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Phenolic Thiazoles with Antioxidant and Antiradical Activity. Synthesis, In Vitro Evaluation, Toxicity, Electrochemical Behavior, Quantum Studies and Antimicrobial Screening

Oxidative stress represents the underlying cause of many chronic diseases in human; therefore, the development of potent antioxidant compounds for preventing or treating such conditions is useful. Starting from the good antioxidant and antiradical properties identified for the previously reported Di...

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Autores principales: Marc, Gabriel, Stana, Anca, Franchini, Ana Horiana, Vodnar, Dan Cristian, Barta, Gabriel, Tertiş, Mihaela, Şanta, Iulia, Cristea, Cecilia, Pîrnău, Adrian, Ciorîţă, Alexandra, Dume, Bogdan, Toma, Vlad-Alexandru, Vlase, Laurian, Oniga, Ilioara, Oniga, Ovidiu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8615111/
https://www.ncbi.nlm.nih.gov/pubmed/34829578
http://dx.doi.org/10.3390/antiox10111707
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author Marc, Gabriel
Stana, Anca
Franchini, Ana Horiana
Vodnar, Dan Cristian
Barta, Gabriel
Tertiş, Mihaela
Şanta, Iulia
Cristea, Cecilia
Pîrnău, Adrian
Ciorîţă, Alexandra
Dume, Bogdan
Toma, Vlad-Alexandru
Vlase, Laurian
Oniga, Ilioara
Oniga, Ovidiu
author_facet Marc, Gabriel
Stana, Anca
Franchini, Ana Horiana
Vodnar, Dan Cristian
Barta, Gabriel
Tertiş, Mihaela
Şanta, Iulia
Cristea, Cecilia
Pîrnău, Adrian
Ciorîţă, Alexandra
Dume, Bogdan
Toma, Vlad-Alexandru
Vlase, Laurian
Oniga, Ilioara
Oniga, Ovidiu
author_sort Marc, Gabriel
collection PubMed
description Oxidative stress represents the underlying cause of many chronic diseases in human; therefore, the development of potent antioxidant compounds for preventing or treating such conditions is useful. Starting from the good antioxidant and antiradical properties identified for the previously reported Dihydroxy-Phenyl-Thiazol-Hydrazinium chloride (DPTH), we synthesized a congeneric series of phenolic thiazoles. The radical scavenging activity, and the antioxidant and chelation potential were assessed in vitro, a series of quantum descriptors were calculated, and the electrochemical behavior of the synthesized compounds was studied to evaluate the impact on the antioxidant and antiradical activities. In addition, their antibacterial and antifungal properties were evaluated against seven aerobic bacterial strains and a strain of C. albicans, and their cytotoxicity was assessed in vitro. Compounds 5a-b, 7a-b and 8a-b presented remarkable antioxidant and antiradical properties, and compounds 5a-b, 7a and 8a displayed good Cu(+2) chelating activity. Compounds 7a and 8a were very active against P. aeruginosa ATCC 27853 compared to norfloxacin, and proved less cytotoxic than ascorbic acid against the human keratinocyte cell line (HaCaT cells, CLS-300493). Several phenolic compounds from the synthesized series presented excellent antioxidant activity and notable anti-Pseudomonas potential.
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spelling pubmed-86151112021-11-26 Phenolic Thiazoles with Antioxidant and Antiradical Activity. Synthesis, In Vitro Evaluation, Toxicity, Electrochemical Behavior, Quantum Studies and Antimicrobial Screening Marc, Gabriel Stana, Anca Franchini, Ana Horiana Vodnar, Dan Cristian Barta, Gabriel Tertiş, Mihaela Şanta, Iulia Cristea, Cecilia Pîrnău, Adrian Ciorîţă, Alexandra Dume, Bogdan Toma, Vlad-Alexandru Vlase, Laurian Oniga, Ilioara Oniga, Ovidiu Antioxidants (Basel) Article Oxidative stress represents the underlying cause of many chronic diseases in human; therefore, the development of potent antioxidant compounds for preventing or treating such conditions is useful. Starting from the good antioxidant and antiradical properties identified for the previously reported Dihydroxy-Phenyl-Thiazol-Hydrazinium chloride (DPTH), we synthesized a congeneric series of phenolic thiazoles. The radical scavenging activity, and the antioxidant and chelation potential were assessed in vitro, a series of quantum descriptors were calculated, and the electrochemical behavior of the synthesized compounds was studied to evaluate the impact on the antioxidant and antiradical activities. In addition, their antibacterial and antifungal properties were evaluated against seven aerobic bacterial strains and a strain of C. albicans, and their cytotoxicity was assessed in vitro. Compounds 5a-b, 7a-b and 8a-b presented remarkable antioxidant and antiradical properties, and compounds 5a-b, 7a and 8a displayed good Cu(+2) chelating activity. Compounds 7a and 8a were very active against P. aeruginosa ATCC 27853 compared to norfloxacin, and proved less cytotoxic than ascorbic acid against the human keratinocyte cell line (HaCaT cells, CLS-300493). Several phenolic compounds from the synthesized series presented excellent antioxidant activity and notable anti-Pseudomonas potential. MDPI 2021-10-27 /pmc/articles/PMC8615111/ /pubmed/34829578 http://dx.doi.org/10.3390/antiox10111707 Text en © 2021 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
Marc, Gabriel
Stana, Anca
Franchini, Ana Horiana
Vodnar, Dan Cristian
Barta, Gabriel
Tertiş, Mihaela
Şanta, Iulia
Cristea, Cecilia
Pîrnău, Adrian
Ciorîţă, Alexandra
Dume, Bogdan
Toma, Vlad-Alexandru
Vlase, Laurian
Oniga, Ilioara
Oniga, Ovidiu
Phenolic Thiazoles with Antioxidant and Antiradical Activity. Synthesis, In Vitro Evaluation, Toxicity, Electrochemical Behavior, Quantum Studies and Antimicrobial Screening
title Phenolic Thiazoles with Antioxidant and Antiradical Activity. Synthesis, In Vitro Evaluation, Toxicity, Electrochemical Behavior, Quantum Studies and Antimicrobial Screening
title_full Phenolic Thiazoles with Antioxidant and Antiradical Activity. Synthesis, In Vitro Evaluation, Toxicity, Electrochemical Behavior, Quantum Studies and Antimicrobial Screening
title_fullStr Phenolic Thiazoles with Antioxidant and Antiradical Activity. Synthesis, In Vitro Evaluation, Toxicity, Electrochemical Behavior, Quantum Studies and Antimicrobial Screening
title_full_unstemmed Phenolic Thiazoles with Antioxidant and Antiradical Activity. Synthesis, In Vitro Evaluation, Toxicity, Electrochemical Behavior, Quantum Studies and Antimicrobial Screening
title_short Phenolic Thiazoles with Antioxidant and Antiradical Activity. Synthesis, In Vitro Evaluation, Toxicity, Electrochemical Behavior, Quantum Studies and Antimicrobial Screening
title_sort phenolic thiazoles with antioxidant and antiradical activity. synthesis, in vitro evaluation, toxicity, electrochemical behavior, quantum studies and antimicrobial screening
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8615111/
https://www.ncbi.nlm.nih.gov/pubmed/34829578
http://dx.doi.org/10.3390/antiox10111707
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