Managing toxicities of Bruton tyrosine kinase inhibitors
Andrew Lipsky1, Nicole Lamanna1
1Columbia University Medical Center, New York, NY.
Abstract:
Inhibition of Bruton's tyrosine kinase (BTK) has revolutionized the treatment landscape for patients with chronic lymphocytic leukemia (CLL). By targeting this critical kinase in proximal B-cell receptor signaling, BTK inhibitors (BTKis) impair cell proliferation, migration, and activation of NF-κB. Clinically, because indefinite inhibition is a mainstay of therapy, there is an extended period of exposure in which adverse effects can develop. Given the impressive efficacy and activity of BTKis in the treatment of patients with CLL, appropriate management of treatment-emergent adverse events (AEs) is of paramount importance. Here we review the BTKi landscape and present the available toxicity and safety data for each agent. The long-term toxicity profile of ibrutinib, a first-in-class inhibitor, is well characterized and includes a clinically significant incidence of cardiac arrhythmias, bleeding, infection, diarrhea, arthralgias, and hypertension. Acalabrutinib, the initial second-generation BTKi to earn approval from the US Food and Drug Administration, demonstrates improved kinase selectivity for BTK, with commonly observed adverse reactions including infection, headache, and diarrhea. Mediated by both on-target inhibition of BTK and variable off-target inhibition of other kinases including interleukin-2-inducible T-cell kinase (ITK), tyrosine-protein kinase (TEC), and endothelial growth factor receptor (EGFR), the toxicity profile of BTKis is closely linked to their pattern of kinase binding. Other emerging BTKis include second-generation agents with variable degrees of kinase selectivity and third-generation agents that exhibit reversible noncovalent binding to BTK. We also highlight critical considerations for the prevention and monitoring of AEs and offer practical management strategies for treatment-emergent toxicities.
Insights
Bruton
Area of Science:
- Oncology
- Pharmacology
- Immunology
Background:
- Bruton's tyrosine kinase (BTK) inhibitors (BTKis) have transformed chronic lymphocytic leukemia (CLL) treatment.
- BTKis target B-cell receptor signaling, impacting cell proliferation, migration, and NF-κB activation.
- Long-term BTKi use necessitates careful management of emergent adverse events (AEs).
Observation:
- First-generation BTKi, ibrutinib, has a known toxicity profile including cardiac arrhythmias, bleeding, infection, diarrhea, arthralgias, and hypertension.
- Second-generation BTKi, acalabrutinib, shows improved BTK selectivity with AEs like infection, headache, and diarrhea.
- BTKi toxicity is linked to on-target BTK inhibition and off-target effects on other kinases (ITK, TEC, EGFR).
Findings:
- Emerging BTKis include second-generation agents with varied selectivity and third-generation agents with reversible binding.
- Understanding BTKi kinase binding patterns is crucial for predicting and managing toxicities.
- Effective prevention, monitoring, and management strategies for BTKi-emergent AEs are essential.
Implications:
- Optimizing BTKi therapy requires a comprehensive understanding of their safety profiles and AE management.
- Continued research into novel BTKis with improved selectivity and reduced toxicity is ongoing.
- Personalized treatment approaches considering individual patient risk factors and AE profiles are key for successful CLL management.
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