TY - JOUR
T1 - SDX-101, the R-enantiomer of etodolac, induces cytotoxicity, overcomes drug resistance, and enhances the activity of dexamethasone in multiple myeloma
AU - Yasui, Hiroshi
AU - Hideshima, Teru
AU - Hamasaki, Makoto
AU - Roccaro, Aldo M
AU - Shiraishi, Norihiko
AU - Kumar, Shaji
AU - Tassone, Pierfrancesco
AU - Ishitsuka, Kenji
AU - Raje, Noopur
AU - Tai, Yu-Tzu
AU - Podar, Klaus
AU - Chauhan, Dharminder
AU - Leoni, Lorenzo M
AU - Kanekal, Sarath
AU - Elliott, Gary
AU - Munshi, Nikhil C
AU - Anderson, Kenneth C
PY - 2005/7/15
Y1 - 2005/7/15
N2 - In this study we report that R-etodolac (SDX-101), at clinically relevant concentrations, induces potent cytotoxicity in drug-sensitive multiple myeloma (MM) cell lines, as well as in dexamethasone (MM.1R)-, doxorubicin (Dox40/RPMI8226)-, and bortezomib (DHL4)-resistant cell lines. Immunoblot analysis demonstrates that R-etodolac induces apoptosis characterized by caspase-8, -9, and -3 and PARP (poly-ADP [adenosine diphosphate]-ribose polymerase) cleavage and down-regulation of cyclin D1 expression. Subcytotoxic doses of R-etodolac up-regulate myeloid cell leukemia-1 proapoptotic variant (Mcl-1S), while enhancing dexamethasone (Dex)-induced caspase activation and apoptosis. The combination of R-etodolac with Dex results in a highly synergistic cytotoxic effect. R-etodolac also induces apoptosis against primary cells isolated from patients with MM refractory to chemotherapy. Although interleukin 6 (IL-6) and insulin-like growth factor-1 (IGF-1) abrogate Dex-induced MM cell cytotoxicity, neither IL-6 nor IGF-1 protects against R-etodolac-induced cytotoxicity in MM cells. R-etodolac also inhibits viability of MM cells adherent to bone marrow stromal cells (BMSCs), thereby overcoming a mechanism of drug resistance commonly observed with other conventional chemotherapeutic agents. Our data, therefore, indicate that R-etodolac circumvents drug resistance in MM cells at clinically relevant concentrations, targets Mcl-1, and can be synergistically combined with Dex.
AB - In this study we report that R-etodolac (SDX-101), at clinically relevant concentrations, induces potent cytotoxicity in drug-sensitive multiple myeloma (MM) cell lines, as well as in dexamethasone (MM.1R)-, doxorubicin (Dox40/RPMI8226)-, and bortezomib (DHL4)-resistant cell lines. Immunoblot analysis demonstrates that R-etodolac induces apoptosis characterized by caspase-8, -9, and -3 and PARP (poly-ADP [adenosine diphosphate]-ribose polymerase) cleavage and down-regulation of cyclin D1 expression. Subcytotoxic doses of R-etodolac up-regulate myeloid cell leukemia-1 proapoptotic variant (Mcl-1S), while enhancing dexamethasone (Dex)-induced caspase activation and apoptosis. The combination of R-etodolac with Dex results in a highly synergistic cytotoxic effect. R-etodolac also induces apoptosis against primary cells isolated from patients with MM refractory to chemotherapy. Although interleukin 6 (IL-6) and insulin-like growth factor-1 (IGF-1) abrogate Dex-induced MM cell cytotoxicity, neither IL-6 nor IGF-1 protects against R-etodolac-induced cytotoxicity in MM cells. R-etodolac also inhibits viability of MM cells adherent to bone marrow stromal cells (BMSCs), thereby overcoming a mechanism of drug resistance commonly observed with other conventional chemotherapeutic agents. Our data, therefore, indicate that R-etodolac circumvents drug resistance in MM cells at clinically relevant concentrations, targets Mcl-1, and can be synergistically combined with Dex.
KW - Antineoplastic Agents/administration & dosage
KW - Apoptosis/drug effects
KW - Bone Marrow Cells/drug effects
KW - Caspases/metabolism
KW - Cell Adhesion/drug effects
KW - Cell Line, Tumor
KW - Cyclin D1/metabolism
KW - Dexamethasone/administration & dosage
KW - Drug Resistance, Neoplasm
KW - Drug Synergism
KW - Etodolac/administration & dosage
KW - Humans
KW - Insulin-Like Growth Factor I/pharmacology
KW - Interleukin-6/pharmacology
KW - Multiple Myeloma/drug therapy
KW - Myeloid Cell Leukemia Sequence 1 Protein
KW - Neoplasm Proteins/metabolism
KW - Poly(ADP-ribose) Polymerases/metabolism
KW - Proto-Oncogene Proteins c-bcl-2/metabolism
KW - Stereoisomerism
UR - https://www.scopus.com/pages/publications/22144481007
U2 - 10.1182/blood-2005-02-0838
DO - 10.1182/blood-2005-02-0838
M3 - Journal article
C2 - 15802527
SN - 0006-4971
VL - 106
SP - 706
EP - 712
JO - Blood
JF - Blood
IS - 2
ER -