Assessment of Oxidative Stress by Detection of H2O2 in Rye Samples Using a CuO- and Co3O4-Nanostructure-Based Electrochemical Sensor

被引:6
|
作者
Mihailova, Irena [1 ]
Krasovska, Marina [1 ]
Sledevskis, Eriks [1 ]
Gerbreders, Vjaceslavs [1 ]
Mizers, Valdis [1 ]
Ogurcovs, Andrejs [1 ,2 ]
机构
[1] Daugavpils Univ, Inst Life Sci & Technol, Dept Technol, G Liberts Innovat Microscopy Ctr, Parades St 1a, LV-5401 Daugavpils, Latvia
[2] Univ Latvia, Inst Solid State Phys, Kengaraga St 8, LV-1063 Riga, Latvia
关键词
salt stress; oxidative stress; rye; electrochemical sensor; hydrogen peroxide; cobalt oxide nanostructures; copper oxide nanostructures; HYDROGEN-PEROXIDE; L; SYSTEM; OXYGEN; WATER;
D O I
10.3390/chemosensors11100532
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Hydrogen peroxide is essential for biological processes and normally occurs in low concentrations in living organisms. However, exposure of plants to biotic and abiotic stressors can disrupt their defense mechanisms, resulting in oxidative stress with elevated H2O2 levels. This oxidative stress can damage cell membranes, impair photosynthesis, and hinder crucial plant functions. The primary focus of this article is to investigate the effects of salt and herbicide stress factors on the growth of rye samples. For precise quantification of the released H2O2 concentration caused by these stress factors, a non-enzymatic electrochemical sensor was developed, employing nanostructured CuO and Co3O4 oxides. Nanostructured electrodes exhibit high sensitivity and selectivity towards H2O2, making them suitable for detecting H2O2 in real samples with complex compositions. Rye samples exposed to NaCl- and glyphosate-induced stress demonstrated notable concentrations of released H2O2, displaying an increase of up to 30% compared to the control sample. Moreover, optical absorption measurements revealed a substantial decrease in chlorophyll concentration (up to 35% compared to the control group) in rye samples where elevated H2O2 levels were detected through electrochemical methods. These findings provide further evidence of the harmful effects of elevated H2O2 concentrations on plant vital functions.
引用
收藏
页数:19
相关论文
共 50 条
  • [21] MWCNT Based Non-Enzymatic H2O2 Sensor: Influence of Amine Functionalization on the Electrochemical H2O2 Sensing
    Revathi, C.
    Rajavel, K.
    Saranya, M.
    Kumar, R. T. Rajendra
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2016, 163 (13) : B627 - B632
  • [22] H2O2 Electrochemical Sensor Based on Scutellaria Barbata Extract Biosynthesized of Gold Nanoparticles
    Dong, Yaohua
    Hu, Hao
    INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2016, 11 (12): : 10919 - 10927
  • [23] Electrochemical sensor based on Prussian blue nanorods and gold nanochains for the determination of H2O2
    Chen, Shihong
    Ma, Liping
    Yuan, Ruo
    Chai, Yaqin
    Xiang, Yun
    Wang, Chengyan
    EUROPEAN FOOD RESEARCH AND TECHNOLOGY, 2011, 232 (01) : 87 - 95
  • [24] Electrochemical sensor based on Prussian blue nanorods and gold nanochains for the determination of H2O2
    Shihong Chen
    Liping Ma
    Ruo Yuan
    Yaqin Chai
    Yun Xiang
    Chengyan Wang
    European Food Research and Technology, 2011, 232 : 87 - 95
  • [25] A novel H2O2 electrochemical sensor based on NiCo2S4 functionalized reduced graphene oxide
    Wang, Min
    Ma, Jingwen
    Guan, Xinglong
    Peng, Wenchao
    Fan, Xiaobin
    Zhang, Guoliang
    Zhang, Fengbao
    Li, Yang
    JOURNAL OF ALLOYS AND COMPOUNDS, 2019, 784 : 827 - 833
  • [26] A novel sensor based on P-Ru/NC for sensitive electrochemical detection of H2O2
    Yin, Hang
    Zhang, Chongchao
    Wang, Zengqiang
    Bai, Xiao
    Yang, Ziyin
    Liu, Zhe
    JOURNAL OF ALLOYS AND COMPOUNDS, 2023, 968
  • [27] Nanoporous PdCu alloy as an excellent electrochemical sensor for H2O2 and glucose detection
    Yang, Hongxiao
    Wang, Zhihong
    Li, Chencan
    Xu, Caixia
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2017, 491 : 321 - 328
  • [28] Catalytic behavior of Co3O4 in electroreduction of H2O2
    Cao, Dianxue
    Chao, Jundang
    Sun, Limei
    Wang, Guiling
    JOURNAL OF POWER SOURCES, 2008, 179 (01) : 87 - 91
  • [29] Co3O4 nanoparticles-enhanced luminol chemiluminescence and its application in H2O2 and glucose detection
    Xie, Jianxin
    Huang, Yuming
    ANALYTICAL METHODS, 2011, 3 (05) : 1149 - 1155
  • [30] Fabrication of hollow CuO/PANI hybrid nanofibers for non-enzymatic electrochemical detection of H2O2 and glucose
    Liu, Tianjiao
    Guo, Yuqi
    Zhang, Zhenfang
    Miao, Zhicong
    Zhang, Xiaoyuan
    Su, Zhiqiang
    SENSORS AND ACTUATORS B-CHEMICAL, 2019, 286 : 370 - 376