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Dual Crosslinked Ion-Based Bacterial Cellulose Composite Hydrogel Containing Polyhexamethylene Biguanide

Composite bacterial cellulose (BC) based hydrogel with alginate (A) or pectin (P) or alginate and pectin was fabricated via a physical crosslinking technique using calcium chloride (CaCl(2)) solution and incorporated with polyhexamethylene biguanide (PHMB) as an effective antimicrobial drug by immer...

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Autores principales: Chanabodeechalermrung, Baramee, Chaiwarit, Tanpong, Sommano, Sarana Rose, Rachtanapun, Pornchai, Kantrong, Nutthapong, Chittasupho, Chuda, Jantrawut, Pensak
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9505295/
https://www.ncbi.nlm.nih.gov/pubmed/36135844
http://dx.doi.org/10.3390/membranes12090825
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author Chanabodeechalermrung, Baramee
Chaiwarit, Tanpong
Sommano, Sarana Rose
Rachtanapun, Pornchai
Kantrong, Nutthapong
Chittasupho, Chuda
Jantrawut, Pensak
author_facet Chanabodeechalermrung, Baramee
Chaiwarit, Tanpong
Sommano, Sarana Rose
Rachtanapun, Pornchai
Kantrong, Nutthapong
Chittasupho, Chuda
Jantrawut, Pensak
author_sort Chanabodeechalermrung, Baramee
collection PubMed
description Composite bacterial cellulose (BC) based hydrogel with alginate (A) or pectin (P) or alginate and pectin was fabricated via a physical crosslinking technique using calcium chloride (CaCl(2)) solution and incorporated with polyhexamethylene biguanide (PHMB) as an effective antimicrobial drug by immersion method. After that, the physicochemical properties of all hydrogel formulations were characterized. The result showed that the formulations with PHMB performed better physicochemical properties than the hydrogel without PHMB. Fourier transform infrared spectroscopy (FT-IR) showed the interaction between PHMB and the carboxylic group of alginate and pectin. BC/A-PHMB hydrogel performed suitable mechanical strength, fluid uptake ability, water retention property, drug content, high integrity value, and maximum swelling degree. Moreover, in vitro cell viability of BC/A-PHMB hydrogel revealed high biocompatibility with human keratinocyte cell line (HaCaT) and demonstrated prolong released of PHMB in Tris-HCl buffer pH 7.4, while rapid release in phosphate buffer saline pH 7.4. BC/A-PHMB hydrogel demonstrated good anti-bacterial activity against S. aureus and P. aeruginosa. In conclusion, BC/A-PHMB hydrogel could be a potential dual crosslinked ion-based hydrogel for wound dressing with anti-bacterial activity.
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spelling pubmed-95052952022-09-24 Dual Crosslinked Ion-Based Bacterial Cellulose Composite Hydrogel Containing Polyhexamethylene Biguanide Chanabodeechalermrung, Baramee Chaiwarit, Tanpong Sommano, Sarana Rose Rachtanapun, Pornchai Kantrong, Nutthapong Chittasupho, Chuda Jantrawut, Pensak Membranes (Basel) Article Composite bacterial cellulose (BC) based hydrogel with alginate (A) or pectin (P) or alginate and pectin was fabricated via a physical crosslinking technique using calcium chloride (CaCl(2)) solution and incorporated with polyhexamethylene biguanide (PHMB) as an effective antimicrobial drug by immersion method. After that, the physicochemical properties of all hydrogel formulations were characterized. The result showed that the formulations with PHMB performed better physicochemical properties than the hydrogel without PHMB. Fourier transform infrared spectroscopy (FT-IR) showed the interaction between PHMB and the carboxylic group of alginate and pectin. BC/A-PHMB hydrogel performed suitable mechanical strength, fluid uptake ability, water retention property, drug content, high integrity value, and maximum swelling degree. Moreover, in vitro cell viability of BC/A-PHMB hydrogel revealed high biocompatibility with human keratinocyte cell line (HaCaT) and demonstrated prolong released of PHMB in Tris-HCl buffer pH 7.4, while rapid release in phosphate buffer saline pH 7.4. BC/A-PHMB hydrogel demonstrated good anti-bacterial activity against S. aureus and P. aeruginosa. In conclusion, BC/A-PHMB hydrogel could be a potential dual crosslinked ion-based hydrogel for wound dressing with anti-bacterial activity. MDPI 2022-08-24 /pmc/articles/PMC9505295/ /pubmed/36135844 http://dx.doi.org/10.3390/membranes12090825 Text en © 2022 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
Chanabodeechalermrung, Baramee
Chaiwarit, Tanpong
Sommano, Sarana Rose
Rachtanapun, Pornchai
Kantrong, Nutthapong
Chittasupho, Chuda
Jantrawut, Pensak
Dual Crosslinked Ion-Based Bacterial Cellulose Composite Hydrogel Containing Polyhexamethylene Biguanide
title Dual Crosslinked Ion-Based Bacterial Cellulose Composite Hydrogel Containing Polyhexamethylene Biguanide
title_full Dual Crosslinked Ion-Based Bacterial Cellulose Composite Hydrogel Containing Polyhexamethylene Biguanide
title_fullStr Dual Crosslinked Ion-Based Bacterial Cellulose Composite Hydrogel Containing Polyhexamethylene Biguanide
title_full_unstemmed Dual Crosslinked Ion-Based Bacterial Cellulose Composite Hydrogel Containing Polyhexamethylene Biguanide
title_short Dual Crosslinked Ion-Based Bacterial Cellulose Composite Hydrogel Containing Polyhexamethylene Biguanide
title_sort dual crosslinked ion-based bacterial cellulose composite hydrogel containing polyhexamethylene biguanide
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9505295/
https://www.ncbi.nlm.nih.gov/pubmed/36135844
http://dx.doi.org/10.3390/membranes12090825
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