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Proteasome Inhibitor-Related Cardiotoxicity: Mechanisms, Diagnosis, and Management
Perry Wu1, Ohad Oren2, Morie A Gertz2
1Department of Medicine, Division of General Internal Medicine, Ronald Reagan-UCLA Medical Center, Los Angeles, CA, USA.
Purpose Of Review:
Multiple myeloma is the second most common hematologic malignancy in the USA, with over 32,000 new cases and nearly 13,000 deaths expected in 2019. The past few decades in myeloma research have yielded significant advances, leading to the expansion of novel anti-myeloma agents. This review describes the incidence and mechanisms of cardiotoxicity for the FDA-approved proteasome inhibitors in myeloma and proposes strategies to assess and manage resultant cardiovascular adverse events.
Recent Findings:
Proteasome inhibition precipitates protein aggregation and alters transcriptional activation of NF-κB targets which contributes to a pro-apoptotic signaling cascade in myeloma cells. Similar effects in cardiomyocytes and vascular smooth muscle endothelium, along with off-target downregulation of autophagy and signaling alterations of nitric oxide homeostasis, may be linked to observed cardiotoxic effects. There is preliminary evidence for cardioprotective potential for rutin, dexrazoxane, and apremilast that could have clinical applicability in the future. Of the proteasome inhibitors used in clinical practice, carfilzomib is the most strongly associated with cardiotoxicity. Patients with anticipated carfilzomib treatment should undergo assessment and optimization of baseline cardiovascular risk, with close monitoring during treatment. Previous clinical trials were not specifically designed to assess proteasome inhibitor-related cardiotoxicity, creating a need for future studies to identify and risk stratify vulnerable individuals and to develop potential cardioprotective strategies in attenuating cardiac injury.
Insights
Proteasome inhibitors used for multiple myeloma can cause heart damage. Carfilzomib poses the highest risk, necessitating cardiovascular assessment and monitoring for patients.
Area of Science:
- Hematologic Malignancies
- Cardiovascular Adverse Events
- Proteasome Inhibitors
Background:
- Multiple myeloma is a prevalent hematologic malignancy with increasing incidence.
- Advances in research have led to novel therapeutic agents for myeloma treatment.
- Cardiotoxicity is a significant concern with emerging anti-myeloma therapies.
Purpose of the Study:
- To review the incidence and mechanisms of cardiotoxicity associated with FDA-approved proteasome inhibitors in multiple myeloma.
- To propose strategies for assessing and managing cardiovascular adverse events related to these therapies.
Main Methods:
- Review of literature on proteasome inhibitors and their cardiovascular effects.
- Analysis of mechanisms linking proteasome inhibition to cardiomyocyte and endothelial dysfunction.
- Evaluation of preliminary cardioprotective agents.
Main Results:
- Proteasome inhibition can induce cardiotoxicity through mechanisms affecting protein aggregation, NF-κB signaling, autophagy, and nitric oxide homeostasis.
- Carfilzomib demonstrates the strongest association with cardiotoxicity among currently used proteasome inhibitors.
- Rutin, dexrazoxane, and apremilast show preliminary cardioprotective potential.
Conclusions:
- Patients undergoing carfilzomib treatment require baseline cardiovascular risk assessment and close monitoring.
- Current clinical trials lack specific designs to evaluate proteasome inhibitor-related cardiotoxicity.
- Future research is needed to identify at-risk individuals and develop cardioprotective strategies.
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