Wound Coating Collagen-Based Composites with Ag Nanoparticles: Synthesis, Structure and Biological Activity

被引:6
|
作者
Vasil'kov, Alexander [1 ]
Tseomashko, Natalya [2 ]
Tretyakova, Anastasia [1 ]
Abidova, Aziza [2 ]
Butenko, Ivan [1 ,3 ]
Pereyaslavtsev, Alexander [4 ]
Arkharova, Natalia [5 ]
Volkov, Vladimir [5 ]
Shtykova, Eleonora [5 ]
机构
[1] RAS, AN Nesmeyanov Inst Organoelement Cpds, Moscow 119991, Russia
[2] Tashkent Med Acad, Dept Interuniv Res Lab, Tashkent 100109, Uzbekistan
[3] GF Gause Inst New Antibiot, Moscow 119021, Russia
[4] Dukhov Automat Res Inst, Moscow 127030, Russia
[5] FSRC Crystallog & Photon RAS, Shubnikov Inst Crystallog, Moscow 119333, Russia
关键词
wound coatings; collagen; silver nanoparticles; metal-vapor synthesis; antimicrobial activity; SILVER NANOPARTICLES; GREEN SYNTHESIS; BACTERIAL CELLULOSE; CORE-SHELL; CHITOSAN; EXTRACT; XPS; AU;
D O I
10.3390/coatings13081315
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The search for materials for a new generation of wound coatings is important due to the increase in antibiotic-resistant microorganisms and the number of patients with untreatable chronic purulent wounds. Metal nanoparticles, specifically silver nanoparticles, have antimicrobial activity and do not induce known bacterial resistance. To obtain new Ag-containing nanocomposites, type I collagen was extracted by an enzyme-acid method from cattle tendons. Silver nanoparticles were obtained by an environmentally safe method, metal-vapor synthesis (MVS), which enables obtaining metal nanoparticles without impurities. For this, metal vapors were cocondensed in a vacuum of 10(-2) Pa on the walls of a quartz reactor cooled to 77 K using acetone as an organic dispersion medium. The composition of the collagen surface was determined by XPS using the spectra of C1s, N1s, and O1s. The presence of a peak with a binding energy of approximately 368.57 eV in the Ag 3d(5/2) spectrum indicates the state of Ag-0 silver atoms in the nanocomposite. SEM images showed that collagen contributes to the effective stabilization of Ag nanoparticles with an average size of 13.0 +/- 3.5 nm. It was found that collagen is non-toxic and biocompatible with skin cells and fibroblasts. The collagen-Ag nanoparticle nanocomposites exhibited antimicrobial activity against bacteria Bacillus subtilis, Escherichia coli, and fungi Aspergillus niger.
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页数:16
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