ElectroSens Platform with a Polyelectrolyte-Based Carbon Fiber Sensor for Point-of-Care Analysis of Zn in Blood and Urine

被引:24
作者
Nikolaev, Konstantin G. [1 ]
Kalmykov, Evgeniy V. [1 ]
Shavronskaya, Daria O. [1 ]
Nikitina, Anna A. [1 ]
Stekolshchikova, Anna A. [1 ]
Kosareva, Ekaterina A. [1 ]
Zenkin, Artemiy A. [1 ]
Pantiukhin, Igor S. [1 ]
Orlova, Olga Yu. [1 ]
Skalny, Anatoly V. [1 ]
Skorb, Ekaterina V. [1 ]
机构
[1] ITMO Univ, Infochem Sci Ctr, St Petersburg 191002, Russia
基金
俄罗斯科学基金会;
关键词
ANODIC-STRIPPING VOLTAMMETRY; WEAK POLYELECTROLYTES; AQUEOUS-SOLUTIONS; ZINC; MERCURY; LAYER; CAPSULES;
D O I
10.1021/acsomega.0c02279
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In this paper, we describe an electrochemical sensing platform-ElectroSens-for the detection of Zn based on self-assembled polyelectrolyte multilayers on the carbon fiber (CF) electrode surface. The CF-extended surface facilitates the usage of a small volume electrochemical cell (1 mL) without stirring. This approach allows making a low-cost three-electrode platform. Working electrode modification with layer-by-layer assembly of polyethyleneimine (PEI), poly(sodium 4-styrenesulfonate) (PSS), and mercury nitrate layers eliminates solution toxicity and provides stable stripping voltammetry measurements. The stable, robust, sustainable, and even reusable Ag/AgCI reference electrode consists of adsorbed 32 PEI-KCl/PSS-KCl bilayers on the CF/silver paste separated from the outer solution by a polyvinyl chloride membrane. The polyelectrolyte-based sensor interface prevents adsorption of protein molecules from biological liquids on the CF surface that leads to a sensitivity increase of up to 2.2 mu A/M for Zn2+ detection and provides a low limit of detection of 4.6 x 10(-8 )M. The linear range for Zn detection is 1 x 10(-7) to 1 x 10(-5) M. A portable potentiostat connected via wireless to a smartphone with an android-based software is also provided. The ElectroSens demonstrates reproducibility and repeatability of data for the detection of Zn in blood and urine without the digestion step.
引用
收藏
页码:18987 / 18994
页数:8
相关论文
共 42 条
[1]   Square wave anodic stripping voltammetry determination of eco-toxic metals in samples of biological and environmental importance [J].
Anastasiadou, Zefi D. ;
Jannakoudakis, Panagiotis D. ;
Girousi, Stella T. .
CENTRAL EUROPEAN JOURNAL OF CHEMISTRY, 2010, 8 (05) :999-1008
[2]   Using a chitosan nanolayer as an efficient pH buffer to protect pH-sensitive supramolecular assemblies [J].
Andreeva, D. V. ;
Kollath, A. ;
Brezhneva, N. ;
Sviridov, D. V. ;
Cafferty, B. J. ;
Moehwald, H. ;
Skorb, E. V. .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2017, 19 (35) :23843-23848
[3]   Thick-film graphite electrodes in stripping voltammetry [J].
Brainin, K ;
Henze, G ;
Stozhko, N ;
Malakhova, N ;
Faller, C .
FRESENIUS JOURNAL OF ANALYTICAL CHEMISTRY, 1999, 364 (04) :285-295
[4]   Importance of buffering nanolayer position in Layer-by-Layer assembly on titania based hybrid photoactivity [J].
Brezhneva, Nadzeya ;
Nikitina, Anna ;
Ryzhkov, Nikolay ;
Klestova, Anastasiya ;
Vinogradov, Alexandr V. ;
Skorb, Ekaterina V. .
JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY, 2019, 89 (01) :92-100
[5]   Evaluation of whole blood zinc and copper levels in children with autism spectrum disorder [J].
Craciun, Elena Cristina ;
Bjorklund, Geir ;
Tinkov, Alexey A. ;
Urbina, Mauricio A. ;
Skalny, Anatoly V. ;
Rad, Florina ;
Dronca, Eleonora .
METABOLIC BRAIN DISEASE, 2016, 31 (04) :887-890
[6]   Development of an anodic stripping voltammetric assay, using a disposable mercury-free screen-printed carbon electrode, for the determination of zinc in human sweat [J].
Crew, A. ;
Cowell, D. C. ;
Hart, J. P. .
TALANTA, 2008, 75 (05) :1221-1226
[7]   Improved anodic stripping voltammetric detection of zinc on a disposable screen-printed gold electrode [J].
da Silva, Sarah M. ;
Squissato, Andre L. ;
Rocha, Diego P. ;
Vasconcellos, Maria L. S. ;
Ferreira, Rafael de Q. ;
Richter, Eduardo M. ;
Munoz, Rodrigo A. A. .
IONICS, 2020, 26 (05) :2611-2621
[8]   Stimuli-responsive LbL capsules and nanoshells for drug delivery [J].
Delcea, Mihaela ;
Moehwald, Helmuth ;
Skirtach, Andre G. .
ADVANCED DRUG DELIVERY REVIEWS, 2011, 63 (09) :730-747
[9]   Determination of zinc in aqueous solutions by a combined no-standard electrochemical method with preliminary electrolytic separation of copper [J].
Ermakov, S. S. ;
Sheremet, A. A. ;
Moskvin, L. N. .
RUSSIAN JOURNAL OF APPLIED CHEMISTRY, 2008, 81 (03) :420-422
[10]  
Farajikhah S., 2019, ACS SENSORS, V4, P2604