Investigation of antimicrobial activity of polymeric nanofibers using henna additive

Main agent orange-red coloured pigment of henna is a molecule called Lawson which is responsible for anti-microbial, anti-tumor, anti-inflammatory and analgesic activity. Chitosan is a biopolymer with high strength, biocom-patibility and biodegradability, non-toxicity and antimicrobial properties. E...

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Main Authors: Zahra Sadat Mirei, Minoo Sadri, Ali Salimi
Format: Article
Language:English
Published: Kharazmi University 2016-12-01
Series:یافته‌های نوین در علوم زیستی
Subjects:
Online Access:http://nbr.khu.ac.ir/browse.php?a_code=A-10-81-19&slc_lang=en&sid=1
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spelling doaj-a41183374abf475ebc2a05e72807b2b52020-11-24T21:58:19ZengKharazmi Universityیافته‌های نوین در علوم زیستی2423-63302476-71152016-12-0133210217Investigation of antimicrobial activity of polymeric nanofibers using henna additiveZahra Sadat Mirei0Minoo Sadri1Ali Salimi2 Main agent orange-red coloured pigment of henna is a molecule called Lawson which is responsible for anti-microbial, anti-tumor, anti-inflammatory and analgesic activity. Chitosan is a biopolymer with high strength, biocom-patibility and biodegradability, non-toxicity and antimicrobial properties. Electrospinning is a method of producing su-bmicron polymeric fibers with high porosity and high surface/volume ratio. In this study, electrospinning of chitos-an/polyethylene oxide (Chit/PEO) nanofibers with the addition of henna extract to create nanofibers with antimicrobial properties were examined. Nanofibers was constructed by electrospinning of polymeric solution with proper size and si-ze distribution of Chit/PEO with a ratio 90/10. Then, Lawsonia inermis (henna) extract as an additive to Chit/PEO co-polymer was added and electrospined on the surface. After characterization of nanofibers using SEM, the antimicrobial properties of polymeric solution and nanofibers were investigated. The scanning electron micrographs showed that Ch-it/PEO nanofibres with a low percentage of henna extract have suitable diameters and size distribution similar to Ch-it/PEO nanofibres without adding extract. In bacteriological studies, it was found that chitosan polymer solutions cont-aining 1% of henna extract has bactericidal properties against Staphylococcus aureus, Escherichia coli and Pseudo-monas aeruginosa bacteries better than polymer chitosan solution without adding the extract.http://nbr.khu.ac.ir/browse.php?a_code=A-10-81-19&slc_lang=en&sid=1electro-spinningchitosanpolyethylene oxidelawsonantibacterial effect
collection DOAJ
language English
format Article
sources DOAJ
author Zahra Sadat Mirei
Minoo Sadri
Ali Salimi
spellingShingle Zahra Sadat Mirei
Minoo Sadri
Ali Salimi
Investigation of antimicrobial activity of polymeric nanofibers using henna additive
یافته‌های نوین در علوم زیستی
electro-spinning
chitosan
polyethylene oxide
lawson
antibacterial effect
author_facet Zahra Sadat Mirei
Minoo Sadri
Ali Salimi
author_sort Zahra Sadat Mirei
title Investigation of antimicrobial activity of polymeric nanofibers using henna additive
title_short Investigation of antimicrobial activity of polymeric nanofibers using henna additive
title_full Investigation of antimicrobial activity of polymeric nanofibers using henna additive
title_fullStr Investigation of antimicrobial activity of polymeric nanofibers using henna additive
title_full_unstemmed Investigation of antimicrobial activity of polymeric nanofibers using henna additive
title_sort investigation of antimicrobial activity of polymeric nanofibers using henna additive
publisher Kharazmi University
series یافته‌های نوین در علوم زیستی
issn 2423-6330
2476-7115
publishDate 2016-12-01
description Main agent orange-red coloured pigment of henna is a molecule called Lawson which is responsible for anti-microbial, anti-tumor, anti-inflammatory and analgesic activity. Chitosan is a biopolymer with high strength, biocom-patibility and biodegradability, non-toxicity and antimicrobial properties. Electrospinning is a method of producing su-bmicron polymeric fibers with high porosity and high surface/volume ratio. In this study, electrospinning of chitos-an/polyethylene oxide (Chit/PEO) nanofibers with the addition of henna extract to create nanofibers with antimicrobial properties were examined. Nanofibers was constructed by electrospinning of polymeric solution with proper size and si-ze distribution of Chit/PEO with a ratio 90/10. Then, Lawsonia inermis (henna) extract as an additive to Chit/PEO co-polymer was added and electrospined on the surface. After characterization of nanofibers using SEM, the antimicrobial properties of polymeric solution and nanofibers were investigated. The scanning electron micrographs showed that Ch-it/PEO nanofibres with a low percentage of henna extract have suitable diameters and size distribution similar to Ch-it/PEO nanofibres without adding extract. In bacteriological studies, it was found that chitosan polymer solutions cont-aining 1% of henna extract has bactericidal properties against Staphylococcus aureus, Escherichia coli and Pseudo-monas aeruginosa bacteries better than polymer chitosan solution without adding the extract.
topic electro-spinning
chitosan
polyethylene oxide
lawson
antibacterial effect
url http://nbr.khu.ac.ir/browse.php?a_code=A-10-81-19&slc_lang=en&sid=1
work_keys_str_mv AT zahrasadatmirei investigationofantimicrobialactivityofpolymericnanofibersusinghennaadditive
AT minoosadri investigationofantimicrobialactivityofpolymericnanofibersusinghennaadditive
AT alisalimi investigationofantimicrobialactivityofpolymericnanofibersusinghennaadditive
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