Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10915633 | Neoplasia | 2005 | 12 Pages |
Abstract
In this work, we investigated the effects of Casiopeina Il-gly (Cas ILgly)-a new copper compound exhibiting antineoplastic activity-on glioma C6 cells under both in vitro and in vivo conditions, as an approach to identify potential therapeutic agents against malignant glioma. The exposure of C6 cells to Cas Ilgly significantly inhibited cell proliferation, increased reactive oxygen species (ROS) formation, and induced apoptosis in a dose-dependent manner. In cultured C6 cells, Cas Ilgly caused mitochondrio-nuclear translocation of apoptosis induction factor (AIF) and endonuclease G at all concentrations tested; in contrast, fragmentation of nucleosomal DNA, cytochrome c release, and caspase-3 activation were observed at high concentrations. Administration of N-acetyl-l-cystein, an antioxidant, resulted in significant inhibition of AIF translocation, nucleosomal DNA fragmentation, and caspase-3 activation induced by Cas Ilgly. These results suggest that caspase-dependent and caspase-independent pathways both participate in apoptotic events elicited by Cas Ilgly. ROS formation induced by Cas Ilgly might also be involved in the mitochondrio-nuclear translocation of AIF and apoptosis. In addition, treatment of glioma C6-positive rats with Cas Ilgly reduced tumor volume and mitotic and cell proliferation indexes, and increased apoptotic index. Our findings support the use of Cas Ilgly for the treatment of malignant gliomas.
Keywords
NACECLPMSFPAGEDCFH-DAR123NBTTBARSSGPTGPXEndonuclease GDcfPCNASGOTCyt CFACSGGTPCDBCIP4-nitro blue tetrazolium chlorideMTTROSalanine transaminaseProliferating Cell Nuclear AntigenEndo GAIFpolyacrylamide gel electrophoresisenhanced chemiluminescenceaspartate transaminaseTUNELApoptosisRhodamine 123SODSuperoxide dismutasecytochrome cfluorescence-activated cell sorterProgrammed cell deaththiobarbituric acid reactive substancesgamma glutamyl transferaseglutathione peroxidaseReactive oxygen species
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Authors
Cristina Trejo-SolÃs, Guadalupe Palencia, Sergio Zuñiga, Andrea RodrÃguez-Ropon, Laura Osorio-Rico, Sanchez Torres Luvia, Isabel Gracia-Mora, Lucrecia Marquez-Rosado, Aurora Sánchez, Miguel E. Moreno-GarcÃa, Arturo Cruz, MarÃa Elena Bravo-Gómez,