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Electroanalysis of Naringin at Electroactivated Pencil Graphite Electrode for the Assessment of Polyphenolics with Intermediate Antioxidant Power

A simple and rapid differential pulse voltammetric (DPV) method using a single-use electroactivated pencil graphite electrode (PGE*) is proposed for the rapid screening of the total content of polyphenolics (TCP) with intermediate antioxidant power (AOP) in grapefruit peel and fresh juice. The resul...

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Autores principales: David, Iulia Gabriela, Litescu, Simona Carmen, Moraru, Raluca, Albu, Camelia, Buleandra, Mihaela, Popa, Dana Elena, Riga, Sorin, Ciobanu, Adela Magdalena, Noor, Hassan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9774430/
https://www.ncbi.nlm.nih.gov/pubmed/36552515
http://dx.doi.org/10.3390/antiox11122306
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author David, Iulia Gabriela
Litescu, Simona Carmen
Moraru, Raluca
Albu, Camelia
Buleandra, Mihaela
Popa, Dana Elena
Riga, Sorin
Ciobanu, Adela Magdalena
Noor, Hassan
author_facet David, Iulia Gabriela
Litescu, Simona Carmen
Moraru, Raluca
Albu, Camelia
Buleandra, Mihaela
Popa, Dana Elena
Riga, Sorin
Ciobanu, Adela Magdalena
Noor, Hassan
author_sort David, Iulia Gabriela
collection PubMed
description A simple and rapid differential pulse voltammetric (DPV) method using a single-use electroactivated pencil graphite electrode (PGE*) is proposed for the rapid screening of the total content of polyphenolics (TCP) with intermediate antioxidant power (AOP) in grapefruit peel and fresh juice. The results were compared and correlated with those provided by the HPLC-DAD-MS method. NG voltammetric behavior at PGE* was studied by cyclic voltammetry and an oxidation mechanism was suggested. The experimental conditions (type of PGE, electroactivation procedure, pH, nature and concentration of supporting electrolyte) for NG DPV determination were optimized. The NG peak current varied linearly with the concentration in the ranges 1.40 × 10(−6)–2.00 × 10(−5) and 2.00 × 10(−5)–1.40 × 10(−4) mol/L NG and a limit of detection (LoD) of 6.02 × 10(−7) mol/L NG was attained. The method repeatability expressed as relative standard deviation was 7.62% for the concentration level of 2.00 × 10(−6) mol/L NG. After accumulation for 240 s of NG at PGE* the LoD was lowered to 1.35 × 10(−7) mol/L NG, the linear range being 6.00 × 10(−7)–8.00 × 10(−6) mol/L NG. The developed electrochemical system was successfully tested on real samples and proved to be a cost-effective tool for the simple estimation of the TCP with intermediate AOP in citrus fruits.
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spelling pubmed-97744302022-12-23 Electroanalysis of Naringin at Electroactivated Pencil Graphite Electrode for the Assessment of Polyphenolics with Intermediate Antioxidant Power David, Iulia Gabriela Litescu, Simona Carmen Moraru, Raluca Albu, Camelia Buleandra, Mihaela Popa, Dana Elena Riga, Sorin Ciobanu, Adela Magdalena Noor, Hassan Antioxidants (Basel) Article A simple and rapid differential pulse voltammetric (DPV) method using a single-use electroactivated pencil graphite electrode (PGE*) is proposed for the rapid screening of the total content of polyphenolics (TCP) with intermediate antioxidant power (AOP) in grapefruit peel and fresh juice. The results were compared and correlated with those provided by the HPLC-DAD-MS method. NG voltammetric behavior at PGE* was studied by cyclic voltammetry and an oxidation mechanism was suggested. The experimental conditions (type of PGE, electroactivation procedure, pH, nature and concentration of supporting electrolyte) for NG DPV determination were optimized. The NG peak current varied linearly with the concentration in the ranges 1.40 × 10(−6)–2.00 × 10(−5) and 2.00 × 10(−5)–1.40 × 10(−4) mol/L NG and a limit of detection (LoD) of 6.02 × 10(−7) mol/L NG was attained. The method repeatability expressed as relative standard deviation was 7.62% for the concentration level of 2.00 × 10(−6) mol/L NG. After accumulation for 240 s of NG at PGE* the LoD was lowered to 1.35 × 10(−7) mol/L NG, the linear range being 6.00 × 10(−7)–8.00 × 10(−6) mol/L NG. The developed electrochemical system was successfully tested on real samples and proved to be a cost-effective tool for the simple estimation of the TCP with intermediate AOP in citrus fruits. MDPI 2022-11-22 /pmc/articles/PMC9774430/ /pubmed/36552515 http://dx.doi.org/10.3390/antiox11122306 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
David, Iulia Gabriela
Litescu, Simona Carmen
Moraru, Raluca
Albu, Camelia
Buleandra, Mihaela
Popa, Dana Elena
Riga, Sorin
Ciobanu, Adela Magdalena
Noor, Hassan
Electroanalysis of Naringin at Electroactivated Pencil Graphite Electrode for the Assessment of Polyphenolics with Intermediate Antioxidant Power
title Electroanalysis of Naringin at Electroactivated Pencil Graphite Electrode for the Assessment of Polyphenolics with Intermediate Antioxidant Power
title_full Electroanalysis of Naringin at Electroactivated Pencil Graphite Electrode for the Assessment of Polyphenolics with Intermediate Antioxidant Power
title_fullStr Electroanalysis of Naringin at Electroactivated Pencil Graphite Electrode for the Assessment of Polyphenolics with Intermediate Antioxidant Power
title_full_unstemmed Electroanalysis of Naringin at Electroactivated Pencil Graphite Electrode for the Assessment of Polyphenolics with Intermediate Antioxidant Power
title_short Electroanalysis of Naringin at Electroactivated Pencil Graphite Electrode for the Assessment of Polyphenolics with Intermediate Antioxidant Power
title_sort electroanalysis of naringin at electroactivated pencil graphite electrode for the assessment of polyphenolics with intermediate antioxidant power
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9774430/
https://www.ncbi.nlm.nih.gov/pubmed/36552515
http://dx.doi.org/10.3390/antiox11122306
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