Matches in SemOpenAlex for { <https://semopenalex.org/work/W2732241495> ?p ?o ?g. }
- W2732241495 endingPage "121" @default.
- W2732241495 startingPage "112" @default.
- W2732241495 abstract "Abstract The present study focused on the synthesis of chitosan–silver nanocomposite films (CSNFs) due to their potential application in various domains including wound dressing, packaging and water purification. Silver nanoparticles (Ag NPs) were generated in-situ by using UV-irradiation and chitosan (CS) as both reductant and stabilizer. FTIR spectra revealed that the primary amine and amide groups of chitosan have specific interactions with nanoparticles surface. The diameter of AgNPs ranged from 170 to 200 nm as determined by DLS and TEM observation. Furthermore, CSNFs were tested for their biological activities and results showed higher antioxidant and antibacterial activities than chitosan film, which increased with AgNPs amount, suggesting that surface structures of chitosan strongly influence the adsorption of AgNPs and the antimicrobial activities. These observations indicate that nanocomposite films have potential applications as anti-infectious wound dressing. Many studies reported the toxicity of AgNPs and their health and environmental risks. For that purpose, cytotoxicity of CS–AgNPs was performed by MTT assay on Chinese hamster ovary R(CHO-K1) cell lines. Results showed that CS–AgNPs have no-cytotoxicity effect, which suggests the possibility of CS–AgNPs uses in foods and biomedical applications." @default.
- W2732241495 created "2017-07-14" @default.
- W2732241495 creator A5034572707 @default.
- W2732241495 creator A5040979134 @default.
- W2732241495 creator A5051768474 @default.
- W2732241495 creator A5062530455 @default.
- W2732241495 creator A5066109185 @default.
- W2732241495 creator A5072111279 @default.
- W2732241495 creator A5076721237 @default.
- W2732241495 date "2017-10-01" @default.
- W2732241495 modified "2023-10-17" @default.
- W2732241495 title "Nanocomposite films based on chitosan–poly(vinyl alcohol) and silver nanoparticles with high antibacterial and antioxidant activities" @default.
- W2732241495 cites W1560602080 @default.
- W2732241495 cites W1965664692 @default.
- W2732241495 cites W1975865132 @default.
- W2732241495 cites W1978020780 @default.
- W2732241495 cites W1978108133 @default.
- W2732241495 cites W1979341620 @default.
- W2732241495 cites W1983266331 @default.
- W2732241495 cites W1985614089 @default.
- W2732241495 cites W1986235487 @default.
- W2732241495 cites W1987513865 @default.
- W2732241495 cites W1987936778 @default.
- W2732241495 cites W1988612647 @default.
- W2732241495 cites W2003848126 @default.
- W2732241495 cites W2017203620 @default.
- W2732241495 cites W2018295448 @default.
- W2732241495 cites W2018858159 @default.
- W2732241495 cites W2019421518 @default.
- W2732241495 cites W2028579939 @default.
- W2732241495 cites W2030008492 @default.
- W2732241495 cites W2030146796 @default.
- W2732241495 cites W2033414954 @default.
- W2732241495 cites W2035275359 @default.
- W2732241495 cites W2039181209 @default.
- W2732241495 cites W2039795492 @default.
- W2732241495 cites W2039937262 @default.
- W2732241495 cites W2043540555 @default.
- W2732241495 cites W2057945718 @default.
- W2732241495 cites W2065257131 @default.
- W2732241495 cites W2067809826 @default.
- W2732241495 cites W2068217445 @default.
- W2732241495 cites W2069821890 @default.
- W2732241495 cites W2079770446 @default.
- W2732241495 cites W2083308882 @default.
- W2732241495 cites W2086921669 @default.
- W2732241495 cites W2087450567 @default.
- W2732241495 cites W2089797696 @default.
- W2732241495 cites W2093791661 @default.
- W2732241495 cites W2105982666 @default.
- W2732241495 cites W2106068311 @default.
- W2732241495 cites W2111836708 @default.
- W2732241495 cites W2123257772 @default.
- W2732241495 cites W2126661658 @default.
- W2732241495 cites W2146482929 @default.
- W2732241495 cites W2156122171 @default.
- W2732241495 cites W2167077438 @default.
- W2732241495 cites W2216493185 @default.
- W2732241495 cites W2283716478 @default.
- W2732241495 cites W2330522692 @default.
- W2732241495 cites W2337988742 @default.
- W2732241495 cites W2594115110 @default.
- W2732241495 doi "https://doi.org/10.1016/j.psep.2017.06.018" @default.
- W2732241495 hasPublicationYear "2017" @default.
- W2732241495 type Work @default.
- W2732241495 sameAs 2732241495 @default.
- W2732241495 citedByCount "105" @default.
- W2732241495 countsByYear W27322414952018 @default.
- W2732241495 countsByYear W27322414952019 @default.
- W2732241495 countsByYear W27322414952020 @default.
- W2732241495 countsByYear W27322414952021 @default.
- W2732241495 countsByYear W27322414952022 @default.
- W2732241495 countsByYear W27322414952023 @default.
- W2732241495 crossrefType "journal-article" @default.
- W2732241495 hasAuthorship W2732241495A5034572707 @default.
- W2732241495 hasAuthorship W2732241495A5040979134 @default.
- W2732241495 hasAuthorship W2732241495A5051768474 @default.
- W2732241495 hasAuthorship W2732241495A5062530455 @default.
- W2732241495 hasAuthorship W2732241495A5066109185 @default.
- W2732241495 hasAuthorship W2732241495A5072111279 @default.
- W2732241495 hasAuthorship W2732241495A5076721237 @default.
- W2732241495 hasConcept C127413603 @default.
- W2732241495 hasConcept C155672457 @default.
- W2732241495 hasConcept C171250308 @default.
- W2732241495 hasConcept C178790620 @default.
- W2732241495 hasConcept C185592680 @default.
- W2732241495 hasConcept C188027245 @default.
- W2732241495 hasConcept C192562407 @default.
- W2732241495 hasConcept C2778004101 @default.
- W2732241495 hasConcept C2779732960 @default.
- W2732241495 hasConcept C2780104969 @default.
- W2732241495 hasConcept C2780666587 @default.
- W2732241495 hasConcept C2781066024 @default.
- W2732241495 hasConcept C31499863 @default.
- W2732241495 hasConcept C42360764 @default.
- W2732241495 hasConcept C521977710 @default.
- W2732241495 hasConcept C523546767 @default.
- W2732241495 hasConcept C54355233 @default.