个同类适配体和AuNP封装。采用非法拉第电化学阻抗谱(EIS)和计时电流法对界面的电化学性质进行了表征。生物传感器的性能首先在受控缓冲介质中使用人工尿液进行验证。稳定性和稳健性测试使用真实的人尿培养基,没有过滤或样品处理。这种受乌克兰艺术启发的生物传感器用途广泛,有可能为开发下一代样本-结果-健壮的POC诊断提供帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chemosensors
Chemosensors Chemistry-Analytical Chemistry
CiteScore
5.00
自引率
9.50%
发文量
450
审稿时长
11 weeks
期刊介绍: Chemosensors (ISSN 2227-9040; CODEN: CHEMO9) is an international, scientific, open access journal on the science and technology of chemical sensors published quarterly online by MDPI.
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