| Literature DB >> 27565383 |
Vidal Jarauta1, Paula Jaime1, Oscar Gonzalo1, Diego de Miguel1, Ariel Ramírez-Labrada1, Luis Martínez-Lostao2, Alberto Anel1, Julián Pardo3, Isabel Marzo1, Javier Naval4.
Abstract
The proteasome inhibitor bortezomib is now the cornerstone of combination therapy of multiple myeloma (MM). Carfilzomib, a second-generation inhibitor, has shown a substantial benefit vs bortezomib in combination regimes. Here we have analyzed in detail the mechanism of cell death induced by carfilzomib and its crosstalk with autophagy and applied the results to the in vivo treatment of MM in a mouse model. Carfilzomib induced apoptosis essentially by the intrinsic pathway, through the up-regulation of Puma and Noxa proteins followed by the interaction of Puma, Noxa and Bim with Bax and of Noxa with Bak. Carfilzomib also produces an increase in the formation of autophagosomes but, as apoptosis progresses, autophagy is disrupted, probably owing to Beclin 1 and p62 inactivation. Cotreatment with chloroquine, which blocks autophagy, strongly potentiated apoptosis in vitro and in vivo. Accordingly, combination therapy with carfilzomib plus chloroquine was highly effective in the treatment of MM in a mouse xenograft model. Chloroquine also enhanced carfilzomib-induced calreticulin exposure in MM cells undergoing apoptosis, increasing the immunogenic ability of carfilzomib. These results support design of trials combining carfilzomib with chloroquine to improve MM therapy.Entities:
Keywords: Apoptosis; Autophagy; Carfilzomib; Immunogenic cell death; Myeloma
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Year: 2016 PMID: 27565383 DOI: 10.1016/j.canlet.2016.08.019
Source DB: PubMed Journal: Cancer Lett ISSN: 0304-3835 Impact factor: 8.679