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Enhanced fungicidal efficacy on Ganoderma boninense by simultaneous co-delivery of hexaconazole and dazomet from their chitosan nanoparticles

The excessive use of fungicides may be of environmental and health concerns. Hence, to overcome this problem, chitosan as a controlled release matrix was used in this work to encapsulate the fungicide for the development of enhanced fungicide nanodelivery system. In this proposed study, dual-loaded...

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Autores principales: Maluin, Farhatun Najat, Hussein, Mohd Zobir, Yusof, Nor Azah, Fakurazi, Sharida, Abu Seman, Idris, Zainol Hilmi, Nur Hailini, Jeffery Daim, Leona Daniela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9070574/
https://www.ncbi.nlm.nih.gov/pubmed/35528577
http://dx.doi.org/10.1039/c9ra05417k
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author Maluin, Farhatun Najat
Hussein, Mohd Zobir
Yusof, Nor Azah
Fakurazi, Sharida
Abu Seman, Idris
Zainol Hilmi, Nur Hailini
Jeffery Daim, Leona Daniela
author_facet Maluin, Farhatun Najat
Hussein, Mohd Zobir
Yusof, Nor Azah
Fakurazi, Sharida
Abu Seman, Idris
Zainol Hilmi, Nur Hailini
Jeffery Daim, Leona Daniela
author_sort Maluin, Farhatun Najat
collection PubMed
description The excessive use of fungicides may be of environmental and health concerns. Hence, to overcome this problem, chitosan as a controlled release matrix was used in this work to encapsulate the fungicide for the development of enhanced fungicide nanodelivery system. In this proposed study, dual-loaded fungicides (hexaconazole and dazomet) were simultaneously encapsulated into chitosan nanoparticles as an antifungal agent on Ganoderma boninense (G. boninense). In this work, we report the synthesis and characterization of the nanoparticles prepared using various concentrations of the crosslinking agent of sodium tripolyphosphate (TPP); 2.5, 5, 10, and 20 mg mL(−1), which resulted in the nanoparticles of CHDEN2.5, CHDEN5, CHDEN10, and CHDEN20, respectively. The effect of TPP on the synthesized nanoparticle size revealed that an increase of TPP resulted in smaller particles, which in turn play a crucial role in controlling G. boninense growth. CHDEN20 shows the highest antifungal efficacy with the lowest half-maximal effective concentration (EC(50)) on G. boninense. The formulated nanocarrier system of fungicide aims to enhance the efficient delivery of the active ingredients to the target site, able to sustain in it for a longer time, and consequently improve the fungicide efficacy in combating the basal stem rot disease in oil palm.
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spelling pubmed-90705742022-05-05 Enhanced fungicidal efficacy on Ganoderma boninense by simultaneous co-delivery of hexaconazole and dazomet from their chitosan nanoparticles Maluin, Farhatun Najat Hussein, Mohd Zobir Yusof, Nor Azah Fakurazi, Sharida Abu Seman, Idris Zainol Hilmi, Nur Hailini Jeffery Daim, Leona Daniela RSC Adv Chemistry The excessive use of fungicides may be of environmental and health concerns. Hence, to overcome this problem, chitosan as a controlled release matrix was used in this work to encapsulate the fungicide for the development of enhanced fungicide nanodelivery system. In this proposed study, dual-loaded fungicides (hexaconazole and dazomet) were simultaneously encapsulated into chitosan nanoparticles as an antifungal agent on Ganoderma boninense (G. boninense). In this work, we report the synthesis and characterization of the nanoparticles prepared using various concentrations of the crosslinking agent of sodium tripolyphosphate (TPP); 2.5, 5, 10, and 20 mg mL(−1), which resulted in the nanoparticles of CHDEN2.5, CHDEN5, CHDEN10, and CHDEN20, respectively. The effect of TPP on the synthesized nanoparticle size revealed that an increase of TPP resulted in smaller particles, which in turn play a crucial role in controlling G. boninense growth. CHDEN20 shows the highest antifungal efficacy with the lowest half-maximal effective concentration (EC(50)) on G. boninense. The formulated nanocarrier system of fungicide aims to enhance the efficient delivery of the active ingredients to the target site, able to sustain in it for a longer time, and consequently improve the fungicide efficacy in combating the basal stem rot disease in oil palm. The Royal Society of Chemistry 2019-08-28 /pmc/articles/PMC9070574/ /pubmed/35528577 http://dx.doi.org/10.1039/c9ra05417k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Maluin, Farhatun Najat
Hussein, Mohd Zobir
Yusof, Nor Azah
Fakurazi, Sharida
Abu Seman, Idris
Zainol Hilmi, Nur Hailini
Jeffery Daim, Leona Daniela
Enhanced fungicidal efficacy on Ganoderma boninense by simultaneous co-delivery of hexaconazole and dazomet from their chitosan nanoparticles
title Enhanced fungicidal efficacy on Ganoderma boninense by simultaneous co-delivery of hexaconazole and dazomet from their chitosan nanoparticles
title_full Enhanced fungicidal efficacy on Ganoderma boninense by simultaneous co-delivery of hexaconazole and dazomet from their chitosan nanoparticles
title_fullStr Enhanced fungicidal efficacy on Ganoderma boninense by simultaneous co-delivery of hexaconazole and dazomet from their chitosan nanoparticles
title_full_unstemmed Enhanced fungicidal efficacy on Ganoderma boninense by simultaneous co-delivery of hexaconazole and dazomet from their chitosan nanoparticles
title_short Enhanced fungicidal efficacy on Ganoderma boninense by simultaneous co-delivery of hexaconazole and dazomet from their chitosan nanoparticles
title_sort enhanced fungicidal efficacy on ganoderma boninense by simultaneous co-delivery of hexaconazole and dazomet from their chitosan nanoparticles
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9070574/
https://www.ncbi.nlm.nih.gov/pubmed/35528577
http://dx.doi.org/10.1039/c9ra05417k
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