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C6-Ceramide Nanoliposomes Target the Warburg Effect in Chronic Lymphocytic Leukemia.

Authors :
Ryland, Lindsay K.
Doshi, Ushma A.
Shanmugavelandy, Sriram S.
Fox, Todd E.
Aliaga, Cesar
Broeg, Kathleen
Baab, Kendall Thomas
Young, Megan
Khan, Osman
Haakenson, Jeremy K.
Jarbadan, Nancy Ruth
Liao, Jason
Wang, Hong-Gang
Feith, David J.
Loughran Jr, Thomas P.
Liu, Xin
Kester, Mark
Source :
PLoS ONE. Dec2013, Vol. 8 Issue 12, p1-1. 1p.
Publication Year :
2013

Abstract

Ceramide is a sphingolipid metabolite that induces cancer cell death. When C6-ceramide is encapsulated in a nanoliposome bilayer formulation, cell death is selectively induced in tumor models. However, the mechanism underlying this selectivity is unknown. As most tumors exhibit a preferential switch to glycolysis, as described in the “Warburg effect”, we hypothesize that ceramide nanoliposomes selectively target this glycolytic pathway in cancer. We utilize chronic lymphocytic leukemia (CLL) as a cancer model, which has an increased dependency on glycolysis. In CLL cells, we demonstrate that C6-ceramide nanoliposomes, but not control nanoliposomes, induce caspase 3/7-independent necrotic cell death. Nanoliposomal ceramide inhibits both the RNA and protein expression of GAPDH, an enzyme in the glycolytic pathway, which is overexpressed in CLL. To confirm that ceramide targets GAPDH, we demonstrate that downregulation of GAPDH potentiates the decrease in ATP after ceramide treatment and exogenous pyruvate treatment as well as GAPDH overexpression partially rescues ceramide-induced necrosis. Finally, an in vivo murine model of CLL shows that nanoliposomal C6-ceramide treatment elicits tumor regression, concomitant with GAPDH downregulation. We conclude that selective inhibition of the glycolytic pathway in CLL cells with nanoliposomal C6-ceramide could potentially be an effective therapy for leukemia by targeting the Warburg effect. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
19326203
Volume :
8
Issue :
12
Database :
Academic Search Index
Journal :
PLoS ONE
Publication Type :
Academic Journal
Accession number :
93398181
Full Text :
https://doi.org/10.1371/journal.pone.0084648