Matches in SemOpenAlex for { <https://semopenalex.org/work/W4291285616> ?p ?o ?g. }
- W4291285616 endingPage "e0272844" @default.
- W4291285616 startingPage "e0272844" @default.
- W4291285616 abstract "Green methods have become vital for sustainable development of the scientific and commercial sphere; however, they can bring new challenges, including the need for detailed characterization and elucidation of efficacy of their products. In this study, green method of silver nanoparticles (AgNPs) production was employed using an extract from grapevine canes. The aim of the study was to contribute to the knowledge about biosynthesized AgNPs by focusing on elucidation of their antifungal efficiency based on their size and/or hypothesized synergy with bioactive substances from Vitis vinifera cane extract. The antifungal activity of AgNPs capped and stabilized with bioactive compounds was tested against the opportunistic pathogenic yeast Candida albicans . Two dispersions of nanoparticles with different morphology (characterized by SEM-in-STEM, DLS, UV-Vis, XRD, and AAS) were prepared by modification of reaction conditions suitable for economical production and their long-term stability monitored for six months was confirmed. The aims of the study included the comparison of the antifungal effect against suspension cells and biofilm of small monodisperse AgNPs with narrow size distribution and large polydisperse AgNPs. The hypothesis of synergistic interaction of biologically active molecules from V . vinifera extracts and AgNPs against both cell forms were tested. The interactions of all AgNPs dispersions with the cell surface and changes in cell morphology were imaged using SEM. All variants of AgNPs dispersions were found to be active against suspension and biofilm cells of C . albicans ; nevertheless, surprisingly, larger polydisperse AgNPs were found to be more effective. Synergistic action of nanoparticles with biologically active extract compounds was proven for biofilm cells (MBIC 80 20 mg/L of polydisperse AgNPs in extract), while isolated nanoparticles suspended in water were more active against suspension cells (MIC 20 mg/L of polydisperse AgNPs dispersed in water). Our results bring new insight into the economical production of AgNPs with defined characteristics, which were proven to target a specific mode of growth of significant pathogen C . albicans ." @default.
- W4291285616 created "2022-08-14" @default.
- W4291285616 creator A5008427874 @default.
- W4291285616 creator A5014378346 @default.
- W4291285616 creator A5026943680 @default.
- W4291285616 creator A5027442680 @default.
- W4291285616 creator A5057105527 @default.
- W4291285616 creator A5087384175 @default.
- W4291285616 creator A5089741615 @default.
- W4291285616 date "2022-08-10" @default.
- W4291285616 modified "2023-10-09" @default.
- W4291285616 title "Antibiofilm activity of silver nanoparticles biosynthesized using viticultural waste" @default.
- W4291285616 cites W1998841875 @default.
- W4291285616 cites W2011123063 @default.
- W4291285616 cites W2103809162 @default.
- W4291285616 cites W2120826143 @default.
- W4291285616 cites W2125603952 @default.
- W4291285616 cites W2129629034 @default.
- W4291285616 cites W2148124477 @default.
- W4291285616 cites W2204142061 @default.
- W4291285616 cites W2515469576 @default.
- W4291285616 cites W2516035465 @default.
- W4291285616 cites W2616129231 @default.
- W4291285616 cites W2754113802 @default.
- W4291285616 cites W2760892774 @default.
- W4291285616 cites W2782133572 @default.
- W4291285616 cites W2790720110 @default.
- W4291285616 cites W2794972168 @default.
- W4291285616 cites W2803042846 @default.
- W4291285616 cites W2883480974 @default.
- W4291285616 cites W2883818484 @default.
- W4291285616 cites W2889375271 @default.
- W4291285616 cites W2904101917 @default.
- W4291285616 cites W2906942922 @default.
- W4291285616 cites W2929092051 @default.
- W4291285616 cites W2939564313 @default.
- W4291285616 cites W2947578925 @default.
- W4291285616 cites W2955164812 @default.
- W4291285616 cites W2972830711 @default.
- W4291285616 cites W2982085038 @default.
- W4291285616 cites W2996584703 @default.
- W4291285616 cites W3017661193 @default.
- W4291285616 cites W3038459913 @default.
- W4291285616 cites W3047241551 @default.
- W4291285616 cites W3089283953 @default.
- W4291285616 cites W3109626526 @default.
- W4291285616 cites W3170951675 @default.
- W4291285616 cites W3186801430 @default.
- W4291285616 cites W3213266376 @default.
- W4291285616 cites W4205408317 @default.
- W4291285616 cites W4206343180 @default.
- W4291285616 cites W4206478511 @default.
- W4291285616 cites W4224285872 @default.
- W4291285616 cites W4281772740 @default.
- W4291285616 cites W4294117312 @default.
- W4291285616 cites W753117162 @default.
- W4291285616 cites W89996811 @default.
- W4291285616 doi "https://doi.org/10.1371/journal.pone.0272844" @default.
- W4291285616 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35947573" @default.
- W4291285616 hasPublicationYear "2022" @default.
- W4291285616 type Work @default.
- W4291285616 citedByCount "11" @default.
- W4291285616 countsByYear W42912856162022 @default.
- W4291285616 countsByYear W42912856162023 @default.
- W4291285616 crossrefType "journal-article" @default.
- W4291285616 hasAuthorship W4291285616A5008427874 @default.
- W4291285616 hasAuthorship W4291285616A5014378346 @default.
- W4291285616 hasAuthorship W4291285616A5026943680 @default.
- W4291285616 hasAuthorship W4291285616A5027442680 @default.
- W4291285616 hasAuthorship W4291285616A5057105527 @default.
- W4291285616 hasAuthorship W4291285616A5087384175 @default.
- W4291285616 hasAuthorship W4291285616A5089741615 @default.
- W4291285616 hasBestOaLocation W42912856161 @default.
- W4291285616 hasConcept C11432220 @default.
- W4291285616 hasConcept C127413603 @default.
- W4291285616 hasConcept C13965031 @default.
- W4291285616 hasConcept C155672457 @default.
- W4291285616 hasConcept C171250308 @default.
- W4291285616 hasConcept C178790620 @default.
- W4291285616 hasConcept C185592680 @default.
- W4291285616 hasConcept C192562407 @default.
- W4291285616 hasConcept C2779222958 @default.
- W4291285616 hasConcept C2779548794 @default.
- W4291285616 hasConcept C2780917455 @default.
- W4291285616 hasConcept C31499863 @default.
- W4291285616 hasConcept C42360764 @default.
- W4291285616 hasConcept C4937899 @default.
- W4291285616 hasConcept C523546767 @default.
- W4291285616 hasConcept C54355233 @default.
- W4291285616 hasConcept C55493867 @default.
- W4291285616 hasConcept C58123911 @default.
- W4291285616 hasConcept C86803240 @default.
- W4291285616 hasConcept C89423630 @default.
- W4291285616 hasConceptScore W4291285616C11432220 @default.
- W4291285616 hasConceptScore W4291285616C127413603 @default.
- W4291285616 hasConceptScore W4291285616C13965031 @default.
- W4291285616 hasConceptScore W4291285616C155672457 @default.
- W4291285616 hasConceptScore W4291285616C171250308 @default.