| Literature DB >> 32542115 |
Youngsik Seo1, Keunchun Park1, Yonggun Hong2, Eun Sik Lee3, Sang-Soon Kim2, Yong-Tae Jung3, Heonyong Park1, Chian Kwon1, Young-Sik Cho4, Young-Duk Huh4.
Abstract
Cubic-shaped Ag3PO4 crystals with a mean size of 1 μm were synthesized by a precipitation method from a mixed solution of AgNO3, Na2HPO4, and triethanolamine. The antibacterial activities against Escherichia coli, Listeria innocua, and Pseudomonas syringae DC3000 in both the absence and presence of Ag3PO4 under dark conditions and in the presence of Ag3PO4 under red-light (625 nm) and blue-light (460 nm) irradiation were examined. The concentrations of reactive oxygen species (ROS) were also measured in the antibacterial action of the Ag3PO4 against Escherichia coli. The photoinduced enhancement of the Ag3PO4 antibacterial activity under blue-light irradiation is explained by the formation of ROS during the antibacterial action of the Ag3PO4. Moreover, the antiviral activity of Ag3PO4 against amphotropic 10A1 murine leukemia virus enhanced under blue-light irradiation via ROS production. These results provide an insight into extended bio-applications of Ag3PO4.Entities:
Keywords: Ag3PO4; Antiviral activity; Photoenhanced antibacterial activities; Reactive oxygen species
Year: 2020 PMID: 32542115 PMCID: PMC7288616 DOI: 10.1186/s40543-020-00220-y
Source DB: PubMed Journal: J Anal Sci Technol ISSN: 2093-3134
Fig. 1a SEM images of the as-synthesized Ag3PO4 product prepared by the precipitation method. b (Top panel) XRD patterns of the Ag3PO4 product, along with the patterns calculated using the Rietveld refinement method; the solid line (black) and open circles (red) present the measured and calculated XRD data, respectively. The intensity differences (blue) between the measured and calculated patterns are shown. The vertical markers (black) indicate the Bragg reflections. (Bottom panel) The XRD pattern and Miller indices of the cubic crystal structure of Ag3PO4 (JCPDS 06-0505) are included for comparison
Fig. 2a The growth rate of E. coli in the absence (circles) or presence (squares) of Ag3PO4 under dark conditions and in the presence of Ag3PO4 under red-light (625 nm, triangles) or blue-light (460 nm, inverted triangles) irradiation. Line graphs represent mean ± SEM (n = 3). b Colony formation of L. innocua in the absence or presence of Ag3PO4 under dark conditions and in the presence of Ag3PO4 under red-light or blue-light irradiation. Quantified data are shown in bar graphs (mean ± SEM; n = 3). Scale bars are 10 μm in b. c The growth rate of P. syringae DC3000 in the absence (circles) or presence (squares) of Ag3PO4 under dark conditions and in the presence of Ag3PO4 under red-light (triangles) or blue-light irradiation (inverted triangles). Line graphs represent mean ± SEM (n = 3)
Fig. 3a The ROS concentration produced in the process of antibacterial action against E. coli (mean ± SEM; n = 3) and b optic (left panels showing total cells) and fluorescent (right panels) images of E. coli in the absence and presence of Ag3PO4 under dark conditions and in the presence of Ag3PO4 under red-light (625 nm) and blue-light (460 nm) irradiation. DCFH-DA fluorescent dye was used for ROS detection. Scale bars are 10 μm in b. c The growth rate of E. coli in the absence or presence of 1 mM N-acetylcysteine (NAC) under dark conditions and in the presence of Ag3PO4 with or without 1 mM NAC under blue-light (460 nm, inverted triangles) irradiation. Bar graphs represent mean ± SEM (n = 3)
Fig. 4a Antiviral activity of Ag3PO4 under red-light (625 nm) and blue-light (460 nm) irradiation. HT1080 cells were inoculated with MoMLV-10A1-EGFP at an MOI of 1. Viral supernatants were collected after mixing with Ag3PO4 under no light, red-light, and blue-light irradiation. Representative cells observed under optic and fluorescence microscopy are shown in the left panel. Forty-eight hours after infection, the GFP-expressed cells were analyzed by flow cytometry. Fluorescence-gated cell percents are shown in line graphs in the right panel (mean ± SEM; n = 3). b The ROS concentrations generated by Ag3PO4 suspended in PBS under dark conditions and under red-light or blue-light irradiation. Quantified data are shown in bar graphs (mean ± SEM; n = 3) *p < 0.0001