| Literature DB >> 30658691 |
Tomomi Takano1, Misuzu Akiyama1, Tomoyoshi Doki1, Tsutomu Hohdatsu2.
Abstract
Feline coronaviruses (FCoVs) are the causative agents of severe systemic disease (feline infectious peritonitis: FIP) in domestic and wild cats. FCoVs have been classified into serotypes I and II. Type I FCoV is the dominant serotype (approximately 70-90%) worldwide. Therefore, it is necessary to provide antiviral agents for type I FCoV infection. In this study, we demonstrated that itraconazole (ICZ), practically used for fungal infections in cats, inhibits the type I FCoV infection. ICZ also exhibited antiviral effect in cells after viral infection, suggesting that ICZ could potentially be used as a therapeutic.Entities:
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Year: 2019 PMID: 30658691 PMCID: PMC6339390 DOI: 10.1186/s13567-019-0625-3
Source DB: PubMed Journal: Vet Res ISSN: 0928-4249 Impact factor: 3.683
Figure 1Cytotoxic effects of ICZ in fcwf-4 cells. fcwf-4 cell viability was measured by the WST-8 assay as a described before [7]. The black circles indicate treatment with ICZ and the white circles indicate treatment with the solvent (solvent control). The solvent concentration was the same as that in ICZ solution at each serial dilution. Data represent three independent experiments.
Figure 2Antiviral effects of ICZ on type I FIPV, and type II FIPV. A Plaque inhibition assay of FCoV in fcwf-4 cells treated with ICZ. The black bars indicate treatment with ICZ and the white bars indicate treatment with the solvent (solvent control). The results are shown as the mean ± SE. Data represent four independent experiments. *p < 0.05 v.s. solvent control. B Inhibition of FCoV infection by ICZ in fcwf-4 cells. The black bars indicate treatment with ICZ and the white bars indicate treatment with the solvent (solvent control). The results are shown as the mean ± SE. Data represent four independent experiments. *p < 0.05 v.s. solvent control. a: p = 0.054 v.s. solvent control. b: p = 0.082 v.s. solvent control. c: p = 0.052 v.s. solvent control. C Effects of ICZ on FCoV nucleocapsid (N) expression. FCoV N protein was evaluated by IFA. Data represent three independent experiments. D Effects of post-treatment on the antiviral activity of ICZ. KU2: FIPV-I KU2 strain, UCD1: FIPV-I UCD1 strain, UCD4: FIPV-I UCD4 strain, 1146: FIPV-II WSU 79-1146 strain, ICZ: itraconazole.
The CC50, IC50, and SI of itraconazole
| Virus/cell | CC50 (μM) | IC50 (μM) | SI (CC50/IC50) |
|---|---|---|---|
| FIPV-I KU2 | – | 0.219 | 950.6 |
| FIPV-I UCD1 | – | 0.597 | 348.7 |
| FIPV-I UCD4 | – | 0.146 | 1425.9 |
| FIPV-II 79-1146 | – | > 160.0 | < 1.3 |
| fcwf-4 cell | 208.0 | – | – |
Figure 3Effect of ICZ on cholesterol accumulation and cellular cholesterol level in fcwf-4 cells. A ICZ induced accumulation of intracellular cholesterol. The cellular cholesterol content in cells was evaluated by filipin-cholesterol staining. The area within the white square is magnified in the cell indicated by white arrow. B Quantification of cellular cholesterol in fcwf-4 cells. Data represent three independent experiments.