Heteropolysaccharide of KGM-xanthan hydrogels for the removal of bacteria in a wound model

This project focused on developing polysaccharides hydrogels from Konjac Glucomannan (KGM) and Xanthan gum in removing the bacterial load on the wound. This new therapy design is due to the traditional wound care methods using antibiotics and normal hydrogel, which cannot adequately...

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Main Authors: Shahbuddin, Munira, Ahmad Raus, Raha, Yusof, Aqilah, Mahamad, Siti Syazwani
Format: Article
Language:English
Published: IIUM Press 2022
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Online Access:http://irep.iium.edu.my/106736/1/106736_Heteropolysaccharide%20of%20KGM-xanthan.pdf
http://irep.iium.edu.my/106736/
https://journals.iium.edu.my/bnrej/index.php/bnrej/article/view/73
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spelling my.iium.irep.1067362023-09-18T04:20:52Z http://irep.iium.edu.my/106736/ Heteropolysaccharide of KGM-xanthan hydrogels for the removal of bacteria in a wound model Shahbuddin, Munira Ahmad Raus, Raha Yusof, Aqilah Mahamad, Siti Syazwani QH301 Biology TP Chemical technology TP248.13 Biotechnology This project focused on developing polysaccharides hydrogels from Konjac Glucomannan (KGM) and Xanthan gum in removing the bacterial load on the wound. This new therapy design is due to the traditional wound care methods using antibiotics and normal hydrogel, which cannot adequately treat biofilm infected woundsin the healing process. For the treatment of bacterial infected wound, bacterial removal need to be done physically and manually by debridement, which is very painful and require the use of general anesthesia. Therefore, to reduce the formation of slough and necrotic tissue by the formation of bacterial biofilm, there is a need for specific hydrogels that will be able to remove bacteria from the wounded site to prevent further infection and to enhance the healing process. This study focused on the design and optimization of polysaccharide based hydrogels for the wound treatment. Polysaccharide based hydrogels from Konjac Glucomannan (KGM) and Xanthan gum were developed at different ratios to optimize the physical and chemical properties of the hydrogel that relate to the effectiveness of bacterial removal. Film casting technique was used in the development of the hydrogel film. Konjac Glucomannan (KGM) and Xanthan gum were selected because of their natural polymer properties which are non–toxic, biocompatible and safe to be used. The hydrogels weretested in vitro for bacterial removal efficacy, using E.coli species colonies cultured on a gel inside a petri dish to represent the condition of bacteria infested wound bed. Hydrogel with 50 : 50 % composition blend of KGM-XG was found to be the most effective in the removal of E.coli colonies with 13x103 CFU/mL at 95% water content. Morphological studies of hydrogels showed flat interfacial morphologies, except for the sample with 100% of Xanthan without KGM. The results present in this study suggested that the biological activities and adhesion of the hydrogels were not controlled only by the chemical structure but also by the composition of the compound and the amount of water present in the hydrogels. IIUM Press 2022-12-31 Article PeerReviewed application/pdf en http://irep.iium.edu.my/106736/1/106736_Heteropolysaccharide%20of%20KGM-xanthan.pdf Shahbuddin, Munira and Ahmad Raus, Raha and Yusof, Aqilah and Mahamad, Siti Syazwani (2022) Heteropolysaccharide of KGM-xanthan hydrogels for the removal of bacteria in a wound model. Biological and Natural Resources Engineering Journal, 6 (2). pp. 8-18. E-ISSN 2637-0719 https://journals.iium.edu.my/bnrej/index.php/bnrej/article/view/73
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
topic QH301 Biology
TP Chemical technology
TP248.13 Biotechnology
spellingShingle QH301 Biology
TP Chemical technology
TP248.13 Biotechnology
Shahbuddin, Munira
Ahmad Raus, Raha
Yusof, Aqilah
Mahamad, Siti Syazwani
Heteropolysaccharide of KGM-xanthan hydrogels for the removal of bacteria in a wound model
description This project focused on developing polysaccharides hydrogels from Konjac Glucomannan (KGM) and Xanthan gum in removing the bacterial load on the wound. This new therapy design is due to the traditional wound care methods using antibiotics and normal hydrogel, which cannot adequately treat biofilm infected woundsin the healing process. For the treatment of bacterial infected wound, bacterial removal need to be done physically and manually by debridement, which is very painful and require the use of general anesthesia. Therefore, to reduce the formation of slough and necrotic tissue by the formation of bacterial biofilm, there is a need for specific hydrogels that will be able to remove bacteria from the wounded site to prevent further infection and to enhance the healing process. This study focused on the design and optimization of polysaccharide based hydrogels for the wound treatment. Polysaccharide based hydrogels from Konjac Glucomannan (KGM) and Xanthan gum were developed at different ratios to optimize the physical and chemical properties of the hydrogel that relate to the effectiveness of bacterial removal. Film casting technique was used in the development of the hydrogel film. Konjac Glucomannan (KGM) and Xanthan gum were selected because of their natural polymer properties which are non–toxic, biocompatible and safe to be used. The hydrogels weretested in vitro for bacterial removal efficacy, using E.coli species colonies cultured on a gel inside a petri dish to represent the condition of bacteria infested wound bed. Hydrogel with 50 : 50 % composition blend of KGM-XG was found to be the most effective in the removal of E.coli colonies with 13x103 CFU/mL at 95% water content. Morphological studies of hydrogels showed flat interfacial morphologies, except for the sample with 100% of Xanthan without KGM. The results present in this study suggested that the biological activities and adhesion of the hydrogels were not controlled only by the chemical structure but also by the composition of the compound and the amount of water present in the hydrogels.
format Article
author Shahbuddin, Munira
Ahmad Raus, Raha
Yusof, Aqilah
Mahamad, Siti Syazwani
author_facet Shahbuddin, Munira
Ahmad Raus, Raha
Yusof, Aqilah
Mahamad, Siti Syazwani
author_sort Shahbuddin, Munira
title Heteropolysaccharide of KGM-xanthan hydrogels for the removal of bacteria in a wound model
title_short Heteropolysaccharide of KGM-xanthan hydrogels for the removal of bacteria in a wound model
title_full Heteropolysaccharide of KGM-xanthan hydrogels for the removal of bacteria in a wound model
title_fullStr Heteropolysaccharide of KGM-xanthan hydrogels for the removal of bacteria in a wound model
title_full_unstemmed Heteropolysaccharide of KGM-xanthan hydrogels for the removal of bacteria in a wound model
title_sort heteropolysaccharide of kgm-xanthan hydrogels for the removal of bacteria in a wound model
publisher IIUM Press
publishDate 2022
url http://irep.iium.edu.my/106736/1/106736_Heteropolysaccharide%20of%20KGM-xanthan.pdf
http://irep.iium.edu.my/106736/
https://journals.iium.edu.my/bnrej/index.php/bnrej/article/view/73
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score 13.209306