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Cytotoxic Activity and Apoptosis-Inducing Potential of Di-spiropyrrolidino and Di-spiropyrrolizidino Oxindole Andrographolide Derivatives

Anticancer role of andrographolide is well documented. To find novel potent derivatives with improved cytotoxicity than andrographolide on cancer cells, two series of di-spiropyrrolidino- and di-spiropyrrolizidino oxindole andrographolide derivatives prepared by cyclo-addition of azomethine ylide al...

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Autores principales: Dey, Sumit Kumar, Bose, Dipayan, Hazra, Abhijit, Naskar, Subhendu, Nandy, Abhishek, Munda, Rudra Narayan, Das, Subhadip, Chatterjee, Nabanita, Mondal, Nirup Bikash, Banerjee, Sukdeb, Saha, Krishna Das
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3589478/
https://www.ncbi.nlm.nih.gov/pubmed/23472133
http://dx.doi.org/10.1371/journal.pone.0058055
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author Dey, Sumit Kumar
Bose, Dipayan
Hazra, Abhijit
Naskar, Subhendu
Nandy, Abhishek
Munda, Rudra Narayan
Das, Subhadip
Chatterjee, Nabanita
Mondal, Nirup Bikash
Banerjee, Sukdeb
Saha, Krishna Das
author_facet Dey, Sumit Kumar
Bose, Dipayan
Hazra, Abhijit
Naskar, Subhendu
Nandy, Abhishek
Munda, Rudra Narayan
Das, Subhadip
Chatterjee, Nabanita
Mondal, Nirup Bikash
Banerjee, Sukdeb
Saha, Krishna Das
author_sort Dey, Sumit Kumar
collection PubMed
description Anticancer role of andrographolide is well documented. To find novel potent derivatives with improved cytotoxicity than andrographolide on cancer cells, two series of di-spiropyrrolidino- and di-spiropyrrolizidino oxindole andrographolide derivatives prepared by cyclo-addition of azomethine ylide along with sarcosine or proline (viz. sarcosine and proline series respectively) and substitution of different functional groups (-CH3, -OCH3 and halogens) were examined for their cytotoxic effect on a panel of six human cancer cell lines (colorectal carcinoma HCT116 cells, pancreatic carcinoma MiaPaCa-2 cells, hepatocarcinoma HepG2 cells, cervical carcinoma HeLa cells, lung carcinoma A549 and melanoma A375 cells). Except halogen substituted derivatives of proline series (viz. CY2, CY14 and CY15 for Br, Cl and I substitution respectively), none of the other derivatives showed improved cytotoxicity than andrographolide in the cancer cell lines examined. Order of cytotoxicity of the potent compounds is CY2>CY14>CY15>andrographolide. Higher toxicity was observed in HCT116, MiaPaCa-2 and HepG2 cells. CY2, induced death of HCT116 (GI(50) 10.5), MiaPaCa-2 (GI(50) 11.2) and HepG2 (GI(50) 16.6) cells were associated with cell rounding, nuclear fragmentation and increased percentage of apoptotic cells, cell cycle arrest at G1 phase, ROS generation, and involvement of mitochondrial pathway. Upregulation of Bax, Bad, p53, caspases-3,-9 and cleaved PARP; downregulation of Bcl-2, cytosolic NF-κB p65, PI3K and p-Akt; translocation of P53/P21, NF-κB p65 were seen in CY2 treated HCT116 cells. Thus, three halogenated di-spiropyrrolizidino oxindole derivatives of andrographolide are found to be more cytotoxic than andrographolide in some cancer cells. The most potent derivative, CY2 induced death of the cancer cells involves ROS dependent mitochondrial pathway like andrographolide.
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spelling pubmed-35894782013-03-07 Cytotoxic Activity and Apoptosis-Inducing Potential of Di-spiropyrrolidino and Di-spiropyrrolizidino Oxindole Andrographolide Derivatives Dey, Sumit Kumar Bose, Dipayan Hazra, Abhijit Naskar, Subhendu Nandy, Abhishek Munda, Rudra Narayan Das, Subhadip Chatterjee, Nabanita Mondal, Nirup Bikash Banerjee, Sukdeb Saha, Krishna Das PLoS One Research Article Anticancer role of andrographolide is well documented. To find novel potent derivatives with improved cytotoxicity than andrographolide on cancer cells, two series of di-spiropyrrolidino- and di-spiropyrrolizidino oxindole andrographolide derivatives prepared by cyclo-addition of azomethine ylide along with sarcosine or proline (viz. sarcosine and proline series respectively) and substitution of different functional groups (-CH3, -OCH3 and halogens) were examined for their cytotoxic effect on a panel of six human cancer cell lines (colorectal carcinoma HCT116 cells, pancreatic carcinoma MiaPaCa-2 cells, hepatocarcinoma HepG2 cells, cervical carcinoma HeLa cells, lung carcinoma A549 and melanoma A375 cells). Except halogen substituted derivatives of proline series (viz. CY2, CY14 and CY15 for Br, Cl and I substitution respectively), none of the other derivatives showed improved cytotoxicity than andrographolide in the cancer cell lines examined. Order of cytotoxicity of the potent compounds is CY2>CY14>CY15>andrographolide. Higher toxicity was observed in HCT116, MiaPaCa-2 and HepG2 cells. CY2, induced death of HCT116 (GI(50) 10.5), MiaPaCa-2 (GI(50) 11.2) and HepG2 (GI(50) 16.6) cells were associated with cell rounding, nuclear fragmentation and increased percentage of apoptotic cells, cell cycle arrest at G1 phase, ROS generation, and involvement of mitochondrial pathway. Upregulation of Bax, Bad, p53, caspases-3,-9 and cleaved PARP; downregulation of Bcl-2, cytosolic NF-κB p65, PI3K and p-Akt; translocation of P53/P21, NF-κB p65 were seen in CY2 treated HCT116 cells. Thus, three halogenated di-spiropyrrolizidino oxindole derivatives of andrographolide are found to be more cytotoxic than andrographolide in some cancer cells. The most potent derivative, CY2 induced death of the cancer cells involves ROS dependent mitochondrial pathway like andrographolide. Public Library of Science 2013-03-05 /pmc/articles/PMC3589478/ /pubmed/23472133 http://dx.doi.org/10.1371/journal.pone.0058055 Text en © 2013 Dey 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
Dey, Sumit Kumar
Bose, Dipayan
Hazra, Abhijit
Naskar, Subhendu
Nandy, Abhishek
Munda, Rudra Narayan
Das, Subhadip
Chatterjee, Nabanita
Mondal, Nirup Bikash
Banerjee, Sukdeb
Saha, Krishna Das
Cytotoxic Activity and Apoptosis-Inducing Potential of Di-spiropyrrolidino and Di-spiropyrrolizidino Oxindole Andrographolide Derivatives
title Cytotoxic Activity and Apoptosis-Inducing Potential of Di-spiropyrrolidino and Di-spiropyrrolizidino Oxindole Andrographolide Derivatives
title_full Cytotoxic Activity and Apoptosis-Inducing Potential of Di-spiropyrrolidino and Di-spiropyrrolizidino Oxindole Andrographolide Derivatives
title_fullStr Cytotoxic Activity and Apoptosis-Inducing Potential of Di-spiropyrrolidino and Di-spiropyrrolizidino Oxindole Andrographolide Derivatives
title_full_unstemmed Cytotoxic Activity and Apoptosis-Inducing Potential of Di-spiropyrrolidino and Di-spiropyrrolizidino Oxindole Andrographolide Derivatives
title_short Cytotoxic Activity and Apoptosis-Inducing Potential of Di-spiropyrrolidino and Di-spiropyrrolizidino Oxindole Andrographolide Derivatives
title_sort cytotoxic activity and apoptosis-inducing potential of di-spiropyrrolidino and di-spiropyrrolizidino oxindole andrographolide derivatives
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3589478/
https://www.ncbi.nlm.nih.gov/pubmed/23472133
http://dx.doi.org/10.1371/journal.pone.0058055
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