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Updated: Jun 16, 2026

Modeling Chemotherapy Resistant Leukemia In Vitro
Published on: February 9, 2016
Enhancing activity and overcoming chemoresistance in hematologic malignancies with bortezomib: preclinical
1Department of Medicine, Roswell Park Cancer Institute, Buffalo, NY, USA.
Background:
Proteasome inhibition results in antitumor activity through various mechanisms, including disruption of cell cycle progression and control, induction of apoptosis, and inhibition of proliferation.
Design:
This review assesses preclinical data on the ability of bortezomib, the first proteasome inhibitor approved for clinical use, to enhance antitumor activity of other agents and to overcome chemoresistance in hematologic malignancies and discusses mechanisms by which such activity arises.
Results:
Bortezomib has been shown to affect multiple cellular pathways and levels of numerous intracellular proteins, including targets of importance in hematologic malignancies. These mechanisms have shown additive or synergistic effects in vitro and in vivo with those of conventional therapeutic and novel targeted agents. Additionally, targets of proteasome inhibition are implicated in resistance or lack of sensitivity to different therapies. Bortezomib in combination with other agents has been shown to overcome resistance to those agents and to resensitize cells to agents to which they were previously unresponsive.
Conclusions:
This review indicates the potential utility of proteasome inhibition for substantially enhancing activity of other therapeutic approaches. It explains the mechanisms responsible for the observed clinical activity of bortezomib-based regimens and elucidates novel therapeutic approaches through identification of combinations of agents with complimentary mechanisms of action.
Insights
Proteasome inhibition, using bortezomib, enhances antitumor activity and overcomes chemoresistance in blood cancers. This approach combines agents with complementary mechanisms for improved therapeutic outcomes.
Area of Science:
- Oncology
- Pharmacology
Background:
- Proteasome inhibition demonstrates antitumor effects via cell cycle disruption, apoptosis induction, and proliferation inhibition.
- Bortezomib is the first approved proteasome inhibitor with significant clinical applications.
Purpose of the Study:
- To review preclinical data on bortezomib's ability to enhance antitumor activity of other agents.
- To assess bortezomib's role in overcoming chemoresistance in hematologic malignancies.
- To discuss the underlying mechanisms of bortezomib's activity.
Main Methods:
- Review of preclinical studies on bortezomib.
- Analysis of bortezomib's effects on cellular pathways and protein levels.
- Assessment of combination therapies involving bortezomib.
Main Results:
- Bortezomib affects multiple cellular pathways and protein levels crucial in hematologic malignancies.
- Additive or synergistic effects observed with conventional and novel targeted agents in vitro and in vivo.
- Bortezomib overcomes resistance and resensitizes cells to previously ineffective therapies.
Conclusions:
- Proteasome inhibition holds significant potential for enhancing therapeutic approaches.
- Bortezomib-based regimens exhibit clinical activity through specific mechanisms.
- Identification of complementary agent combinations offers novel therapeutic strategies.
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