TY - JOUR
T1 - Preclinical efficacy and biological effects of the oral proteasome inhibitor ixazomib in diffuse large B-cell lymphoma
AU - Liu, Wei
AU - Chen, Juan
AU - Tamayo, Archito T.
AU - Ruan, Changgeng
AU - Li, Li
AU - Zhou, Shouhao
AU - Shen, Chan
AU - Young, Ken H.
AU - Westin, Jason
AU - Davis, Richard E.
AU - Hu, Shimin
AU - Medeiros, Leonard J.
AU - Ford, Richard J.
AU - Pham, Lan V.
N1 - Funding Information:
the National Natural Science Foundation of China (No. 31100944), the Natural Science Foundation of Jiangsu Province, China (No. BK2009107), and the Research Fund for the Visiting Scholar Program by the China Scholarship Council. The Characterized Cell Line Core and the Flow Cytometry and Cellular Imaging Core Facilities at The University of Texas MD Anderson Cancer Center are funded by the U.S. National Cancer Institute through a Cancer Center Support Grant (P30CA016672). We thank Kathryn Hale for editing assistance on the manuscript.
Funding Information:
This work was supported financially by grants from
Publisher Copyright:
© Liu et al.
PY - 2018
Y1 - 2018
N2 - Despite advances in deciphering the molecular pathogenesis of diffuse large B-cell lymphoma (DLBCL), patients with relapsed/refractory disease, particularly those with adverse genetic features (e.g., mutated p53 or double hit lymphoma (DHL)) have very poor prognoses, and effective therapies are lacking. In this study we examined the preclinical efficacy and associated biological effects of the first oral proteasome inhibitor, ixazomib, in DLBCL in vitro and in vivo models. We demonstrated that ixazomib exhibited anti-tumor activities in 28 representative DLBCL cell lines, 10 primary DLBCL samples, and a DHL xenotransplant mouse model, at clinically achievable drug concentrations. Ixazomib sensitivity in DLBCL cells is correlated with immunoproteasomal activity; stimulating lymphoma cells with interferon gamma induced immunoproteasome activity and sensitized these cells to ixazomib. In addition, we showed that ixazomib induces apoptosis and the DNA damage response pathway, through activation of the checkpoint kinase 2 (CHK2). Hence, pharmacological inhibition of CHK2 enhances the anti-tumor activity of ixazomib in DLBCL cells. Our results indicate that ixazomib is an effective proteasome inhibitor active in DLBCL, including DHL, and its combination with a CHK2 inhibitor offers a potentially more robust therapeutic regimen for treatment-resistant DLBCL.
AB - Despite advances in deciphering the molecular pathogenesis of diffuse large B-cell lymphoma (DLBCL), patients with relapsed/refractory disease, particularly those with adverse genetic features (e.g., mutated p53 or double hit lymphoma (DHL)) have very poor prognoses, and effective therapies are lacking. In this study we examined the preclinical efficacy and associated biological effects of the first oral proteasome inhibitor, ixazomib, in DLBCL in vitro and in vivo models. We demonstrated that ixazomib exhibited anti-tumor activities in 28 representative DLBCL cell lines, 10 primary DLBCL samples, and a DHL xenotransplant mouse model, at clinically achievable drug concentrations. Ixazomib sensitivity in DLBCL cells is correlated with immunoproteasomal activity; stimulating lymphoma cells with interferon gamma induced immunoproteasome activity and sensitized these cells to ixazomib. In addition, we showed that ixazomib induces apoptosis and the DNA damage response pathway, through activation of the checkpoint kinase 2 (CHK2). Hence, pharmacological inhibition of CHK2 enhances the anti-tumor activity of ixazomib in DLBCL cells. Our results indicate that ixazomib is an effective proteasome inhibitor active in DLBCL, including DHL, and its combination with a CHK2 inhibitor offers a potentially more robust therapeutic regimen for treatment-resistant DLBCL.
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U2 - 10.18632/oncotarget.20378
DO - 10.18632/oncotarget.20378
M3 - Article
C2 - 29416618
AN - SCOPUS:85040566832
SN - 1949-2553
VL - 9
SP - 346
EP - 360
JO - Oncotarget
JF - Oncotarget
IS - 1
ER -