通过法拉第和非法拉第电化学阻抗光谱法选择性检测α-突触核蛋白淀粉样纤维。

IF 4.8 2区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Bioelectrochemistry Pub Date : 2024-08-30 DOI:10.1016/j.bioelechem.2024.108800
Hussaini Adam , Subash C.B. Gopinath , Hemavathi Krishnan , Tijjani Adam , Makram A. Fakhri , Evan T. Salim , A. Shamsher , Sreeramanan Subramaniam , Yeng Chen
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引用次数: 0

摘要

本研究利用法拉第和非法拉第电化学阻抗光谱法检测金穿插四电极(AuIDTE)上的α-突触核蛋白淀粉样纤维,为临床使用电化学反应提供有价值的见解。AuIDE 是购买的,用氧化锌修饰以增加疏水性。采用六氰基铁酸酯和羰基二咪唑进行了功能化。法拉第电化学阻抗光谱已在临床诊断和生物医学研究中得到广泛应用,为电化学生物传感器的性能和稳定性提供了信息。这种认识有助于开发灵敏度更高、选择性更强和更可靠的生物传感平台,用于检测生物标记物、蛋白质和核酸等临床相关分析物。非法拉第电化学阻抗光谱法测量电极-电解质界面的界面电容,无需氧化还原活性物种,简化了实验设置。它对临床具有实际意义,例如通过跟踪界面电容的变化来实时检测和监测生物分子和生物标记物。法拉第模式下正常α突触核蛋白的检测限(LOD)为 2.39-fM,聚集α突触核蛋白的检测限为 1.82-fM。非远缘检测正常α突触核蛋白的 LOD 为 2.22-fM,非远缘检测聚集α突触核蛋白的 LOD 为 2.40-fM。所提出的基于 EIS 的 AuIDTEs 传感器可检测α-突触核蛋白淀粉样纤维,而且灵敏度很高。
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Selective detection of alpha synuclein amyloid fibrils by faradaic and non-faradaic electrochemical impedance spectroscopic approaches

This study utilized faradaic and non-faradaic electrochemical impedance spectroscopy to detect alpha synuclein amyloid fibrils on gold interdigitated tetraelectrodes (AuIDTE), providing valuable insights into electrochemical reactions for clinical use. AuIDE was purchased, modified with zinc oxide for increased hydrophobicity. Functionalization was conducted with hexacyanidoferrate and carbonyldiimidazole. Faradaic electrochemical impedance spectroscopy has been extensively explored in clinical diagnostics and biomedical research, providing information on the performance and stability of electrochemical biosensors. This understanding can help develop more sensitive, selective, and reliable biosensing platforms for the detection of clinically relevant analytes like biomarkers, proteins, and nucleic acids. Non-faradaic electrochemical impedance spectroscopy measures the interfacial capacitance at the electrode–electrolyte interface, eliminating the need for redox-active species and simplifying experimental setups. It has practical implications in clinical settings, like real-time detection and monitoring of biomolecules and biomarkers by tracking changes in interfacial capacitance. The limit of detection (LOD) for normal alpha synuclein in faradaic mode is 2.39-fM, The LOD for aggregated alpha synuclein detection is 1.82-fM. The LOD for non-faradaic detection of normal alpha synuclein is 2.22-fM, and the LOD for nonfaradaic detection of aggregated alpha synuclein is 2.40-fM. The proposed EIS-based AuIDTEs sensor detects alpha synuclein amyloid fibrils and it is highly sensitive.

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来源期刊
Bioelectrochemistry
Bioelectrochemistry 生物-电化学
CiteScore
9.10
自引率
6.00%
发文量
238
审稿时长
38 days
期刊介绍: An International Journal Devoted to Electrochemical Aspects of Biology and Biological Aspects of Electrochemistry Bioelectrochemistry is an international journal devoted to electrochemical principles in biology and biological aspects of electrochemistry. It publishes experimental and theoretical papers dealing with the electrochemical aspects of: • Electrified interfaces (electric double layers, adsorption, electron transfer, protein electrochemistry, basic principles of biosensors, biosensor interfaces and bio-nanosensor design and construction. • Electric and magnetic field effects (field-dependent processes, field interactions with molecules, intramolecular field effects, sensory systems for electric and magnetic fields, molecular and cellular mechanisms) • Bioenergetics and signal transduction (energy conversion, photosynthetic and visual membranes) • Biomembranes and model membranes (thermodynamics and mechanics, membrane transport, electroporation, fusion and insertion) • Electrochemical applications in medicine and biotechnology (drug delivery and gene transfer to cells and tissues, iontophoresis, skin electroporation, injury and repair). • Organization and use of arrays in-vitro and in-vivo, including as part of feedback control. • Electrochemical interrogation of biofilms as generated by microorganisms and tissue reaction associated with medical implants.
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