Protective Effect of a Polyherbal Aqueous Extract Comprised of Nigella sativa (Seeds), Hemidesmus indicus (Roots), and Smilax glabra (Rhizome) on Bleomycin Induced Cytogenetic Damage in Human Lymphocytes
This study was carried out to determine the chemoprotective potential of a polyherbal aqueous decoction comprised of Nigella sativa (seeds), Hemidesmus indicus (roots), and Smilax glabra (rhizome) against bleomycin induced cytogenetic damage in human lymphocytes. Isolated peripheral blood lymphocyte...
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doaj-56cc14c6351e4718ae00f8ed0c7f5f5c2020-11-24T22:16:29ZengHindawi LimitedBioMed Research International2314-61332314-61412017-01-01201710.1155/2017/18567131856713Protective Effect of a Polyherbal Aqueous Extract Comprised of Nigella sativa (Seeds), Hemidesmus indicus (Roots), and Smilax glabra (Rhizome) on Bleomycin Induced Cytogenetic Damage in Human LymphocytesBandula Prasanna Galhena0S. S. R. Samarakoon1Myrtle Ira Thabrew2Solomon F. D. Paul3Venkatachalam Perumal4Chinnadurai Mani5Department of Biochemistry and Clinical Chemistry, Faculty of Medicine, University of Kelaniya, Ragama, Sri LankaInstitute of Biochemistry, Molecular Biology, and Biotechnology, University of Colombo, Colombo, Sri LankaInstitute of Biochemistry, Molecular Biology, and Biotechnology, University of Colombo, Colombo, Sri LankaDepartment of Human Genetics, Sri Ramachandra University, Chennai, IndiaDepartment of Human Genetics, Sri Ramachandra University, Chennai, IndiaDepartment of Oncologic Sciences, Mitchell Cancer Institute, University of South Alabama, Mobile, AL, USAThis study was carried out to determine the chemoprotective potential of a polyherbal aqueous decoction comprised of Nigella sativa (seeds), Hemidesmus indicus (roots), and Smilax glabra (rhizome) against bleomycin induced cytogenetic damage in human lymphocytes. Isolated peripheral blood lymphocytes (PBLs) were exposed to bleomycin at a dose of 40 µg/mL for 2 hrs in the presence or absence of different doses of the decoction (100, 300, and 600 µg/mL). Modulatory effect of the decoction on bleomycin induced cytogenetic damage was evaluated by (a) degree of chromosomal aberrations (CA), (b) formation of micronuclei (MN), and (c) induction of γH2AX foci in lymphocytes exposed to bleomycin. Lymphocytes pretreated with the decoction showed that a significant reduction (p<0.05) in bleomycin induced (a) stable and unstable chromosome aberrations (CA), (b) MN formation, and (c) formation of γH2AX foci, when compared to lymphocytes treated only with bleomycin. The decoction by itself did not induce any significant cytogenetic damage in PBLs. Overall results of the present study confirm that the decoction can attenuate the cytogenetic damage mediated by bleomycin in human PBLs.http://dx.doi.org/10.1155/2017/1856713 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bandula Prasanna Galhena S. S. R. Samarakoon Myrtle Ira Thabrew Solomon F. D. Paul Venkatachalam Perumal Chinnadurai Mani |
spellingShingle |
Bandula Prasanna Galhena S. S. R. Samarakoon Myrtle Ira Thabrew Solomon F. D. Paul Venkatachalam Perumal Chinnadurai Mani Protective Effect of a Polyherbal Aqueous Extract Comprised of Nigella sativa (Seeds), Hemidesmus indicus (Roots), and Smilax glabra (Rhizome) on Bleomycin Induced Cytogenetic Damage in Human Lymphocytes BioMed Research International |
author_facet |
Bandula Prasanna Galhena S. S. R. Samarakoon Myrtle Ira Thabrew Solomon F. D. Paul Venkatachalam Perumal Chinnadurai Mani |
author_sort |
Bandula Prasanna Galhena |
title |
Protective Effect of a Polyherbal Aqueous Extract Comprised of Nigella sativa (Seeds), Hemidesmus indicus (Roots), and Smilax glabra (Rhizome) on Bleomycin Induced Cytogenetic Damage in Human Lymphocytes |
title_short |
Protective Effect of a Polyherbal Aqueous Extract Comprised of Nigella sativa (Seeds), Hemidesmus indicus (Roots), and Smilax glabra (Rhizome) on Bleomycin Induced Cytogenetic Damage in Human Lymphocytes |
title_full |
Protective Effect of a Polyherbal Aqueous Extract Comprised of Nigella sativa (Seeds), Hemidesmus indicus (Roots), and Smilax glabra (Rhizome) on Bleomycin Induced Cytogenetic Damage in Human Lymphocytes |
title_fullStr |
Protective Effect of a Polyherbal Aqueous Extract Comprised of Nigella sativa (Seeds), Hemidesmus indicus (Roots), and Smilax glabra (Rhizome) on Bleomycin Induced Cytogenetic Damage in Human Lymphocytes |
title_full_unstemmed |
Protective Effect of a Polyherbal Aqueous Extract Comprised of Nigella sativa (Seeds), Hemidesmus indicus (Roots), and Smilax glabra (Rhizome) on Bleomycin Induced Cytogenetic Damage in Human Lymphocytes |
title_sort |
protective effect of a polyherbal aqueous extract comprised of nigella sativa (seeds), hemidesmus indicus (roots), and smilax glabra (rhizome) on bleomycin induced cytogenetic damage in human lymphocytes |
publisher |
Hindawi Limited |
series |
BioMed Research International |
issn |
2314-6133 2314-6141 |
publishDate |
2017-01-01 |
description |
This study was carried out to determine the chemoprotective potential of a polyherbal aqueous decoction comprised of Nigella sativa (seeds), Hemidesmus indicus (roots), and Smilax glabra (rhizome) against bleomycin induced cytogenetic damage in human lymphocytes. Isolated peripheral blood lymphocytes (PBLs) were exposed to bleomycin at a dose of 40 µg/mL for 2 hrs in the presence or absence of different doses of the decoction (100, 300, and 600 µg/mL). Modulatory effect of the decoction on bleomycin induced cytogenetic damage was evaluated by (a) degree of chromosomal aberrations (CA), (b) formation of micronuclei (MN), and (c) induction of γH2AX foci in lymphocytes exposed to bleomycin. Lymphocytes pretreated with the decoction showed that a significant reduction (p<0.05) in bleomycin induced (a) stable and unstable chromosome aberrations (CA), (b) MN formation, and (c) formation of γH2AX foci, when compared to lymphocytes treated only with bleomycin. The decoction by itself did not induce any significant cytogenetic damage in PBLs. Overall results of the present study confirm that the decoction can attenuate the cytogenetic damage mediated by bleomycin in human PBLs. |
url |
http://dx.doi.org/10.1155/2017/1856713 |
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