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A Nanostructured Cu(II) Coordination Polymer Based on Alanine as a Trifunctional Mimic Enzyme and Efficient Composite in the Detection of Sphingobacteria

This research raises the potential use of coordination polymers as new useful materials in two essential research fields, allowing the obtaining of a new multiartificial enzyme with the capacity to inhibit the growth of bacteria resistance. The fine selection of the ligands allows the design of a ne...

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Autores principales: Maldonado, Noelia, Latorre, Ana, Zamora, Félix, Somoza, Álvaro, Gómez-García, Carlos J., Bastida, Agatha, Amo-Ochoa, Pilar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9017554/
https://www.ncbi.nlm.nih.gov/pubmed/35449715
http://dx.doi.org/10.1155/2022/8788221
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author Maldonado, Noelia
Latorre, Ana
Zamora, Félix
Somoza, Álvaro
Gómez-García, Carlos J.
Bastida, Agatha
Amo-Ochoa, Pilar
author_facet Maldonado, Noelia
Latorre, Ana
Zamora, Félix
Somoza, Álvaro
Gómez-García, Carlos J.
Bastida, Agatha
Amo-Ochoa, Pilar
author_sort Maldonado, Noelia
collection PubMed
description This research raises the potential use of coordination polymers as new useful materials in two essential research fields, allowing the obtaining of a new multiartificial enzyme with the capacity to inhibit the growth of bacteria resistance. The fine selection of the ligands allows the design of a new 2D coordination polymer (CP), with the formula [Cu(2)(IBA)(2)(OH(2))(4)](n)·6nH(2)O, by the combination of Cu (II) as the metal center with a pseudoamino acid (H(2)IBA = isophthaloyl bis β-alanine). Quantitative total X-ray fluorescence (TXRF) analyses show that the obtained CP can gradually release Cu (II) ions. Additionally, this CP can be nanoprocessed and transformed into a metal-organic gel (MOG) by using different Cu (II) salt concentrations and the application of ultrasounds. Considering its nanometric dimensions, the slow Cu (II) release and its simple processability, its performance as an artificial enzyme, and its antibacterial ability were explored. The results obtained show the first nanocoordination polymer acting as an artificial multienzyme (peroxidase, catalase, and superoxodismutase) exhibiting antibacterial activity in the presence of hydrogen peroxide, with selective behavior for three bacterium strains (S. spiritovirum, A. faecales, and B. cereus). Indeed, this CP shows a more robust inhibition capacity for Sphingobacterium. Going beyond that, as there are no comfortable and practically clinical tests capable of detecting the presence of Sphingobacteria, the compound can be easily embedded to form moldable gelatin that will facilitate the handling and low-cost commercial kits.
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spelling pubmed-90175542022-04-20 A Nanostructured Cu(II) Coordination Polymer Based on Alanine as a Trifunctional Mimic Enzyme and Efficient Composite in the Detection of Sphingobacteria Maldonado, Noelia Latorre, Ana Zamora, Félix Somoza, Álvaro Gómez-García, Carlos J. Bastida, Agatha Amo-Ochoa, Pilar Bioinorg Chem Appl Research Article This research raises the potential use of coordination polymers as new useful materials in two essential research fields, allowing the obtaining of a new multiartificial enzyme with the capacity to inhibit the growth of bacteria resistance. The fine selection of the ligands allows the design of a new 2D coordination polymer (CP), with the formula [Cu(2)(IBA)(2)(OH(2))(4)](n)·6nH(2)O, by the combination of Cu (II) as the metal center with a pseudoamino acid (H(2)IBA = isophthaloyl bis β-alanine). Quantitative total X-ray fluorescence (TXRF) analyses show that the obtained CP can gradually release Cu (II) ions. Additionally, this CP can be nanoprocessed and transformed into a metal-organic gel (MOG) by using different Cu (II) salt concentrations and the application of ultrasounds. Considering its nanometric dimensions, the slow Cu (II) release and its simple processability, its performance as an artificial enzyme, and its antibacterial ability were explored. The results obtained show the first nanocoordination polymer acting as an artificial multienzyme (peroxidase, catalase, and superoxodismutase) exhibiting antibacterial activity in the presence of hydrogen peroxide, with selective behavior for three bacterium strains (S. spiritovirum, A. faecales, and B. cereus). Indeed, this CP shows a more robust inhibition capacity for Sphingobacterium. Going beyond that, as there are no comfortable and practically clinical tests capable of detecting the presence of Sphingobacteria, the compound can be easily embedded to form moldable gelatin that will facilitate the handling and low-cost commercial kits. Hindawi 2022-04-11 /pmc/articles/PMC9017554/ /pubmed/35449715 http://dx.doi.org/10.1155/2022/8788221 Text en Copyright © 2022 Noelia Maldonado et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Maldonado, Noelia
Latorre, Ana
Zamora, Félix
Somoza, Álvaro
Gómez-García, Carlos J.
Bastida, Agatha
Amo-Ochoa, Pilar
A Nanostructured Cu(II) Coordination Polymer Based on Alanine as a Trifunctional Mimic Enzyme and Efficient Composite in the Detection of Sphingobacteria
title A Nanostructured Cu(II) Coordination Polymer Based on Alanine as a Trifunctional Mimic Enzyme and Efficient Composite in the Detection of Sphingobacteria
title_full A Nanostructured Cu(II) Coordination Polymer Based on Alanine as a Trifunctional Mimic Enzyme and Efficient Composite in the Detection of Sphingobacteria
title_fullStr A Nanostructured Cu(II) Coordination Polymer Based on Alanine as a Trifunctional Mimic Enzyme and Efficient Composite in the Detection of Sphingobacteria
title_full_unstemmed A Nanostructured Cu(II) Coordination Polymer Based on Alanine as a Trifunctional Mimic Enzyme and Efficient Composite in the Detection of Sphingobacteria
title_short A Nanostructured Cu(II) Coordination Polymer Based on Alanine as a Trifunctional Mimic Enzyme and Efficient Composite in the Detection of Sphingobacteria
title_sort nanostructured cu(ii) coordination polymer based on alanine as a trifunctional mimic enzyme and efficient composite in the detection of sphingobacteria
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9017554/
https://www.ncbi.nlm.nih.gov/pubmed/35449715
http://dx.doi.org/10.1155/2022/8788221
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