Fabrication and characterization of antimicrobial wound dressing nanofibrous materials by PVA-betel leaf extract
This present study involves the formation and investigation of the characteristics of a fabricated mat from a PVA-betel leaf mixture. Under ideal processing parameters, nanofibrous mat is synthesized from the PVA-betel leaf blended solution by using the electrospinning technique. Afterwards, the pro...
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Format: | Article |
Language: | English |
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Elsevier
2023-07-01
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Series: | Heliyon |
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Online Access: | http://www.sciencedirect.com/science/article/pii/S2405844023051691 |
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author | Md. Washim Akram Mohammad Mohsin Ul Hoque Md. Sumon Miah Md. Abdus Shahid Md. Firoz Hossain Sayed Hasan Mahmud |
author_facet | Md. Washim Akram Mohammad Mohsin Ul Hoque Md. Sumon Miah Md. Abdus Shahid Md. Firoz Hossain Sayed Hasan Mahmud |
author_sort | Md. Washim Akram |
collection | DOAJ |
description | This present study involves the formation and investigation of the characteristics of a fabricated mat from a PVA-betel leaf mixture. Under ideal processing parameters, nanofibrous mat is synthesized from the PVA-betel leaf blended solution by using the electrospinning technique. Afterwards, the produced nanofibrous mat is assessed for its thermal, antibacterial, morphological, moisture management and chemical interaction behavior using thermogravimetric analysis (TGA), antibacterial assay, scanning electron microscope (SEM), moisture management tester (MMT) and Fourier-transform infrared spectroscopy (FTIR) respectively. The antibacterial action against Staphylococcus aureus and Escherichia coli bacteria has been assessed using the agar diffusion technique, which reveals the creation of zones of inhibition with a value of about 20 mm. Besides, the fabricated nanomat reveals an average diameter of 183.4 nm with improved moisture and thermal characteristics. Furthermore, the generated nanofibrous mat has all the necessary components, as evidenced by the distinctive peaks in the FTIR spectra. Hence, the recently developed nanofibrous mat exhibits promising potential as a suitable material for wound dressing applications. |
first_indexed | 2024-03-12T21:37:45Z |
format | Article |
id | doaj.art-affb864fde164d858c4a3295c4330709 |
institution | Directory Open Access Journal |
issn | 2405-8440 |
language | English |
last_indexed | 2024-03-12T21:37:45Z |
publishDate | 2023-07-01 |
publisher | Elsevier |
record_format | Article |
series | Heliyon |
spelling | doaj.art-affb864fde164d858c4a3295c43307092023-07-27T05:58:04ZengElsevierHeliyon2405-84402023-07-0197e17961Fabrication and characterization of antimicrobial wound dressing nanofibrous materials by PVA-betel leaf extractMd. Washim Akram0Mohammad Mohsin Ul Hoque1Md. Sumon Miah2Md. Abdus Shahid3Md. Firoz Hossain4Sayed Hasan Mahmud5Department of Textile Engineering, National Institute of Textile Engineering & Research (NITER), Nayarhat, Savar, Dhaka, Bangladesh; Department of Textile Engineering, Dhaka University of Engineering & Technology (DUET), Gazipur, Dhaka, BangladeshDepartment of Textile Engineering, National Institute of Textile Engineering & Research (NITER), Nayarhat, Savar, Dhaka, BangladeshDepartment of Textile Engineering, Dhaka University of Engineering & Technology (DUET), Gazipur, Dhaka, BangladeshDepartment of Textile Engineering, Dhaka University of Engineering & Technology (DUET), Gazipur, Dhaka, BangladeshDepartment of Textile Engineering, Dhaka University of Engineering & Technology (DUET), Gazipur, Dhaka, BangladeshDepartment of Textile Engineering, National Institute of Textile Engineering & Research (NITER), Nayarhat, Savar, Dhaka, Bangladesh; Corresponding author.This present study involves the formation and investigation of the characteristics of a fabricated mat from a PVA-betel leaf mixture. Under ideal processing parameters, nanofibrous mat is synthesized from the PVA-betel leaf blended solution by using the electrospinning technique. Afterwards, the produced nanofibrous mat is assessed for its thermal, antibacterial, morphological, moisture management and chemical interaction behavior using thermogravimetric analysis (TGA), antibacterial assay, scanning electron microscope (SEM), moisture management tester (MMT) and Fourier-transform infrared spectroscopy (FTIR) respectively. The antibacterial action against Staphylococcus aureus and Escherichia coli bacteria has been assessed using the agar diffusion technique, which reveals the creation of zones of inhibition with a value of about 20 mm. Besides, the fabricated nanomat reveals an average diameter of 183.4 nm with improved moisture and thermal characteristics. Furthermore, the generated nanofibrous mat has all the necessary components, as evidenced by the distinctive peaks in the FTIR spectra. Hence, the recently developed nanofibrous mat exhibits promising potential as a suitable material for wound dressing applications.http://www.sciencedirect.com/science/article/pii/S2405844023051691Antibacterial assayBetel leafElectrospinningNanomatWound healing |
spellingShingle | Md. Washim Akram Mohammad Mohsin Ul Hoque Md. Sumon Miah Md. Abdus Shahid Md. Firoz Hossain Sayed Hasan Mahmud Fabrication and characterization of antimicrobial wound dressing nanofibrous materials by PVA-betel leaf extract Heliyon Antibacterial assay Betel leaf Electrospinning Nanomat Wound healing |
title | Fabrication and characterization of antimicrobial wound dressing nanofibrous materials by PVA-betel leaf extract |
title_full | Fabrication and characterization of antimicrobial wound dressing nanofibrous materials by PVA-betel leaf extract |
title_fullStr | Fabrication and characterization of antimicrobial wound dressing nanofibrous materials by PVA-betel leaf extract |
title_full_unstemmed | Fabrication and characterization of antimicrobial wound dressing nanofibrous materials by PVA-betel leaf extract |
title_short | Fabrication and characterization of antimicrobial wound dressing nanofibrous materials by PVA-betel leaf extract |
title_sort | fabrication and characterization of antimicrobial wound dressing nanofibrous materials by pva betel leaf extract |
topic | Antibacterial assay Betel leaf Electrospinning Nanomat Wound healing |
url | http://www.sciencedirect.com/science/article/pii/S2405844023051691 |
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