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Acetylcholinesterase Inhibition and Antioxidant Activity of N-trans-Caffeoyldopamine and N-trans-Feruloyldopamine

Phenolic acids and their derivatives found in nature are well-known for their potential biological activity. In this study, two amides derived from trans-caffeic/ferulic acid and dopamine were synthesized and characterized by Fourier-transform infrared spectroscopy (FTIR), mass spectrometry, proton...

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Autores principales: Dizdar, Muamer, Vidic, Danijela, Požgan, Franc, Štefane, Bogdan, Maksimović, Milka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6027674/
https://www.ncbi.nlm.nih.gov/pubmed/29617286
http://dx.doi.org/10.3390/scipharm86020011
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author Dizdar, Muamer
Vidic, Danijela
Požgan, Franc
Štefane, Bogdan
Maksimović, Milka
author_facet Dizdar, Muamer
Vidic, Danijela
Požgan, Franc
Štefane, Bogdan
Maksimović, Milka
author_sort Dizdar, Muamer
collection PubMed
description Phenolic acids and their derivatives found in nature are well-known for their potential biological activity. In this study, two amides derived from trans-caffeic/ferulic acid and dopamine were synthesized and characterized by Fourier-transform infrared spectroscopy (FTIR), mass spectrometry, proton and carbon-13 nuclear magnetic resonance spectroscopy. The compounds were tested for the inhibition of acetylcholinesterase (AChE) from Electrophorus electricus and for antioxidant activity by scavenging 2,2-diphenyl-1-pycrylhydrazyl free radical (DPPH(•)) and 2,2′-azinobis(3-ethylbenzothiazoline-6-sulphonic acid) radical cation (ABTS(•+)), reducing ferric ions, and ferrous ions chelation. N-trans-Feruloyldopamine displayed the highest inhibitory effect on AChE with half-maximal inhibitory concentration (IC(50)) values of 8.52 μM. In addition, an in silico study was done to determine the most favorable AChE cluster with the synthesized compounds. Further, these clusters were investigated for binding positions at the lowest free binding energy. Both synthesized hydroxycinnamates were found to be better antioxidants than the parent acids in in vitro tests applied. N-trans-Caffeoyldopamine showed the best antioxidant activity in the three tested methods—against non-biological stable free radicals IC(50) 5.95 μM for DPPH(•), 0.24 μM for the ABTS(•+) method, and for reducing power (ascorbic acid equivalent (AAE) 822.45 μmol/mmol)—while for chelation activity against Fe(2+) ions N-trans-feruloyldopamine had slightly better antioxidant activity (IC(50) 3.17 mM).
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spelling pubmed-60276742018-07-02 Acetylcholinesterase Inhibition and Antioxidant Activity of N-trans-Caffeoyldopamine and N-trans-Feruloyldopamine Dizdar, Muamer Vidic, Danijela Požgan, Franc Štefane, Bogdan Maksimović, Milka Sci Pharm Article Phenolic acids and their derivatives found in nature are well-known for their potential biological activity. In this study, two amides derived from trans-caffeic/ferulic acid and dopamine were synthesized and characterized by Fourier-transform infrared spectroscopy (FTIR), mass spectrometry, proton and carbon-13 nuclear magnetic resonance spectroscopy. The compounds were tested for the inhibition of acetylcholinesterase (AChE) from Electrophorus electricus and for antioxidant activity by scavenging 2,2-diphenyl-1-pycrylhydrazyl free radical (DPPH(•)) and 2,2′-azinobis(3-ethylbenzothiazoline-6-sulphonic acid) radical cation (ABTS(•+)), reducing ferric ions, and ferrous ions chelation. N-trans-Feruloyldopamine displayed the highest inhibitory effect on AChE with half-maximal inhibitory concentration (IC(50)) values of 8.52 μM. In addition, an in silico study was done to determine the most favorable AChE cluster with the synthesized compounds. Further, these clusters were investigated for binding positions at the lowest free binding energy. Both synthesized hydroxycinnamates were found to be better antioxidants than the parent acids in in vitro tests applied. N-trans-Caffeoyldopamine showed the best antioxidant activity in the three tested methods—against non-biological stable free radicals IC(50) 5.95 μM for DPPH(•), 0.24 μM for the ABTS(•+) method, and for reducing power (ascorbic acid equivalent (AAE) 822.45 μmol/mmol)—while for chelation activity against Fe(2+) ions N-trans-feruloyldopamine had slightly better antioxidant activity (IC(50) 3.17 mM). MDPI 2018-04-04 2018 /pmc/articles/PMC6027674/ /pubmed/29617286 http://dx.doi.org/10.3390/scipharm86020011 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Dizdar, Muamer
Vidic, Danijela
Požgan, Franc
Štefane, Bogdan
Maksimović, Milka
Acetylcholinesterase Inhibition and Antioxidant Activity of N-trans-Caffeoyldopamine and N-trans-Feruloyldopamine
title Acetylcholinesterase Inhibition and Antioxidant Activity of N-trans-Caffeoyldopamine and N-trans-Feruloyldopamine
title_full Acetylcholinesterase Inhibition and Antioxidant Activity of N-trans-Caffeoyldopamine and N-trans-Feruloyldopamine
title_fullStr Acetylcholinesterase Inhibition and Antioxidant Activity of N-trans-Caffeoyldopamine and N-trans-Feruloyldopamine
title_full_unstemmed Acetylcholinesterase Inhibition and Antioxidant Activity of N-trans-Caffeoyldopamine and N-trans-Feruloyldopamine
title_short Acetylcholinesterase Inhibition and Antioxidant Activity of N-trans-Caffeoyldopamine and N-trans-Feruloyldopamine
title_sort acetylcholinesterase inhibition and antioxidant activity of n-trans-caffeoyldopamine and n-trans-feruloyldopamine
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6027674/
https://www.ncbi.nlm.nih.gov/pubmed/29617286
http://dx.doi.org/10.3390/scipharm86020011
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