Prepration and characterization of Cu-. Fe-, Ag-, Zn- and Ni-doped gelatin nanofibers for possible appliactions in antibacterial nanomedicine
A facile and efficient approach to prepare metal nanoparticles doped electrospun gelatin from metal salts precursors was successfully developed. The incorporation of metal ions with antimicrobial activity into electrospun gelatin (Ge-espun) is an attractive approach to control the inflammatory react...
Saved in:
Main Authors: | , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Taylor's University
2017
|
Online Access: | http://psasir.upm.edu.my/id/eprint/62834/1/Prepration%20and%20characterization%20of%20Cu.pdf http://psasir.upm.edu.my/id/eprint/62834/ https://jestec.taylors.edu.my/Special%20Issue%20eureca%202015_2/eureca5_paper%205.pdf |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
Institution: | Universiti Putra Malaysia |
Language: | English |
id |
my.upm.eprints.62834 |
---|---|
record_format |
eprints |
spelling |
my.upm.eprints.628342022-11-10T07:06:10Z http://psasir.upm.edu.my/id/eprint/62834/ Prepration and characterization of Cu-. Fe-, Ag-, Zn- and Ni-doped gelatin nanofibers for possible appliactions in antibacterial nanomedicine Nuge, Tamrin Tshai, Kim Yeow Lim, Siew Shee Nordin, Norshariza Hoque, Md. Enamul A facile and efficient approach to prepare metal nanoparticles doped electrospun gelatin from metal salts precursors was successfully developed. The incorporation of metal ions with antimicrobial activity into electrospun gelatin (Ge-espun) is an attractive approach to control the inflammatory reaction and prevent infection in wound. In this study, metal salts precursors AgNO 3 , Fe(NO 3) 3 .9H 2 O, Cu(NO 3) 2 .3H 2 O, Zn(NO 3) 2 .6H 2 O and Ni(NO 3) 2 .6H 2 O were reduced to metal nanoparticles with acetic acid as solvent and reducing agent. The agglomeration of nanoparticles was inhibited by the gelatin polymer matrix. Electrospinning of both neat Ge-espun and metal-nanoparticles/Ge-espun resulted in the formation of smooth fibres with average diameters of ~280nm and ~40nm-150nm, respectively. The efficacy of metal nanoparticles/Ge-espun against bacteria commonly found on wounds was tested with different metal loading by measuring the inhibition of colony forming units. The results indicated a broad spectrum of antibacterial activity showed by Ag/Ge-espun, followed by Fe/Ge-espun and Zn/Ge-espun. An interesting finding on the efficacy of Cu/Ge-espun and Fe/Ge-espun against the Gram's positive bacteria is worth exploring to further investigate the potential application of metal-based antibiotics against the antibiotic-resistant bacterial strains. Taylor's University 2017-03 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/62834/1/Prepration%20and%20characterization%20of%20Cu.pdf Nuge, Tamrin and Tshai, Kim Yeow and Lim, Siew Shee and Nordin, Norshariza and Hoque, Md. Enamul (2017) Prepration and characterization of Cu-. Fe-, Ag-, Zn- and Ni-doped gelatin nanofibers for possible appliactions in antibacterial nanomedicine. Journal of Engineering Science and Technology, spec. 1. 68 - 81. ISSN 1823-4690 https://jestec.taylors.edu.my/Special%20Issue%20eureca%202015_2/eureca5_paper%205.pdf |
institution |
Universiti Putra Malaysia |
building |
UPM Library |
collection |
Institutional Repository |
continent |
Asia |
country |
Malaysia |
content_provider |
Universiti Putra Malaysia |
content_source |
UPM Institutional Repository |
url_provider |
http://psasir.upm.edu.my/ |
language |
English |
description |
A facile and efficient approach to prepare metal nanoparticles doped electrospun gelatin from metal salts precursors was successfully developed. The incorporation of metal ions with antimicrobial activity into electrospun gelatin (Ge-espun) is an attractive approach to control the inflammatory reaction and prevent infection in wound. In this study, metal salts precursors AgNO 3 , Fe(NO 3) 3 .9H 2 O, Cu(NO 3) 2 .3H 2 O, Zn(NO 3) 2 .6H 2 O and Ni(NO 3) 2 .6H 2 O were reduced to metal nanoparticles with acetic acid as solvent and reducing agent. The agglomeration of nanoparticles was inhibited by the gelatin polymer matrix. Electrospinning of both neat Ge-espun and metal-nanoparticles/Ge-espun resulted in the formation of smooth fibres with average diameters of ~280nm and ~40nm-150nm, respectively. The efficacy of metal nanoparticles/Ge-espun against bacteria commonly found on wounds was tested with different metal loading by measuring the inhibition of colony forming units. The results indicated a broad spectrum of antibacterial activity showed by Ag/Ge-espun, followed by Fe/Ge-espun and Zn/Ge-espun. An interesting finding on the efficacy of Cu/Ge-espun and Fe/Ge-espun against the Gram's positive bacteria is worth exploring to further investigate the potential application of metal-based antibiotics against the antibiotic-resistant bacterial strains. |
format |
Article |
author |
Nuge, Tamrin Tshai, Kim Yeow Lim, Siew Shee Nordin, Norshariza Hoque, Md. Enamul |
spellingShingle |
Nuge, Tamrin Tshai, Kim Yeow Lim, Siew Shee Nordin, Norshariza Hoque, Md. Enamul Prepration and characterization of Cu-. Fe-, Ag-, Zn- and Ni-doped gelatin nanofibers for possible appliactions in antibacterial nanomedicine |
author_facet |
Nuge, Tamrin Tshai, Kim Yeow Lim, Siew Shee Nordin, Norshariza Hoque, Md. Enamul |
author_sort |
Nuge, Tamrin |
title |
Prepration and characterization of Cu-. Fe-, Ag-, Zn- and Ni-doped gelatin nanofibers for possible appliactions in antibacterial nanomedicine |
title_short |
Prepration and characterization of Cu-. Fe-, Ag-, Zn- and Ni-doped gelatin nanofibers for possible appliactions in antibacterial nanomedicine |
title_full |
Prepration and characterization of Cu-. Fe-, Ag-, Zn- and Ni-doped gelatin nanofibers for possible appliactions in antibacterial nanomedicine |
title_fullStr |
Prepration and characterization of Cu-. Fe-, Ag-, Zn- and Ni-doped gelatin nanofibers for possible appliactions in antibacterial nanomedicine |
title_full_unstemmed |
Prepration and characterization of Cu-. Fe-, Ag-, Zn- and Ni-doped gelatin nanofibers for possible appliactions in antibacterial nanomedicine |
title_sort |
prepration and characterization of cu-. fe-, ag-, zn- and ni-doped gelatin nanofibers for possible appliactions in antibacterial nanomedicine |
publisher |
Taylor's University |
publishDate |
2017 |
url |
http://psasir.upm.edu.my/id/eprint/62834/1/Prepration%20and%20characterization%20of%20Cu.pdf http://psasir.upm.edu.my/id/eprint/62834/ https://jestec.taylors.edu.my/Special%20Issue%20eureca%202015_2/eureca5_paper%205.pdf |
_version_ |
1751538185914023936 |