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Encapsulation of Synthesized Plant Growth Regulator Based on Copper(II) Complex in Chitosan/Alginate Microcapsules

A new copper complex, trans-diaqua-trans-bis [1-hydroxy-1,2-di (methoxycarbonyl) ethenato] copper (abbreviation Cu(II) complex), was synthesized and its plant growth regulation properties were investigated. The results show a sharp dependence of growth regulation activity of the Cu(II) complex on th...

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Autores principales: Kudasova, Darikha, Mutaliyeva, Botagoz, Vlahoviček-Kahlina, Kristina, Jurić, Slaven, Marijan, Marijan, Khalus, Svetlana V., Prosyanik, Alexander V., Šegota, Suzana, Španić, Nikola, Vinceković, Marko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7961414/
https://www.ncbi.nlm.nih.gov/pubmed/33800824
http://dx.doi.org/10.3390/ijms22052663
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author Kudasova, Darikha
Mutaliyeva, Botagoz
Vlahoviček-Kahlina, Kristina
Jurić, Slaven
Marijan, Marijan
Khalus, Svetlana V.
Prosyanik, Alexander V.
Šegota, Suzana
Španić, Nikola
Vinceković, Marko
author_facet Kudasova, Darikha
Mutaliyeva, Botagoz
Vlahoviček-Kahlina, Kristina
Jurić, Slaven
Marijan, Marijan
Khalus, Svetlana V.
Prosyanik, Alexander V.
Šegota, Suzana
Španić, Nikola
Vinceković, Marko
author_sort Kudasova, Darikha
collection PubMed
description A new copper complex, trans-diaqua-trans-bis [1-hydroxy-1,2-di (methoxycarbonyl) ethenato] copper (abbreviation Cu(II) complex), was synthesized and its plant growth regulation properties were investigated. The results show a sharp dependence of growth regulation activity of the Cu(II) complex on the type of culture and its concentration. New plant growth regulator accelerated the development of the corn root system (the increase in both length and weight) but showed a smaller effect on the development of the wheat and barley root systems. Stimulation of corn growth decreased with increasing Cu(II) complex concentration from 0.0001% to 0.01% (inhibition at high concentrations—0.01%). The development of corn stems was also accelerated but to a lesser extent. Chitosan-coated calcium alginate microcapsules suitable for delivery of Cu(II) complex to plants were prepared and characterized. Analysis of the FTIR spectrum showed that complex molecular interactions between functional groups of microcapsule constituents include mainly electrostatic interactions and hydrogen bonds. Microcapsules surface exhibits a soft granular surface structure with substructures consisting of abundant smaller particles with reduced surface roughness. Release profile analysis showed Fickian diffusion is the rate-controlling mechanism of Cu(II) complex releasing. The obtained results give new insights into the complexity of the interaction between the Cu(II) complex and microcapsule formulation constituents, which can be of great help in accelerating product development for the application in agriculture
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spelling pubmed-79614142021-03-17 Encapsulation of Synthesized Plant Growth Regulator Based on Copper(II) Complex in Chitosan/Alginate Microcapsules Kudasova, Darikha Mutaliyeva, Botagoz Vlahoviček-Kahlina, Kristina Jurić, Slaven Marijan, Marijan Khalus, Svetlana V. Prosyanik, Alexander V. Šegota, Suzana Španić, Nikola Vinceković, Marko Int J Mol Sci Article A new copper complex, trans-diaqua-trans-bis [1-hydroxy-1,2-di (methoxycarbonyl) ethenato] copper (abbreviation Cu(II) complex), was synthesized and its plant growth regulation properties were investigated. The results show a sharp dependence of growth regulation activity of the Cu(II) complex on the type of culture and its concentration. New plant growth regulator accelerated the development of the corn root system (the increase in both length and weight) but showed a smaller effect on the development of the wheat and barley root systems. Stimulation of corn growth decreased with increasing Cu(II) complex concentration from 0.0001% to 0.01% (inhibition at high concentrations—0.01%). The development of corn stems was also accelerated but to a lesser extent. Chitosan-coated calcium alginate microcapsules suitable for delivery of Cu(II) complex to plants were prepared and characterized. Analysis of the FTIR spectrum showed that complex molecular interactions between functional groups of microcapsule constituents include mainly electrostatic interactions and hydrogen bonds. Microcapsules surface exhibits a soft granular surface structure with substructures consisting of abundant smaller particles with reduced surface roughness. Release profile analysis showed Fickian diffusion is the rate-controlling mechanism of Cu(II) complex releasing. The obtained results give new insights into the complexity of the interaction between the Cu(II) complex and microcapsule formulation constituents, which can be of great help in accelerating product development for the application in agriculture MDPI 2021-03-06 /pmc/articles/PMC7961414/ /pubmed/33800824 http://dx.doi.org/10.3390/ijms22052663 Text en © 2021 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
Kudasova, Darikha
Mutaliyeva, Botagoz
Vlahoviček-Kahlina, Kristina
Jurić, Slaven
Marijan, Marijan
Khalus, Svetlana V.
Prosyanik, Alexander V.
Šegota, Suzana
Španić, Nikola
Vinceković, Marko
Encapsulation of Synthesized Plant Growth Regulator Based on Copper(II) Complex in Chitosan/Alginate Microcapsules
title Encapsulation of Synthesized Plant Growth Regulator Based on Copper(II) Complex in Chitosan/Alginate Microcapsules
title_full Encapsulation of Synthesized Plant Growth Regulator Based on Copper(II) Complex in Chitosan/Alginate Microcapsules
title_fullStr Encapsulation of Synthesized Plant Growth Regulator Based on Copper(II) Complex in Chitosan/Alginate Microcapsules
title_full_unstemmed Encapsulation of Synthesized Plant Growth Regulator Based on Copper(II) Complex in Chitosan/Alginate Microcapsules
title_short Encapsulation of Synthesized Plant Growth Regulator Based on Copper(II) Complex in Chitosan/Alginate Microcapsules
title_sort encapsulation of synthesized plant growth regulator based on copper(ii) complex in chitosan/alginate microcapsules
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7961414/
https://www.ncbi.nlm.nih.gov/pubmed/33800824
http://dx.doi.org/10.3390/ijms22052663
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