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Electrochemical sensitivity, selectivity, and sensory properties of a natural polymer-supported titanium nanocomposite electrode towards lysine amino acid
Abstract
In this study, chitosan (Chit) supported titanium (Ti) nanoparticles (Ti@Chit NPs) were synthesized by chemical method. Ti@Chit NPs were calculated to be 7.275 ± 2.15 nm and 18.629 nm according to scanning electron microscopy (SEM) and atomic force microscopy (AFM) results, respectively. The synthesized NPs were modified to the electrode and a sensitivity study was carried out against lysine amino acid. It has been determined that the Ti@Chit electrode has a catalytic performance against the amino acid lysine. The limit of detection (LOD) value is estimated to average 0.0041 µM.
Keywords
Supporting Institution
SELÇUK ÜNİVERSİTESİ ILTEK
References
- [1] Ajandouz E.H., Puigserver A. Nonenzymatic Browning Reaction of Essential Amino Acids: Effect of pH on Caramelization and Maillard Reaction Kinetics, J. Agric. Food Chem. 47:5 1786–1793, 1999.
- [2] Hawkins C.L., Davies M.J. Hypochlorite-induced damage to proteins: formation of nitrogen-centred radicals from lysine residues and their role in protein fragmentation, Biochem. J., 332:3 617–625, 1998.
- [3] Kraus L.M., Kraus J. Carbamoylation of amino acids and proteins in uremia, Kidney Int., 59:78 S102–S107, 2001.
- [4] Casettari L., Vllasaliu D. Lam J.K.W. Soliman M., Illum L. Biomedical applications of amino acid-modified chitosans: A review, Biomaterials, 33:30 7565–7583, 2012.
- [5] Obst M., Steinbüchel A. Microbial Degradation of Poly(amino acid)s, Biomacromolecules, 5:4 1166–1176, 2004.
- [6] Friedman M. Applications of the Ninhydrin Reaction for Analysis of Amino Acids, Peptides, and Proteins to Agricultural and Biomedical Sciences, J. Agric. Food Chem. 52:3 385–406, 2004.
- [7] Flodin N.W. The metabolic roles, pharmacology, and toxicology of lysine., 16:1 7–21, 2013.
- [8] Hayamizu K. Oshima I. Nakano M. Comprehensive Safety Assessment of l-Lysine Supplementation from Clinical Studies: A Systematic Review, J. Nutr., 150 2561S-2569S, Oct. 2020.
Details
Primary Language
English
Subjects
Engineering
Journal Section
Research Article
Authors
Publication Date
June 30, 2023
Submission Date
March 21, 2023
Acceptance Date
June 2, 2023
Published in Issue
Year 2023 Volume: 11 Number: 1
APA
Altuner, E. E. (2023). Electrochemical sensitivity, selectivity, and sensory properties of a natural polymer-supported titanium nanocomposite electrode towards lysine amino acid. Mus Alparslan University Journal of Science, 11(1), 28-32. https://doi.org/10.18586/msufbd.1268440
AMA
1.Altuner EE. Electrochemical sensitivity, selectivity, and sensory properties of a natural polymer-supported titanium nanocomposite electrode towards lysine amino acid. Mus Alparslan University Journal of Science. 2023;11(1):28-32. doi:10.18586/msufbd.1268440
Chicago
Altuner, Elif Esra. 2023. “Electrochemical Sensitivity, Selectivity, and Sensory Properties of a Natural Polymer-Supported Titanium Nanocomposite Electrode towards Lysine Amino Acid”. Mus Alparslan University Journal of Science 11 (1): 28-32. https://doi.org/10.18586/msufbd.1268440.
EndNote
Altuner EE (June 1, 2023) Electrochemical sensitivity, selectivity, and sensory properties of a natural polymer-supported titanium nanocomposite electrode towards lysine amino acid. Mus Alparslan University Journal of Science 11 1 28–32.
IEEE
[1]E. E. Altuner, “Electrochemical sensitivity, selectivity, and sensory properties of a natural polymer-supported titanium nanocomposite electrode towards lysine amino acid”, Mus Alparslan University Journal of Science, vol. 11, no. 1, pp. 28–32, June 2023, doi: 10.18586/msufbd.1268440.
ISNAD
Altuner, Elif Esra. “Electrochemical Sensitivity, Selectivity, and Sensory Properties of a Natural Polymer-Supported Titanium Nanocomposite Electrode towards Lysine Amino Acid”. Mus Alparslan University Journal of Science 11/1 (June 1, 2023): 28-32. https://doi.org/10.18586/msufbd.1268440.
JAMA
1.Altuner EE. Electrochemical sensitivity, selectivity, and sensory properties of a natural polymer-supported titanium nanocomposite electrode towards lysine amino acid. Mus Alparslan University Journal of Science. 2023;11:28–32.
MLA
Altuner, Elif Esra. “Electrochemical Sensitivity, Selectivity, and Sensory Properties of a Natural Polymer-Supported Titanium Nanocomposite Electrode towards Lysine Amino Acid”. Mus Alparslan University Journal of Science, vol. 11, no. 1, June 2023, pp. 28-32, doi:10.18586/msufbd.1268440.
Vancouver
1.Elif Esra Altuner. Electrochemical sensitivity, selectivity, and sensory properties of a natural polymer-supported titanium nanocomposite electrode towards lysine amino acid. Mus Alparslan University Journal of Science. 2023 Jun. 1;11(1):28-32. doi:10.18586/msufbd.1268440