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Second-Generation Enamine-Type Schiff Bases as 2-Amino Acid-Derived Antifungals against Fusarium oxysporum: Microwave-Assisted Synthesis, In Vitro Activity, 3D-QSAR, and In Vivo Effect

In this manuscript, the synthesis of enamine-type Schiff bases 1–48 derived from the amino acids L-Ala, L-Tyr, and L-Phe was carried out. Their in vitro activity and in vivo protective effect against Fusarium oxysporum were also evaluated through mycelial growth inhibition and disease severity reduc...

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Autores principales: Borrego-Muñoz, Paola, Cardenas, Diego, Ospina, Felipe, Coy-Barrera, Ericsson, Quiroga, Diego
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9866056/
https://www.ncbi.nlm.nih.gov/pubmed/36675934
http://dx.doi.org/10.3390/jof9010113
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author Borrego-Muñoz, Paola
Cardenas, Diego
Ospina, Felipe
Coy-Barrera, Ericsson
Quiroga, Diego
author_facet Borrego-Muñoz, Paola
Cardenas, Diego
Ospina, Felipe
Coy-Barrera, Ericsson
Quiroga, Diego
author_sort Borrego-Muñoz, Paola
collection PubMed
description In this manuscript, the synthesis of enamine-type Schiff bases 1–48 derived from the amino acids L-Ala, L-Tyr, and L-Phe was carried out. Their in vitro activity and in vivo protective effect against Fusarium oxysporum were also evaluated through mycelial growth inhibition and disease severity reduction under greenhouse conditions. The in vitro activity of test compounds 1–48 showed half-maximal inhibitory concentrations (IC(50)) at different levels below the 40 mM range. Deep analysis of the IC(50) variations indicated that the size of the substituent on the acetylacetone derivatives and the electronic character on the cyclohexane-3-one fragment influenced the antifungal effect. 3D-QSAR models based on atoms (atom-based approach) were built to establish the structure–activity relationship of the test Schiff bases, showing a good correlation and predictive consistency (R(2) > 0.70 and Q(2) > 0.60). The respective contour analysis also provided information about the structural requirements for potentiating their antifungal activity. In particular, the amino acid-related fragment and the alkyl ester residue can favor hydrophobic interactions. In contrast, the nitrogen atoms and enamine substituent are favorable regions as H-donating and electron-withdrawing moieties. The most active compounds (40 and 41) protected cape gooseberry plants against F. oxysporum infection (disease severity index < 2), involving adequate physiological parameters (stomatal conductance > 150 mmol/m(2)s) after 45 days of inoculation. These promising results will allow the design of novel Schiff base-inspired antifungals using 2-amino acids as precursors.
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spelling pubmed-98660562023-01-22 Second-Generation Enamine-Type Schiff Bases as 2-Amino Acid-Derived Antifungals against Fusarium oxysporum: Microwave-Assisted Synthesis, In Vitro Activity, 3D-QSAR, and In Vivo Effect Borrego-Muñoz, Paola Cardenas, Diego Ospina, Felipe Coy-Barrera, Ericsson Quiroga, Diego J Fungi (Basel) Article In this manuscript, the synthesis of enamine-type Schiff bases 1–48 derived from the amino acids L-Ala, L-Tyr, and L-Phe was carried out. Their in vitro activity and in vivo protective effect against Fusarium oxysporum were also evaluated through mycelial growth inhibition and disease severity reduction under greenhouse conditions. The in vitro activity of test compounds 1–48 showed half-maximal inhibitory concentrations (IC(50)) at different levels below the 40 mM range. Deep analysis of the IC(50) variations indicated that the size of the substituent on the acetylacetone derivatives and the electronic character on the cyclohexane-3-one fragment influenced the antifungal effect. 3D-QSAR models based on atoms (atom-based approach) were built to establish the structure–activity relationship of the test Schiff bases, showing a good correlation and predictive consistency (R(2) > 0.70 and Q(2) > 0.60). The respective contour analysis also provided information about the structural requirements for potentiating their antifungal activity. In particular, the amino acid-related fragment and the alkyl ester residue can favor hydrophobic interactions. In contrast, the nitrogen atoms and enamine substituent are favorable regions as H-donating and electron-withdrawing moieties. The most active compounds (40 and 41) protected cape gooseberry plants against F. oxysporum infection (disease severity index < 2), involving adequate physiological parameters (stomatal conductance > 150 mmol/m(2)s) after 45 days of inoculation. These promising results will allow the design of novel Schiff base-inspired antifungals using 2-amino acids as precursors. MDPI 2023-01-13 /pmc/articles/PMC9866056/ /pubmed/36675934 http://dx.doi.org/10.3390/jof9010113 Text en © 2023 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
Borrego-Muñoz, Paola
Cardenas, Diego
Ospina, Felipe
Coy-Barrera, Ericsson
Quiroga, Diego
Second-Generation Enamine-Type Schiff Bases as 2-Amino Acid-Derived Antifungals against Fusarium oxysporum: Microwave-Assisted Synthesis, In Vitro Activity, 3D-QSAR, and In Vivo Effect
title Second-Generation Enamine-Type Schiff Bases as 2-Amino Acid-Derived Antifungals against Fusarium oxysporum: Microwave-Assisted Synthesis, In Vitro Activity, 3D-QSAR, and In Vivo Effect
title_full Second-Generation Enamine-Type Schiff Bases as 2-Amino Acid-Derived Antifungals against Fusarium oxysporum: Microwave-Assisted Synthesis, In Vitro Activity, 3D-QSAR, and In Vivo Effect
title_fullStr Second-Generation Enamine-Type Schiff Bases as 2-Amino Acid-Derived Antifungals against Fusarium oxysporum: Microwave-Assisted Synthesis, In Vitro Activity, 3D-QSAR, and In Vivo Effect
title_full_unstemmed Second-Generation Enamine-Type Schiff Bases as 2-Amino Acid-Derived Antifungals against Fusarium oxysporum: Microwave-Assisted Synthesis, In Vitro Activity, 3D-QSAR, and In Vivo Effect
title_short Second-Generation Enamine-Type Schiff Bases as 2-Amino Acid-Derived Antifungals against Fusarium oxysporum: Microwave-Assisted Synthesis, In Vitro Activity, 3D-QSAR, and In Vivo Effect
title_sort second-generation enamine-type schiff bases as 2-amino acid-derived antifungals against fusarium oxysporum: microwave-assisted synthesis, in vitro activity, 3d-qsar, and in vivo effect
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9866056/
https://www.ncbi.nlm.nih.gov/pubmed/36675934
http://dx.doi.org/10.3390/jof9010113
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