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Anti-Cancer Efficacy of Silybin Derivatives - A Structure-Activity Relationship

Silybin or silibinin, a flavonolignan isolated from Milk thistle seeds, is one of the popular dietary supplements and has been extensively studied for its antioxidant, hepatoprotective and anti-cancer properties. We have envisioned that potency of silybin could be further enhanced through suitable m...

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Autores principales: Agarwal, Chapla, Wadhwa, Ritambhara, Deep, Gagan, Biedermann, David, Gažák, Radek, Křen, Vladimír, Agarwal, Rajesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3610875/
https://www.ncbi.nlm.nih.gov/pubmed/23555889
http://dx.doi.org/10.1371/journal.pone.0060074
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author Agarwal, Chapla
Wadhwa, Ritambhara
Deep, Gagan
Biedermann, David
Gažák, Radek
Křen, Vladimír
Agarwal, Rajesh
author_facet Agarwal, Chapla
Wadhwa, Ritambhara
Deep, Gagan
Biedermann, David
Gažák, Radek
Křen, Vladimír
Agarwal, Rajesh
author_sort Agarwal, Chapla
collection PubMed
description Silybin or silibinin, a flavonolignan isolated from Milk thistle seeds, is one of the popular dietary supplements and has been extensively studied for its antioxidant, hepatoprotective and anti-cancer properties. We have envisioned that potency of silybin could be further enhanced through suitable modification/s in its chemical structure. Accordingly, here, we synthesized and characterized a series of silybin derivatives namely 2,3-dehydrosilybin (DHS), 7-O-methylsilybin (7OM), 7-O-galloylsilybin (7OG), 7,23-disulphatesilybin (DSS), 7-O-palmitoylsilybin (7OP), and 23-O-palmitoylsilybin (23OP); and compared their anti-cancer efficacy using human bladder cancer HTB9, colon cancer HCT116 and prostate carcinoma PC3 cells. In all the 3 cell lines, DHS, 7OM and 7OG demonstrated better growth inhibitory effects and compared to silybin, while other silybin derivatives showed lesser or no efficacy. Next, we prepared the optical isomers (A and B) of silybin, DHS, 7OM and 7OG, and compared their anti-cancer efficacy. Isomers of these three silybin derivatives also showed better efficacy compared with respective silybin isomers, but in each, there was no clear cut silybin A versus B isomer activity preference. Further studies in HTB cells found that DHS, 7OM and 7OG exert better apoptotic activity than silibinin. Clonogenic assays in HTB9 cells further confirmed that both the racemic mixtures as well as pure optical isomers of DHS, 7OM and 7OG were more effective than silybin. Overall, these results clearly suggest that the anti-cancer efficacy of silybin could be significantly enhanced through structural modifications, and identify strong anti-cancer efficacy of silybin derivatives, namely DHS, 7OM, and 7OG, signifying that their efficacy and toxicity should be evaluated in relevant pre-clinical cancer models in rodents.
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spelling pubmed-36108752013-04-03 Anti-Cancer Efficacy of Silybin Derivatives - A Structure-Activity Relationship Agarwal, Chapla Wadhwa, Ritambhara Deep, Gagan Biedermann, David Gažák, Radek Křen, Vladimír Agarwal, Rajesh PLoS One Research Article Silybin or silibinin, a flavonolignan isolated from Milk thistle seeds, is one of the popular dietary supplements and has been extensively studied for its antioxidant, hepatoprotective and anti-cancer properties. We have envisioned that potency of silybin could be further enhanced through suitable modification/s in its chemical structure. Accordingly, here, we synthesized and characterized a series of silybin derivatives namely 2,3-dehydrosilybin (DHS), 7-O-methylsilybin (7OM), 7-O-galloylsilybin (7OG), 7,23-disulphatesilybin (DSS), 7-O-palmitoylsilybin (7OP), and 23-O-palmitoylsilybin (23OP); and compared their anti-cancer efficacy using human bladder cancer HTB9, colon cancer HCT116 and prostate carcinoma PC3 cells. In all the 3 cell lines, DHS, 7OM and 7OG demonstrated better growth inhibitory effects and compared to silybin, while other silybin derivatives showed lesser or no efficacy. Next, we prepared the optical isomers (A and B) of silybin, DHS, 7OM and 7OG, and compared their anti-cancer efficacy. Isomers of these three silybin derivatives also showed better efficacy compared with respective silybin isomers, but in each, there was no clear cut silybin A versus B isomer activity preference. Further studies in HTB cells found that DHS, 7OM and 7OG exert better apoptotic activity than silibinin. Clonogenic assays in HTB9 cells further confirmed that both the racemic mixtures as well as pure optical isomers of DHS, 7OM and 7OG were more effective than silybin. Overall, these results clearly suggest that the anti-cancer efficacy of silybin could be significantly enhanced through structural modifications, and identify strong anti-cancer efficacy of silybin derivatives, namely DHS, 7OM, and 7OG, signifying that their efficacy and toxicity should be evaluated in relevant pre-clinical cancer models in rodents. Public Library of Science 2013-03-28 /pmc/articles/PMC3610875/ /pubmed/23555889 http://dx.doi.org/10.1371/journal.pone.0060074 Text en © 2013 Agarwal et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Agarwal, Chapla
Wadhwa, Ritambhara
Deep, Gagan
Biedermann, David
Gažák, Radek
Křen, Vladimír
Agarwal, Rajesh
Anti-Cancer Efficacy of Silybin Derivatives - A Structure-Activity Relationship
title Anti-Cancer Efficacy of Silybin Derivatives - A Structure-Activity Relationship
title_full Anti-Cancer Efficacy of Silybin Derivatives - A Structure-Activity Relationship
title_fullStr Anti-Cancer Efficacy of Silybin Derivatives - A Structure-Activity Relationship
title_full_unstemmed Anti-Cancer Efficacy of Silybin Derivatives - A Structure-Activity Relationship
title_short Anti-Cancer Efficacy of Silybin Derivatives - A Structure-Activity Relationship
title_sort anti-cancer efficacy of silybin derivatives - a structure-activity relationship
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3610875/
https://www.ncbi.nlm.nih.gov/pubmed/23555889
http://dx.doi.org/10.1371/journal.pone.0060074
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