Cargando…
A novel copper complex induces ROS generation in doxorubicin resistant Ehrlich ascitis carcinoma cells and increases activity of antioxidant enzymes in vital organs in vivo
BACKGROUND: In search of a suitable GSH-depleting agent, a novel copper complex viz., copper N-(2-hydroxyacetophenone) glycinate (CuNG) has been synthesized, which was initially found to be a potential resistance modifying agent and later found to be an immunomodulator in mice model in different dos...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Texto |
Lenguaje: | English |
Publicado: |
BioMed Central
2006
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1660546/ https://www.ncbi.nlm.nih.gov/pubmed/17107616 http://dx.doi.org/10.1186/1471-2407-6-267 |
_version_ | 1782131037249208320 |
---|---|
author | Mookerjee, Ananda Basu, Jayati Mookerjee Majumder, Surajit Chatterjee, Shilpak Panda, Gouri S Dutta, Pranabananda Pal, Smarajit Mukherjee, Pratima Efferth, Thomas Roy, Syamal Choudhuri, Soumitra K |
author_facet | Mookerjee, Ananda Basu, Jayati Mookerjee Majumder, Surajit Chatterjee, Shilpak Panda, Gouri S Dutta, Pranabananda Pal, Smarajit Mukherjee, Pratima Efferth, Thomas Roy, Syamal Choudhuri, Soumitra K |
author_sort | Mookerjee, Ananda |
collection | PubMed |
description | BACKGROUND: In search of a suitable GSH-depleting agent, a novel copper complex viz., copper N-(2-hydroxyacetophenone) glycinate (CuNG) has been synthesized, which was initially found to be a potential resistance modifying agent and later found to be an immunomodulator in mice model in different doses. The objective of the present work was to decipher the effect of CuNG on reactive oxygen species (ROS) generation and antioxidant enzymes in normal and doxorubicin-resistant Ehrlich ascites carcinoma (EAC/Dox)-bearing Swiss albino mice. METHODS: The effect of CuNG has been studied on ROS generation, multidrug resistance-associated protein1 (MRP1) expression and on activities of superoxide dismutase (SOD), catalase (CAT) and glutathione peroxidase (GPx). RESULTS: CuNG increased ROS generation and reduced MRP1 expression in EAC/Dox cells while only temporarily depleted glutathione (GSH) within 2 h in heart, kidney, liver and lung of EAC/Dox bearing mice, which were restored within 24 h. The level of liver Cu was observed to be inversely proportional to the level of GSH. Moreover, CuNG modulated SOD, CAT and GPx in different organs and thereby reduced oxidative stress. Thus nontoxic dose of CuNG may be utilized to reduce MRP1 expression and thus sensitize EAC/Dox cells to standard chemotherapy. Moreover, CuNG modulated SOD, CAT and and GPx activities to reduce oxidative stress in some vital organs of EAC/Dox bearing mice. CuNG treatment also helped to recover liver and renal function in EAC/Dox bearing mice. CONCLUSION: Based on our studies, we conclude that CuNG may be a promising candidate to sensitize drug resistant cancers in the clinic. |
format | Text |
id | pubmed-1660546 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2006 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-16605462006-11-23 A novel copper complex induces ROS generation in doxorubicin resistant Ehrlich ascitis carcinoma cells and increases activity of antioxidant enzymes in vital organs in vivo Mookerjee, Ananda Basu, Jayati Mookerjee Majumder, Surajit Chatterjee, Shilpak Panda, Gouri S Dutta, Pranabananda Pal, Smarajit Mukherjee, Pratima Efferth, Thomas Roy, Syamal Choudhuri, Soumitra K BMC Cancer Research Article BACKGROUND: In search of a suitable GSH-depleting agent, a novel copper complex viz., copper N-(2-hydroxyacetophenone) glycinate (CuNG) has been synthesized, which was initially found to be a potential resistance modifying agent and later found to be an immunomodulator in mice model in different doses. The objective of the present work was to decipher the effect of CuNG on reactive oxygen species (ROS) generation and antioxidant enzymes in normal and doxorubicin-resistant Ehrlich ascites carcinoma (EAC/Dox)-bearing Swiss albino mice. METHODS: The effect of CuNG has been studied on ROS generation, multidrug resistance-associated protein1 (MRP1) expression and on activities of superoxide dismutase (SOD), catalase (CAT) and glutathione peroxidase (GPx). RESULTS: CuNG increased ROS generation and reduced MRP1 expression in EAC/Dox cells while only temporarily depleted glutathione (GSH) within 2 h in heart, kidney, liver and lung of EAC/Dox bearing mice, which were restored within 24 h. The level of liver Cu was observed to be inversely proportional to the level of GSH. Moreover, CuNG modulated SOD, CAT and GPx in different organs and thereby reduced oxidative stress. Thus nontoxic dose of CuNG may be utilized to reduce MRP1 expression and thus sensitize EAC/Dox cells to standard chemotherapy. Moreover, CuNG modulated SOD, CAT and and GPx activities to reduce oxidative stress in some vital organs of EAC/Dox bearing mice. CuNG treatment also helped to recover liver and renal function in EAC/Dox bearing mice. CONCLUSION: Based on our studies, we conclude that CuNG may be a promising candidate to sensitize drug resistant cancers in the clinic. BioMed Central 2006-11-15 /pmc/articles/PMC1660546/ /pubmed/17107616 http://dx.doi.org/10.1186/1471-2407-6-267 Text en Copyright © 2006 Mookerjee et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Article Mookerjee, Ananda Basu, Jayati Mookerjee Majumder, Surajit Chatterjee, Shilpak Panda, Gouri S Dutta, Pranabananda Pal, Smarajit Mukherjee, Pratima Efferth, Thomas Roy, Syamal Choudhuri, Soumitra K A novel copper complex induces ROS generation in doxorubicin resistant Ehrlich ascitis carcinoma cells and increases activity of antioxidant enzymes in vital organs in vivo |
title | A novel copper complex induces ROS generation in doxorubicin resistant Ehrlich ascitis carcinoma cells and increases activity of antioxidant enzymes in vital organs in vivo |
title_full | A novel copper complex induces ROS generation in doxorubicin resistant Ehrlich ascitis carcinoma cells and increases activity of antioxidant enzymes in vital organs in vivo |
title_fullStr | A novel copper complex induces ROS generation in doxorubicin resistant Ehrlich ascitis carcinoma cells and increases activity of antioxidant enzymes in vital organs in vivo |
title_full_unstemmed | A novel copper complex induces ROS generation in doxorubicin resistant Ehrlich ascitis carcinoma cells and increases activity of antioxidant enzymes in vital organs in vivo |
title_short | A novel copper complex induces ROS generation in doxorubicin resistant Ehrlich ascitis carcinoma cells and increases activity of antioxidant enzymes in vital organs in vivo |
title_sort | novel copper complex induces ros generation in doxorubicin resistant ehrlich ascitis carcinoma cells and increases activity of antioxidant enzymes in vital organs in vivo |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1660546/ https://www.ncbi.nlm.nih.gov/pubmed/17107616 http://dx.doi.org/10.1186/1471-2407-6-267 |
work_keys_str_mv | AT mookerjeeananda anovelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT basujayatimookerjee anovelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT majumdersurajit anovelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT chatterjeeshilpak anovelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT pandagouris anovelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT duttapranabananda anovelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT palsmarajit anovelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT mukherjeepratima anovelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT efferththomas anovelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT roysyamal anovelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT choudhurisoumitrak anovelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT mookerjeeananda novelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT basujayatimookerjee novelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT majumdersurajit novelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT chatterjeeshilpak novelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT pandagouris novelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT duttapranabananda novelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT palsmarajit novelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT mukherjeepratima novelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT efferththomas novelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT roysyamal novelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo AT choudhurisoumitrak novelcoppercomplexinducesrosgenerationindoxorubicinresistantehrlichascitiscarcinomacellsandincreasesactivityofantioxidantenzymesinvitalorgansinvivo |