| Literature DB >> 31870450 |
Yunjia Yu1, Yang Zhang1, Shuyao Wang1, Wei Liu1, Cui Hao2, Wei Wang3,4.
Abstract
BACKGROUND:Entities:
Keywords: Antiviral effects; ERK/MAPK pathway; Influenza a virus; PI3K/Akt pathway; Patchouli alcohol
Mesh:
Substances:
Year: 2019 PMID: 31870450 PMCID: PMC6929483 DOI: 10.1186/s12985-019-1266-x
Source DB: PubMed Journal: Virol J ISSN: 1743-422X Impact factor: 4.099
Fig. 1Patchouli alcohol inhibited replication of IAV in vitro with low toxicity. a After 24 h exposure to Patchouli alcohol (100, 50, 25, 12.5, 6.25 μg/ml) in MDCK, A549 and 293FT cells, the cell viability of Vero cells was measured by MTT assay. Values are means ± S.D. (n = 3). b IAV (MOI = 1.0) infected MDCK cells were treated with PA at the indicated concentrations for 24 h, then the antiviral activity was determined by plaque assay. Values are means±S.D. (n = 3). c Infectious virus titers from single-cycle high-moi assays performed on MDCK cells infected with PR8, Vir09 and NWS and treated with the indicated concentrations of PA. Mean percentage infectious virus titers were calculated as a percentage of infectious virus titers from untreated cells for each drug treatment condition in an experiment. Values are means ± S.D. (n = 3). d Approximately 50–100 PFU/well of Vir09 virus was pre-incubated with different concentrations of PA for 60 min at 37 °C before infection. Then the virus-PA mixture was transferred to confluent cell monolayers in 6-well plates, incubated at 37 °C for 1 h and subjected to plaque assay. e Plaque number from plaque reduction assays performed on MDCK cells infected with Vir09 and treated with the indicated concentrations of PA. Values are means ± S.D. (n = 4). f Plaque number from plaque reduction assays performed on MDCK cells infected with PR8, Vir09 and NWS and treated with the indicated concentrations of PA. Mean percentage plaque numbers were calculated as a percentage of plaque numbers from untreated cells for each drug treatment condition in an experiment. Values are means ± S.D. (n = 3)
The inhibitory effects of PA against different IAV strains in vitro
| Compound | Virus strains | Single-cycle replication assaya | Multicycle replication assaya |
|---|---|---|---|
| Infectious virus titer | Plaque number | ||
| IC50 (μg/ml)b | IC50 (μg/ml)b | ||
| PA | Vir09 | 6.3 ± 1.3 | 2.2 ± 0.2 |
| NWS | 3.5 ± 1.4 | 3.2 ± 0.2 | |
| PR8 | 6.1 ± 1.7 | 2.9 ± 0.4 | |
| Ribavirin | Vir09 | 0.1 ± 0.02 | 121.0 ± 22.1 |
aSingle-cycle high-moi assays and multicycle plaque reduction assays were performed on MDCK cells infected with Vir09, NWS, and PR8. Values are means ± S.D. (n = 3)
bInhibition concentration 50% (IC50): concentration required to reduce the virus titer or plaque number by 50%
Fig. 2Influence of different treatment conditions of Patchouli alcohol on IAV infection. a MDCK cells were infected with H1N1 (Vir09, MOI =1.0) by four different treatment conditions. i) Pretreatment of virus: IAV was pretreated with 25 μg/ml of PA at 37 °C for 1 h before infection. ii) Pretreatment of cells: MDCK cells were pretreated with 25 μg/ml of PA at 37 °C for 1 h before infection. iii) Adsorption: MDCK cells were infected in media containing 25 μg/ml of PA and, after 1 h adsorption at 37 °C, were overlaid with compound-free media. iv) After adsorption: after removal of unabsorbed virus the infecting media containing 25 μg/ml of PA were added to cells. At 24 h p.i., the antiviral activity was determined by plaque assay. Values are means ± S.D. (n = 3). *P < 0.05, **P < 0.01 vs. virus control group. b PR8 (MOI = 1.0) infected MDCK cells were treated with or without 25 μg/ml of PA for the specified time period, and then the media were removed and cells were overlaid with compound-free media. Then at 24 h p.i., the cell supernatants were collected and the virus yields were determined by plaque assay. Values are means ± S.D. (n = 3). Significance: *p < 0.05 vs. virus control group. c Inactivated H1N1 (Vir09) virus and H1N1(PR8) was incubated with indicated concentrations of PA or Zanamivir (10 μg/ml), and the NA enzymatic activity was determined by a fluorescent assay. Values are means ± S.D. (n = 3). d The inhibition effects of PA and anti-HA antibody on influenza virus H1N1 (PR8) induced aggregation of chicken erythrocytes were evaluated by hemagglutination inhibition (HI) assay. e 293FT cells were transfected with pcDNA3.1 expression plasmids encoding PB2, PB1, PA, NP, and the vNS1-luc plasmid in the absence or presence of PA (3.125, 6.25, 12.5, 25 and 50 μg/ml) or Nucleozin (10 μM). The effect of vRNA transcription was then evaluated by measuring luciferase activity at 48 h post-transfection. Data are expressed as the mean ± SD of three samples in each of three independent experiments. Significance: **p < 0.01 vs. mock control group
Fig. 3The influence of Patchouli alcohol on virus protein and mRNA expression. a Immunofluorescence assay of virus NP protein in H1N1 (Vir09) infected A549 cells at 2 h p.i. Scale bar represents 50 μm. b The average fluorescence intensity of NP proteins in (a) was measured by ImageJ (NIH) version 1.33u (USA) to calculate the average intensity per unit area of cells of different images (n = 30). Significance: ∗P < 0.05, ∗∗P < 0.01 vs virus control group. c Vir09 (MOI = 1.0) infected MDCK cells were treated with different concentrations of PA (10–40 μg/ml), and incubated at 37 °C for 8 h. After that, total RNA was extracted for real-time RT-PCR assay of IAV HA mRNA and cellular β-actin mRNA. The relative amounts of virus HA mRNA were determined using the comparative (2-ΔΔCT) method. RNA levels for non-drug treated cells (virus control) were assigned values of 1. Values are means ± SD (n = 3). Significance: *P < 0.05 vs. virus control group. d MDCK cells were firstly infected with IAV (MOI = 1.0), and then treated with or without PA at indicated concentrations after adsorption. At 8 h p.i., the virus NP protein expression was evaluated by Western blotting. Blots were also probed for β-actin protein as loading controls. e Quantification of immunoblot for the ratio of IAV NP protein to actin. The ratio for non-treated virus control group (PR8) were assigned values of 1 and the data presented as mean ± SD (n = 3). Significance: **P < 0.01 vs. virus control group (PR8)
Fig. 4Involvement of PI3K/Akt and ERK/MAPK signaling pathways in the anti-IAV actions of Patchouli alcohol. a-d Vir09 virus (MOI = 1.0) infected cells were treated with or without PA (6.25, 12.5, 25, 50 μg/ml) for 2 h, and then the phosphorylation of PI3K (a), Akt (b), ERK1/2 (c), and NF-κB (d) was evaluated by western blot. Blots were also probed for GAPDH, and α-tubulin proteins as loading controls. The result shown is a representative of three separate experiments. e-h Quantification of immunoblot for the ratio of p-PI3K (e), p-Akt (f), p-ERK1/2 (g), and p-NF-κB (h) protein to GAPDH or tubulin, respectively. The ratio for non-infected cells (M) was assigned values of 1.0 and the data presented as mean ± S.D. (n = 3). Significance: ##P < 0.01 vs. normal control group (Mock); *P < 0.05, **P < 0.01 vs. virus control group (Vir09)
Fig. 5The influence of Patchouli alcohol on host antiviral response. a A549 cells were treated with or without PA (6.25, 12.5, 25, 50 μg/ml) for 2 h, and then the phosphorylation of PI3K and Akt proteins was evaluated via western blotting. Blots were also probed for β-actin and GAPDH protein as loading controls. The result shown is a representative of three separate experiments. b Plots quantifying the immunoblots (as ratios to β-actin or GAPDH) for p-PI3K and p-Akt proteins, respectively. The ratios for non-treated cells (mock) were assigned values of 1.0 and the data presented as mean ± S.D. (n = 3). c A549 cells were treated with Patchouli alcohol (50, 25 μg/ml) for specified time period, and then the media were removed and cells were overlaid with compound-free media. Then at 24 h p.i., the cell viability of A549 cells was measured by MTT assay. Values are means ± S.D. (n = 3). d Vir09 virus (MOI = 0.1) infected cells were treated with or without PA (6.25, 12.5, 25, 50 μg/ml) for 24 h, then the content of IFN-β in the culture supernatants was detected using ELISA kits. Values are means ± S.D. (n = 3). ##P < 0.01vs. non-infected group (mock control). e and f After treatment of PA (20 or 40 μg/day) for four days in non-infected mice (e) or PR8 virus infected mice (f), the production of interferon-γ (IFN-γ) and interleukin 2 (IL-2) in lung tissues was determined by using the ELISA kits for IFN-γ and IL-2. Values are means ± S.D. (n = 3). Significance: ##P < 0.01 vs. non-infected mock control group; **P < 0.01 vs. virus control group
Fig. 6The anti-IAV effects of Patchouli alcohol in vivo. a Viral titers in lungs. After treatment with Oseltamivir (10 mg/kg/day) or PA (20 or 40 μg/day) for 4 days, the pulmonary viral titers were evaluated by plaque assay. Values are the mean ± SD (n = 3). Significance: *P < 0.05, **P < 0.01 vs virus control group. b Survival rate. IAV infected mice received therapy with Oseltamivir (10 mg/kg/day) or PA (20 or 40 μg/day) for the entire experiment. Results are expressed as percentage of survival, evaluated daily for 14 days. Significance: *P < 0.05 vs. virus control group (placebo). c Histopathologic analyses of lung tissues on Day 4 p.i. by HE staining (× 10). The representative micrographs from each group were shown (n = 5 mice/group). Mock: non-infected lungs; Control: IAV infected lungs without drugs; Oseltamivir: IAV infected lungs with Oseltamivir (10 mg/kg/day) treatment; PA 20 μg/day: IAV infected lungs with PA (20 μg/day) treatment; PA 40 μg/day: IAV infected lungs with PA (40 μg/day) treatment. The red arrows indicate the presence of inflammatory cells in the alveolar walls and serocellular exudates in the lumen