Extract of Scutellaria baicalensis inhibits dengue virus replication
Scutellaria baicalensis (S. baicalensis) is one of the traditional Chinese medicinal herbs that have been shown to possess many health benefits. In the present study, we evaluated the in vitro antiviral activity of aqueous extract of the roots of S. baicalensis against all the four dengue virus (DEN...
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my.um.eprints.139032019-02-07T04:50:32Z http://eprints.um.edu.my/13903/ Extract of Scutellaria baicalensis inhibits dengue virus replication Zandi, Keivan Lim, Tong Hye Rahim, Nor Aziyah Shu, Meng Hooi Teoh, Boon Teong Sam, Sing Sin Danlami, Mohammed Bashar Tan, Kim Kee AbuBakar, Sazaly R Medicine (General) Scutellaria baicalensis (S. baicalensis) is one of the traditional Chinese medicinal herbs that have been shown to possess many health benefits. In the present study, we evaluated the in vitro antiviral activity of aqueous extract of the roots of S. baicalensis against all the four dengue virus (DENV) serotypes.Aqueous extract of S. baicalensis was prepared by microwave energy steam evaporation method (MEGHE™), and the anti-dengue virus replication activity was evaluated using the foci forming unit reduction assay (FFURA) in Vero cells. Quantitative real-time polymerase chain reaction (qRT-PCR) assay was used to determine the actual dengue virus RNA copy number. The presence of baicalein, a flavonoid known to inhibit dengue virus replication was determined by mass spectrometry.The IC50 values for the S. baicalensis extract on Vero cells following DENV adsorption ranged from 86.59 to 95.19 μg/mL for the different DENV serotypes. The IC50 values decreased to 56.02 to 77.41 μg/mL when cells were treated with the extract at the time of virus adsorption for the different DENV serotypes. The extract showed potent direct virucidal activity against extracellular infectious virus particles with IC50 that ranged from 74.33 to 95.83 μg/ mL for all DENV serotypes. Weak prophylactic effects with IC50 values that ranged from 269.9 to 369.8 μg/mL were noticed when the cells were pre-treated 2 hours prior to virus inoculation. The concentration of baicalein in the S. baicalensis extract was ~1% (1.03 μg/gm dried extract).Our study demonstrates the in vitro anti-dengue virus replication property of S. baicalensis against all the four DENV serotypes investigated. The extract reduced DENV infectivity and replication in Vero cells. The extract was rich in baicalein, and could be considered for potential development of anti-DENV therapeutics. 2015-05 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.um.edu.my/13903/1/Extract_of_Scutellaria_Baicalensis.pdf Zandi, Keivan and Lim, Tong Hye and Rahim, Nor Aziyah and Shu, Meng Hooi and Teoh, Boon Teong and Sam, Sing Sin and Danlami, Mohammed Bashar and Tan, Kim Kee and AbuBakar, Sazaly (2015) Extract of Scutellaria baicalensis inhibits dengue virus replication. In: International Conference on Antiviral Research, 11-15 May 2015, Rome, Italy. (Submitted) |
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R Medicine (General) Zandi, Keivan Lim, Tong Hye Rahim, Nor Aziyah Shu, Meng Hooi Teoh, Boon Teong Sam, Sing Sin Danlami, Mohammed Bashar Tan, Kim Kee AbuBakar, Sazaly Extract of Scutellaria baicalensis inhibits dengue virus replication |
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Scutellaria baicalensis (S. baicalensis) is one of the traditional Chinese medicinal herbs that have been shown to possess many health benefits. In the present study, we evaluated the in vitro antiviral activity of aqueous extract of the roots of S. baicalensis against all the four dengue virus (DENV) serotypes.Aqueous extract of S. baicalensis was prepared by microwave energy steam evaporation method (MEGHE™), and the anti-dengue virus replication activity was evaluated using the foci forming unit reduction assay (FFURA) in Vero cells. Quantitative real-time polymerase chain reaction (qRT-PCR) assay was used to determine the
actual dengue virus RNA copy number. The presence of baicalein, a flavonoid known to inhibit dengue virus
replication was determined by mass spectrometry.The IC50 values for the S. baicalensis extract on Vero cells following DENV adsorption ranged from 86.59 to 95.19 μg/mL for the different DENV serotypes. The IC50 values decreased to 56.02 to 77.41 μg/mL when cells were treated with the extract at the time of virus adsorption for the different DENV serotypes. The extract showed potent direct virucidal activity against extracellular infectious virus particles with IC50 that ranged from 74.33 to 95.83 μg/ mL for all DENV serotypes. Weak prophylactic effects with IC50 values that ranged from 269.9 to 369.8 μg/mL were noticed when the cells were pre-treated 2 hours prior to virus inoculation. The concentration of baicalein in the S. baicalensis extract was ~1% (1.03 μg/gm dried extract).Our study demonstrates the in vitro anti-dengue virus replication property of S. baicalensis against all the four DENV serotypes investigated. The extract reduced DENV infectivity and replication in Vero cells. The extract was rich in baicalein, and could be considered for potential development of anti-DENV therapeutics. |
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Conference or Workshop Item |
author |
Zandi, Keivan Lim, Tong Hye Rahim, Nor Aziyah Shu, Meng Hooi Teoh, Boon Teong Sam, Sing Sin Danlami, Mohammed Bashar Tan, Kim Kee AbuBakar, Sazaly |
author_facet |
Zandi, Keivan Lim, Tong Hye Rahim, Nor Aziyah Shu, Meng Hooi Teoh, Boon Teong Sam, Sing Sin Danlami, Mohammed Bashar Tan, Kim Kee AbuBakar, Sazaly |
author_sort |
Zandi, Keivan |
title |
Extract of Scutellaria baicalensis inhibits dengue virus replication |
title_short |
Extract of Scutellaria baicalensis inhibits dengue virus replication |
title_full |
Extract of Scutellaria baicalensis inhibits dengue virus replication |
title_fullStr |
Extract of Scutellaria baicalensis inhibits dengue virus replication |
title_full_unstemmed |
Extract of Scutellaria baicalensis inhibits dengue virus replication |
title_sort |
extract of scutellaria baicalensis inhibits dengue virus replication |
publishDate |
2015 |
url |
http://eprints.um.edu.my/13903/1/Extract_of_Scutellaria_Baicalensis.pdf http://eprints.um.edu.my/13903/ |
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