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Updated: Jan 28, 2026

An Organotypic High Throughput System for Characterization of Drug Sensitivity of Primary Multiple Myeloma Cells
Published on: July 15, 2015
NVP-BEZ235-induced autophagy as a potential therapeutic approach for multiple myeloma
Yongyong Ma1,2, Zhouxiang Jin3, Kang Yu1
1Department of Hematology, The First Affiliated Hospital of Wenzhou Medical University 2 Nanbai Xiang, Wenzhou 325000, China.
Background:
The PI3K/Akt/mTOR pathway is constitutively activated in human multiple myeloma (MM) cell lines and in freshly isolated plasmocytes from patients with MM. The mTOR signaling pathway has been designated an attractive anti-tumor target in multiple myeloma. NVP-BEZ235, a novel, dual class I PI3K/mTOR inhibitor, is an imidazoquinoline derivative. NVP-BEZ235 binds to the ATP-binding clefts of PI3K and mTOR kinase, thereby inhibiting their activities. Increasing evidence shows that NVP-BEZ235 is able to effectively and specifically reverse the hyperactivation of the PI3K/mTOR pathway, resulting not only in potent antiproliferative and antitumor activities in a broad range of cancer cell lines and experimental tumors but also in autophagy.
Method:
The antitumor, apoptosis, and autophagy effects of NVP-BEZ235 were measured in three MM cell lines, two leukemia cell lines, and primary CD138+ myeloma cells from MM patients and nude mouse MM models. In addition, the relationships between autophagy, cell death and apoptosis induced by NVP-BEZ235 were analyzed in MM cells. Furthermore, we explored the mechanism of autophagy induced by NVP-BEZ235 in MM cells.
Results:
NVP-BEZ235 inhibited proliferation and induced apoptosis and autophagy in MM cells and in primary MM cells from patients and nude mouse MM models. Autophagy played an important role in the cell death and apoptosis of MM cell lines induced by NVP-BEZ235, and the mechanism involved the mTOR2-Akt-FOXO3a-BNIP3 pathway.
Conclusions:
In this study, NVP-BEZ235 showed the strongest antitumor and autophagy induction activity. Moreover, the mechanism involved the mTOR2-Akt-FOXO3a-BNIP3 pathway. Our study lays a theoretical foundation for NVP-BEZ235 clinical application.
Insights
The dual PI3K/mTOR inhibitor NVP-BEZ235 effectively combats multiple myeloma by inhibiting cell growth and inducing apoptosis and autophagy. This compound targets the mTOR2-Akt-FOXO3a-BNIP3 pathway, showing promise for clinical application.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The PI3K/Akt/mTOR pathway is frequently hyperactivated in multiple myeloma (MM).
- Targeting the mTOR signaling pathway presents a promising anti-tumor strategy for MM.
- NVP-BEZ235 is a novel dual inhibitor of PI3K and mTOR kinases.
Purpose of the Study:
- To evaluate the antitumor, apoptosis, and autophagy effects of NVP-BEZ235 in multiple myeloma.
- To elucidate the mechanism of NVP-BEZ235-induced autophagy in MM cells.
- To explore the role of autophagy in NVP-BEZ235-mediated cell death.
Main Methods:
- Assessed antitumor, apoptosis, and autophagy effects of NVP-BEZ235 in MM cell lines, primary MM cells, and mouse models.
- Analyzed the relationship between autophagy, cell death, and apoptosis induced by NVP-BEZ235.
- Investigated the molecular mechanism of NVP-BEZ235-induced autophagy.
Main Results:
- NVP-BEZ235 demonstrated significant inhibition of proliferation and induction of apoptosis and autophagy in MM models.
- Autophagy was identified as a key mediator of NVP-BEZ235-induced cell death and apoptosis.
- The mechanism involved the mTOR2-Akt-FOXO3a-BNIP3 pathway.
Conclusions:
- NVP-BEZ235 exhibits potent antitumor and autophagy-inducing activity in multiple myeloma.
- The study identified the mTOR2-Akt-FOXO3a-BNIP3 pathway as crucial for NVP-BEZ235's mechanism of action.
- Findings support the potential clinical application of NVP-BEZ235 for treating multiple myeloma.
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