2008Archives of Biological SciencesOpen access

Evaluation of antiviral activity of fractionated extracts of sage Salvia officinalis L. (Lamiaceae)

Dragana Smidling, Dragana Mitić-Ćulafić, Branka Vuković‐Gačić, Draga Simić, Jelena Knežević‐Vukčević

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Abstract

In the present study, we examined cytotoxicity and extracellular and intracellular antiviral activity of frac?tionated extracts of wild and cultivated sage Salvia officinalis L. (Lamiaceae) in vitro using the WISH-VSV model system. Extracts were obtained by fractionating depigmented ethanol extracts of sage plants with supercritical CO2 at different pressures. Cytotoxicity was determined by examining cellular morphology in situ with the aid of a colorimetric micromethod and by cell staining with trypan blue. The fraction of distilled cultivated sage obtained at CO2 pressure of 300 bars and temperature of 60?C (149/3) was the most cytotoxic, with CTD10 44 ?g/ml. That of non-distilled cultivated sage obtained at CO2 pressure of 500 bars and temperature of 100?C (144/5) was the least toxic (CTD10 199 ?g/ml). Moreover, 144/5 had an antiviral effect at the intracellular level: when added 5 hours before VSV infection, it caused 100% reduction of CPE at concentrations of 99.5 and 199.0 ?g/ml; when added after virus penetration had occurred, the same concentrations caused 35 and 60% reduction, respectively. The obtained results indicate that antiviral activity of 144/5 involves inhibition of the early steps of the virus infective cycle without a direct virucidal effect. Abbreviations: WISH - human amnion epithelial cells, VSV - vesicular stomatitis virus, HSV - herpes simplex virus, CPE - cytopathic effect, IS - selectivity index, TCID50 - tissue culture infective dose, CTD10 - 10% cytotoxic concentrations.

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In the present study, we examined cytotoxicity and extracellular and intracellular antiviral activity of frac?tionated extracts of wild and cultivated sage Salvia officinalis L. (Lamiaceae) in vitro using the WISH-VSV model system. Extracts were obtained by fractionating depigmented ethanol extracts of sage plants with supercritical CO2 at different pressures. Cytotoxicity was determined by examining cellular morphology in situ with the aid of a colorimetric micromethod and by cell staining with trypan blue. The fraction of distilled cultivated sage obtained at CO2 pressure of 300 bars and temperature of 60?C (149/3) was the most cytotoxic, with CTD10 44 ?g/ml. That of non-distilled cultivated sage obtained at CO2 pressure of 500 bars and temperature of 100?C (144/5) was the least toxic (CTD10 199 ?g/ml). Moreover, 144/5 had an antiviral effect at the intracellular level: when added 5 hours before VSV infection, it caused 100% reduction of CPE at concentrations of 99.5 and 199.0 ?g/ml; when added after virus penetration had occurred, the same concentrations caused 35 and 60% reduction, respectively. The obtained results indicate that antiviral activity of 144/5 involves inhibition of the early steps of the virus infective cycle without a direct virucidal effect. Abbreviations: WISH - human amnion epithelial cells, VSV - vesicular stomatitis virus, HSV - herpes simplex virus, CPE - cytopathic effect, IS - selectivity index, TCID50 - tissue culture infective dose, CTD10 - 10% cytotoxic concentrations.

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Available abstract

In the present study, we examined cytotoxicity and extracellular and intracellular antiviral activity of frac?tionated extracts of wild and cultivated sage Salvia officinalis L. (Lamiaceae) in vitro using the WISH-VSV model system. Extracts were obtained by fractionating depigmented ethanol extracts of sage plants with supercritical CO2 at different pressures. Cytotoxicity was determined by examining cellular morphology in situ with the aid of a colorimetric micromethod and by cell staining with trypan blue. The fraction of distilled cultivated sage obtained at CO2 pressure of 300 bars and temperature of 60?C (149/3) was the most cytotoxic, with CTD10 44 ?g/ml. That of non-distilled cultivated sage obtained at CO2 pressure of 500 bars and temperature of 100?C (144/5) was the least toxic (CTD10 199 ?g/ml). Moreover, 144/5 had an antiviral effect at the intracellular level: when added 5 hours before VSV infection, it caused 100% reduction of CPE at concentrations of 99.5 and 199.0 ?g/ml; when added after virus penetration had occurred, the same concentrations caused 35 and 60% reduction, respectively. The obtained results indicate that antiviral activity of 144/5 involves inhibition of the early steps of the virus infective cycle without a direct virucidal effect. Abbreviations: WISH - human amnion epithelial cells, VSV - vesicular stomatitis virus, HSV - herpes simplex virus, CPE - cytopathic effect, IS - selectivity index, TCID50 - tissue culture infective dose, CTD10 - 10% cytotoxic concentrations.

Key concepts: Lamiaceae, Salvia officinalis, Cytopathic effect, SAGE, Salvia, Traditional medicine, Biology, Cytotoxicity

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