Copper compound induces autophagy and apoptosis of glioma cells by reactive oxygen species and jnk activation

Author:

Trejo-Solís Cristina,Jimenez-Farfan Dolores,Rodriguez-Enriquez Sara,Fernandez-Valverde Francisca,Cruz-Salgado Arturo,Ruiz-Azuara Lena,Sotelo Julio

Abstract

Abstract Background Glioblastoma multiforme (GBM) is the most aggressive of the primary brain tumors, with a grim prognosis despite intensive treatment. In the past decades, progress in research has not significantly increased overall survival rate. Methods The in vitro antineoplastic effect and mechanism of action of Casiopeina III-ia (Cas III-ia), a copper compound, on rat malignant glioma C6 cells was investigated. Results Cas III-ia significantly inhibited cell proliferation, inducing autophagy and apoptosis, which correlated with the formation of autophagic vacuoles, overexpression of LC3, Beclin 1, Atg 7, Bax and Bid proteins. A decrease was detected in the mitochondrial membrane potential and in the activity of caspase 3 and 8, together with the generation of intracellular reactive oxygen species (ROS) and increased activity of c-jun NH2-terminal kinase (JNK). The presence of 3-methyladenine (as selective autophagy inhibitor) increased the antineoplastic effect of Cas III-ia, while Z-VAD-FMK only showed partial protection from the antineoplastic effect induced by Cas III-ia, and ROS antioxidants (N-acetylcysteine) decreased apoptosis, autophagy and JNK activity. Moreover, the JNK –specific inhibitor SP600125 prevented Cas III-ia-induced cell death. Conclusions Our data suggest that Cas III-ia induces cell death by autophagy and apoptosis, in part due to the activation of ROS –dependent JNK signaling. These findings support further studies of Cas III-ia as candidate for treatment of human malignant glioma.

Publisher

Springer Science and Business Media LLC

Subject

Cancer Research,Genetics,Oncology

Reference53 articles.

1. DeAngelis LM, Burger PC, Green SB, Cairncross JC: Malignant glioma: who benefits from adjuvant chemotherapy?. Ann Neurol. 1998, 44 (4): 691-695. 10.1002/ana.410440418.

2. DeAngelis LM: Brain tumors. N Engl J Med. 2001, 344 (2): 114-123. 10.1056/NEJM200101113440207.

3. Park CM, Park MJ, Kwak HJ, Moon SI, Yo DH, Lee HC, Park IC, Rhee CH, Hong SI: Induction of p53-mediated apoptosis and recovery of chemosensitivity through p53 transduction in human glioblastoma cells by cisplatin. Int J Oncol. 2006, 1 (2): 119-125.

4. Ruiz-Ramírez L, De La Rosa ME, Gracia-Mora I, Mendoza A, Pérez G, Ferrer-Sueta G, Tovar A, Breña M, Gutierrez P, Cruces-Martinez MP: Casiopeinas, metal-based drugs a new class of antineoplastic and genotoxic compounds. J Inorganic Biochem. 1995, 207: 2-3.

5. De Vizcaya-Ruiz A, Rivero-Muller A, Ruiz-Ramirez L, Kass GE, Kelland LR, Orr RM, Dobrota M: Induction of apoptosis by a novel copper-based anticancer compound, casiopeina II, in L1210 murine leukaemia and CH1 human ovarian carcinoma cells. Toxicol in Vitro. 2000, 14 (1): 1-5. 10.1016/S0887-2333(99)00082-X.

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