Synthesis, characterization, and antimicrobial properties of novel double layer nanocomposite electrospun fibers for wound dressing applications

被引:91
作者
Hassiba, Alaa J. [1 ]
El Zowalaty, Mohamed E. [2 ]
Webster, Thomas J. [3 ,4 ,5 ]
Abdullah, Aboubakr M. [6 ]
Nasrallah, Gheyath K. [7 ]
Khalil, Khalil Abdelrazek [8 ]
Luyt, Adriaan S. [6 ]
Elzatahry, Ahmed A. [1 ]
机构
[1] Qatar Univ, Coll Arts & Sci, Mat Sci & Technol Program, Doha 2713, Qatar
[2] Univ KwaZulu Natal, Sch Hlth Sci, Durban, South Africa
[3] Northeastern Univ, Dept Chem Engn, Boston, MA 02115 USA
[4] Northeastern Univ, Dept Bioengn, Boston, MA 02115 USA
[5] King Abdulaziz Univ, Ctr Excellence Adv Mat Res, Jeddah, Saudi Arabia
[6] Qatar Univ, Ctr Adv Mat, Doha, Qatar
[7] Qatar Univ, Biomed Res Ctr, Coll Hlth Sci, Dept Biomed Sci, Doha, Qatar
[8] Univ Sharjah, Dept Mech Engn, Coll Engn, Sharjah, U Arab Emirates
关键词
nanomaterials; wound dressing; nanofibers; electrospinning; biomedical; antimicrobial; activity; SILVER NANOPARTICLES; FTIR-SPECTROSCOPY; CHITOSAN; NANOFIBERS; MATS; CHLORHEXIDINE; SCAFFOLDS; MEMBRANES; MATRICES; RELEASE;
D O I
10.2147/IJN.S123417
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Herein, novel hybrid nanomaterials were developed for wound dressing applications with antimicrobial properties. Electrospinning was used to fabricate a double layer nanocomposite nanofibrous mat consisting of an upper layer of poly(vinyl alcohol) and chitosan loaded with silver nanoparticles (AgNPs) and a lower layer of polyethylene oxide (PEO) or polyvinylpyrrolidone (PVP) nanofibers loaded with chlorhexidine (as an antiseptic). The top layer containing AgNPs, whose purpose was to protect the wound site against environmental germ invasion, was prepared by reducing silver nitrate to its nanoparticulate form through interaction with chitosan. The lower layer, which would be in direct contact with the injured site, contained the antibiotic drug needed to avoid wound infections which would otherwise interfere with the healing process. Initially, the upper layer was electrospun, followed sequentially by electrospinning the second layer, creating a bilayer nanofibrous mat. The morphology of the nanofibrous mats was studied by scanning electron microscopy and transmission electron microscopy, showing successful nanofiber production. X-ray diffraction confirmed the reduction of silver nitrate to AgNPs. Fourier transform infrared spectroscopy showed a successful incorporation of the material used in the produced nanofibrous mats. Thermal studies carried out by thermogravimetric analysis indicated that the PVP-drug-loaded layer had the highest thermal stability in comparison to other fabricated nanofibrous mats. Antimicrobial activities of the as-synthesized nanofibrous mats against Staphylococcus aureus, Escherichia coli, Pseudomonas aeruginosa, and Candida albicans were determined using disk diffusion method. The results indicated that the PEO-drug-loaded mat had the highest antibacterial activity, warranting further attention for numerous wound-healing applications.
引用
收藏
页码:2205 / 2213
页数:9
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