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Toxicity of targeted therapy: Implications for response and impact of genetic polymorphisms
Sariah Liu1, Razelle Kurzrock1
1Division of Hematology and Oncology and Center for Personalized Cancer Therapy, University of California San Diego Moores Cancer Center, United States.
Abstract:
Targeted therapies have unique toxicity profiles. Common adverse events include rash, diarrhea, hypertension, hypothyroidism, proteinuria, depigmentation, and hepatotoxicity. Some of these toxicities are caused by on-target, mechanism-associated effects, which can be stratified as to whether or not the targets are relevant to response. Other toxicities are off-target and may be caused by the class of agent, e.g. antibody vs small molecule tyrosine kinase inhibitor, or by immune reactions or toxic metabolites. Both on- and off-target toxicities may be due to higher drug concentrations or altered end-organ sensitivity, which in turn can be a consequence of genetic polymorphisms controlling metabolism or tissue responsiveness. On-target toxicities are important to identify as some correlate with response and, hence, amelioration of these side effects is preferable to dose reduction or stopping drug. Toxicities secondary to relevant target impact may be recognized when distinct types of agents, such as antibodies and small molecule kinase inhibitors, with the same target have a similar side effect. For example, both bevacizumab and vascular endothelial growth factor receptor (VEGFR) kinase inhibitors cause hypertension; both epidermal growth factor receptor (EGFR) antibodies and kinase inhibitors cause rash; and these toxicities correlate with response. Herein we review common targeted agent-related toxicities, relevant genetic polymorphisms, and implications for response and patient management.
Insights
Targeted therapies can cause unique side effects like rash and hypertension. Identifying on-target toxicities is crucial as they may correlate with treatment response, guiding better patient management.
Area of Science:
- Oncology
- Pharmacology
- Genetics
Background:
- Targeted therapies offer precise cancer treatment but present unique toxicity profiles.
- Adverse events range from rash and diarrhea to hypertension and hepatotoxicity.
- Toxicities can stem from on-target or off-target effects, drug class, or genetic factors.
Purpose of the Study:
- To review common adverse events associated with targeted therapies.
- To explore the role of genetic polymorphisms in drug toxicity and response.
- To discuss implications for patient management and treatment strategies.
Main Methods:
- Literature review of targeted therapies and their associated toxicities.
- Analysis of on-target vs. off-target mechanisms of toxicity.
- Examination of genetic polymorphisms influencing drug metabolism and sensitivity.
Main Results:
- Common toxicities include rash, diarrhea, hypertension, hypothyroidism, proteinuria, depigmentation, and hepatotoxicity.
- On-target toxicities, particularly those linked to response (e.g., VEGFR and EGFR inhibitors), are key.
- Genetic polymorphisms can alter drug concentration and end-organ sensitivity, impacting toxicity.
Conclusions:
- Understanding targeted therapy toxicities is essential for effective patient management.
- Identifying on-target toxicities that correlate with response allows for optimized treatment.
- Genetic factors play a significant role in individual responses and toxicities to targeted agents.
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