study the effect of silver nanoparticles against to biofilm in listeria monocytogenes

Listeria monocytogenes has been isolated from many foods and may cause meningitis, septicemia and abortion in pregnant women. L. monocytogenes forms biofilm on many food contact surface materials and medical devices. Biofilm formation by this bacterium on many surfaces, is one of the most important...

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Main Authors: razieh ahmadinasab, soheil Aghaei, Mohammad Ali Gasemzadeh
Format: Article
Language:fas
Published: Qom Islamic Azad University 2019-02-01
Series:بیولوژی کاربردی
Subjects:
Online Access:https://sjoapb.qom.iau.ir/article_545624_bcc221c78c3527c2ecdecb7e21dcb461.pdf
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author razieh ahmadinasab
soheil Aghaei
Mohammad Ali Gasemzadeh
author_facet razieh ahmadinasab
soheil Aghaei
Mohammad Ali Gasemzadeh
author_sort razieh ahmadinasab
collection DOAJ
description Listeria monocytogenes has been isolated from many foods and may cause meningitis, septicemia and abortion in pregnant women. L. monocytogenes forms biofilm on many food contact surface materials and medical devices. Biofilm formation by this bacterium on many surfaces, is one of the most important problems in the food industry. Metal nanoparticles are effective antimicrobial compounds for controlling and removing of bacterial biofilms from non-biomaterial surfaces. The main purpose of this investigation was synthesis of silver iodide nanoparticles in-vitro condition and evaluation of their antimicrobial properties for inhibition of biofilm formation and biofilm eradication of Listeria monocytogenes(ATCC1298). Method: In this study nano-particles of silver iodide were synthesized respectively sonochemically and were confirmed using UV-Vis ,FTIR, EDX and Scanning Electron Microscopic procedures. Antimicrobial and antibiofilm properties of synthesized nanoparticles were determined using agar well diffusion and 96 well microplate dilution methods respectively. Results: Synthesized Silver nanoparticles had circular structure with 30 nm size. Antibiofilm activity and biofilm eradication of Iodide silver nanoparticles were obtained at 5 and 100 µg/ml respectively. Discussion: Based on obtained results, silver iodide nanoparticles can be used as the effective antimicrobial agents for inhibiting of biofilm formation of Listeria monocytogenes in the food industry.
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spelling doaj.art-34443cd476bd469698efe2a0ac70e01a2023-07-17T14:59:31ZfasQom Islamic Azad Universityبیولوژی کاربردی2538-34342019-02-01832112545624study the effect of silver nanoparticles against to biofilm in listeria monocytogenesrazieh ahmadinasab0soheil Aghaei1Mohammad Ali Gasemzadeh2microbiologi, university of qom, iranگروه میکروب شناسی، دانشکده علوم پایه، واحد قم، دانشگاه آزاد اسلامی، قم، ایران3Department of Applied Chemistry, Faculty of Chemistry, Islamic Azad University, Qom, Iran.Listeria monocytogenes has been isolated from many foods and may cause meningitis, septicemia and abortion in pregnant women. L. monocytogenes forms biofilm on many food contact surface materials and medical devices. Biofilm formation by this bacterium on many surfaces, is one of the most important problems in the food industry. Metal nanoparticles are effective antimicrobial compounds for controlling and removing of bacterial biofilms from non-biomaterial surfaces. The main purpose of this investigation was synthesis of silver iodide nanoparticles in-vitro condition and evaluation of their antimicrobial properties for inhibition of biofilm formation and biofilm eradication of Listeria monocytogenes(ATCC1298). Method: In this study nano-particles of silver iodide were synthesized respectively sonochemically and were confirmed using UV-Vis ,FTIR, EDX and Scanning Electron Microscopic procedures. Antimicrobial and antibiofilm properties of synthesized nanoparticles were determined using agar well diffusion and 96 well microplate dilution methods respectively. Results: Synthesized Silver nanoparticles had circular structure with 30 nm size. Antibiofilm activity and biofilm eradication of Iodide silver nanoparticles were obtained at 5 and 100 µg/ml respectively. Discussion: Based on obtained results, silver iodide nanoparticles can be used as the effective antimicrobial agents for inhibiting of biofilm formation of Listeria monocytogenes in the food industry.https://sjoapb.qom.iau.ir/article_545624_bcc221c78c3527c2ecdecb7e21dcb461.pdflisteria monocytogenessilver nanoparticlesantibiofilmantimicrobial activity
spellingShingle razieh ahmadinasab
soheil Aghaei
Mohammad Ali Gasemzadeh
study the effect of silver nanoparticles against to biofilm in listeria monocytogenes
بیولوژی کاربردی
listeria monocytogenes
silver nanoparticles
antibiofilm
antimicrobial activity
title study the effect of silver nanoparticles against to biofilm in listeria monocytogenes
title_full study the effect of silver nanoparticles against to biofilm in listeria monocytogenes
title_fullStr study the effect of silver nanoparticles against to biofilm in listeria monocytogenes
title_full_unstemmed study the effect of silver nanoparticles against to biofilm in listeria monocytogenes
title_short study the effect of silver nanoparticles against to biofilm in listeria monocytogenes
title_sort study the effect of silver nanoparticles against to biofilm in listeria monocytogenes
topic listeria monocytogenes
silver nanoparticles
antibiofilm
antimicrobial activity
url https://sjoapb.qom.iau.ir/article_545624_bcc221c78c3527c2ecdecb7e21dcb461.pdf
work_keys_str_mv AT raziehahmadinasab studytheeffectofsilvernanoparticlesagainsttobiofilminlisteriamonocytogenes
AT soheilaghaei studytheeffectofsilvernanoparticlesagainsttobiofilminlisteriamonocytogenes
AT mohammadaligasemzadeh studytheeffectofsilvernanoparticlesagainsttobiofilminlisteriamonocytogenes