Antibiofilm activity of synthesized electrospun core-shell nanofiber composites of PLA and PVA with silver nanoparticles

被引:13
作者
Alharbi, Hamad F. [1 ]
Luqman, Monis [1 ]
Khan, Shams Tabrez [2 ]
机构
[1] King Saud Univ, Mech Engn Dept, POB 800, Riyadh 11421, Saudi Arabia
[2] Aligarh Muslim Univ, Dept Agr Microbiol, Aligarh 202002, Uttar Pradesh, India
关键词
antibiofilms; silver nanoparticles; poly (lactic acid); poly (vinyl alcohol); coaxial electrospinning; IN-SITU SYNTHESIS; STRUCTURED NANOFIBERS; ALCOHOL) NANOFIBERS; DRUG-DELIVERY; ANTIBACTERIAL; FIBERS; ACID; MATS; FABRICATION; RESISTANCE;
D O I
10.1088/2053-1591/aad4df
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In recent work, we have demonstrated the significant enhancements in the mechanical, surface wetting, and cytocompatibility properties of core-shell nanofiber composites of Poly (lactic acid) (PLA) and Poly (vinyl alcohol) (PVA). This core/ shell-structured PLA/PVA nanofibers combined the hydrophilic benefits of PVA and the attractive biological properties of PLA. In this paper, we expound the antibiofilm activity of this promising coaxial nanofiber composites by incorporating silver nanoparticles on the shell layer using coaxial electrospinning technique. The morphological analysis of the coaxial nanofiber mats was carried out using scanning and transmission electron microscopy. The presence of silver nanoparticles was confirmed using x-ray diffraction (XRD) analysis. The antibiofilm activity of the synthesized core-shell nanofiber membranes loaded with silver nanoparticles were investigated against two prokaryotes, namely Pseudomonas aeruginosa (Gram negative), and Staphylococcus aureus (Gram positive) and a eukaryote (Candida albicans). The results presented in this study revealed substantial improvements in the antibiofilm activity of synthesized core-shell membranes of PLA and PVA incorporated with silver nanoparticles compared to those coaxial membranes without silver nanoparticles.
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页数:8
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共 46 条
[11]   Preparation of antimicrobial poly(vinyl alcohol) nanofibers containing silver nanoparticles [J].
Hong, Kyung Hwa ;
Park, Jong Lyoul ;
Sul, In Hwan ;
Youk, Ji Ho ;
Kang, Tae Jin .
JOURNAL OF POLYMER SCIENCE PART B-POLYMER PHYSICS, 2006, 44 (17) :2468-2474
[12]   Electrospinning of polymeric nanofibers for drug delivery applications [J].
Hu, Xiuli ;
Liu, Shi ;
Zhou, Guangyuan ;
Huang, Yubin ;
Xie, Zhigang ;
Jing, Xiabin .
JOURNAL OF CONTROLLED RELEASE, 2014, 185 :12-21
[13]   A comparative study on the morphological features of highly ordered MgO:AgO nanocube arrays prepared via a hydrothermal method [J].
Kaviyarasu, K. ;
Manikandan, E. ;
Kennedy, J. ;
Maaza, M. .
RSC ADVANCES, 2015, 5 (100) :82421-82428
[14]  
Khalil KA, 2013, INT J ELECTROCHEM SC, V8, P3483
[15]   Anti-biofilm and antibacterial activities of zinc oxide nanoparticles against the oral opportunistic pathogens Rothia dentocariosa and Rothia mucilaginosa [J].
Khan, Shams T. ;
Ahamed, Maqusood ;
Musarrat, Javed ;
Al-Khedhairy, Abdulaziz A. .
EUROPEAN JOURNAL OF ORAL SCIENCES, 2014, 122 (06) :397-403
[16]   Countering drug resistance, infectious diseases, and sepsis using metal and metal oxides nanoparticles: Current status [J].
Khan, Shams Tabrez ;
Musarrat, Javed ;
Al-Khedhairy, Abdulaziz A. .
COLLOIDS AND SURFACES B-BIOINTERFACES, 2016, 146 :70-83
[17]   Electrospinning of polylactide fibers containing silver nanoparticles [J].
Kim, Eun Seon ;
Kim, Seong Hun ;
Lee, Chang Hwan .
MACROMOLECULAR RESEARCH, 2010, 18 (03) :215-221
[18]  
Lanje A.S., 2010, J. Chem. Pharm. Res, V2, P478
[19]   One-step preparation of ultrafine poly(acrylonitrile) fibers containing silver nanoparticles [J].
Lee, HK ;
Jeong, EH ;
Baek, CK ;
Youk, JH .
MATERIALS LETTERS, 2005, 59 (23) :2977-2980
[20]   Silver nanoparticle/chitosan oligosaccharide/poly(vinyl alcohol) nanofibers as wound dressings: a preclinical study [J].
Li, Chenwen ;
Fu, Ruoqiu ;
Yu, Caiping ;
Li, Zhuoheng ;
Guan, Haiyan ;
Hu, Daqiang ;
Zhao, Dehua ;
Lu, Laichun .
INTERNATIONAL JOURNAL OF NANOMEDICINE, 2013, 8 :4131-4145