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用于胆固醇灵敏非酶电化学监测的表面工程垂直排列氧化锌纳米棒。

Surface-engineered vertically-aligned ZnO nanorod for sensitive non-enzymatic electrochemical monitoring of cholesterol.

作者信息

Ahmad Rafiq, Bhat Kiesar Sideeq, Nagal Vandana, Nakate Umesh T, Ahmad Akil, Alshammari Mohammed B, Alam Shamshad, Lee Byeong-Il

机构信息

'New-Senior' Oriented Smart Health Care Education Center, Pukyong National University, Busan, 48513, Republic of Korea.

Department of Bioresources, University of Kashmir, Hazratbal, Srinagar, 190006, India.

出版信息

Heliyon. 2024 Sep 11;10(18):e37847. doi: 10.1016/j.heliyon.2024.e37847. eCollection 2024 Sep 30.

Abstract

Developing highly sensitive and selective non-enzymatic electrochemical biosensors for disease biomarker detection has become challenging in healthcare applications. However, advances in material science are opening new avenues for creating more dependable biosensing technologies. In this context, the present work introduces a novel approach by engineering a hybrid structure of zinc oxide nanorod (ZnO NR) modified with iron oxide nanoparticle (FeO NP) on an FTO electrode. This FeO NP-ZnO NR hybrid material functions as a nanozyme, facilitating the catalysis of cholesterol and enabling the direct transfer of electrons to the fluorine-doped tin oxide (FTO) electrode, limiting the need for costly and traditional enzymes in the detection process. This innovative non-enzymatic cholesterol biosensor showcases remarkable sensitivity, registering at 642.8 μA/mMcm within a linear response range of up to 9.0 mM. It also exhibits a low detection limit (LOD) of ∼12.4 μM, ensuring its capability to detect minimal concentrations of cholesterol accurately. Moreover, the developed biosensor displays exceptional selectivity by effectively distinguishing cholesterol molecules from other interfering biological species, while exhibiting outstanding stability and reproducibility. Our findings indicate that the FeO NP-ZnO NR hybrid nanostructure on the FTO electrode holds promise for enhancing biosensor stability. Furthermore, the present device fabrication platform offers versatility, as it can be adapted with various enzymes or modified with different metal oxides, potentially broadening its applicability in a wide range of biomarkers detection.

摘要

开发用于疾病生物标志物检测的高灵敏度和高选择性非酶电化学生物传感器在医疗保健应用中已成为一项具有挑战性的任务。然而,材料科学的进步为创造更可靠的生物传感技术开辟了新途径。在此背景下,本工作引入了一种新方法,即在FTO电极上构建一种由氧化铁纳米颗粒(FeO NP)修饰的氧化锌纳米棒(ZnO NR)的混合结构。这种FeO NP-ZnO NR混合材料作为一种纳米酶,促进胆固醇的催化作用,并使电子直接转移到氟掺杂氧化锡(FTO)电极,从而减少了检测过程中对昂贵的传统酶的需求。这种创新的非酶胆固醇生物传感器表现出显著的灵敏度,在高达9.0 mM的线性响应范围内为642.8 μA/mMcm。它还具有约12.4 μM的低检测限(LOD),确保其能够准确检测极低浓度的胆固醇。此外,所开发的生物传感器通过有效区分胆固醇分子与其他干扰生物物种,表现出卓越的选择性,同时具有出色的稳定性和重现性。我们的研究结果表明,FTO电极上的FeO NP-ZnO NR混合纳米结构有望提高生物传感器的稳定性。此外,目前的器件制造平台具有通用性,因为它可以与各种酶适配或用不同的金属氧化物修饰,有可能拓宽其在广泛的生物标志物检测中的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84d5/11417317/f2742baf59e0/ga1.jpg

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