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Article detail · 2022

Peroxidase-like activity of hemoglobin-based hybrid materials against different substrates and their enhanced application for H2O2 detection

Bulletin of the Chemical Society of Ethiopia

YÖKSİS OpenAlex Open access · diamond SJR Q3 JCR Q4 Citations 5 Percentile 43.6% FWCI 0.35
Year
2022
ISSN
1011-3924
Type
article

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Abstract

English (OpenAlex)

ABSTRACT. Organic-inorganic hybrid nanoflowers method with unique properties are preferred than conventional immobilization methods for the past decade. Hereemoglobin-based hybrid material (HbNFs@Cu) was synthesized under different experimental conditions (pH 5.0-9.0 and 0.01-0.50 mgmL-1 of hemoglobin) obtaining a material size of 9-10 µm. The encapsulation percentage and weight yield of HbNFs@Cu were determined as 100% and 6.7%, respectively. The peroxidase-like activities of the material against different substrates (ABTS and Guaiacol) were compared to free hemoglobin. The HbNFs@Cu hybrid structure exhibited Vmax of 3.6995 EU/mg and a Michaelis-Menten constant (KM) of 0.1357 mM/mL. The HbNFs@Cu hybrid material was then used to catalyze the oxidation of a peroxidase substrate ABTS to the pigmented product, which provided a colorimetric and spectrophotometric detection of H2O2. The linear operating range, detectable colorimetrically as H2O2 sensor, is 0.005-0.0042 mM, while the linear operating range, detectable spectrometically, is 0.003-0.0042 mM. The limits of detection of colorimetric and spectrophotometric sensors were 0.005 mM and 0.003 mM, respectively. Collectively, these results showed that HbNFs@Cu can be used as colorimetric biosensor for H2O2 in potential applications such as pharmaceutical food, biomedical, environmental, and industrial. KEY WORDS: Hydrogen peroxide, Hemoglobin, Hybrid Material, Colorimetric assay Bull. Chem. Soc. Ethiop. 2021, 35(3), 537-550. DOI: https://dx.doi.org/10.4314/bcse.v35i3.6

Topics

  • Advanced Nanomaterials in Catalysis
  • Electrochemical sensors and biosensors
  • Biosensors and Analytical Detection

Primary topic Advanced Nanomaterials in Catalysis

Authors

  1. CEVAHİR ALTINKAYNAK NEVŞEHİR HACI BEKTAŞ VELİ ÜNİVERSİTESİ
  2. MERVE TÜRK
  3. MURAT EKREMOĞLU
  4. NALAN ÖZDEMİR