Journal: Pharmaceuticals (Basel, Switzerland)
Article Title: Ag 2 O Nanoparticles as a Candidate for Antimicrobial Compounds of the New Generation.
doi: 10.3390/ph15080968
Figure Lengend Snippet: Figure 1. Results of the data analysis regarding antimicrobial properties of Ag2O NPs: (a) microor- ganisms, against which the inhibitory activity of NPs was shown most often; (b) dependence of MIC against E. coli on NP sizes. R—value of the correlation coefficient; (c) dependence of MIC on a method of NP generation. *—p < 0.05, a significant difference from the precipitation variant using the Mann–Whitney test. Each dot represents a mention in one publication. The data are presented as medians, percentiles (10, 25, 75 and 90%).
Article Snippet: No Composition Particle Size, nm Microorganism Strains Effect MIC/MBC Results Reference 1 Ag2O NPs coatingon glass ~1500 Pseudomonas aeruginosa (DSM-9644), Staphylococcus aureus (ATCC no. 6538), Staphylococcus aureus (MA43300 methicillin-resistant), SARS-CoV-2 virus Bacteriostatic Bactericidal Antiviral 1.18 mg/mL Coating of glass surfaces with Ag2O NPs significantly reduced the titers of the SARS-CoV-2 virus on the treated surface after 1 and 24 h. Ag2O NPs caused the death of all studied bacteria after 1 h. The activities against Gram-negative bacteria were more pronounced.
Techniques: Activity Assay, Variant Assay, MANN-WHITNEY