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A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
Dasatinib in the treatment of imatinib refractory chronic myeloid leukemia
Radhakrishnan Ramchandren1, Charles A Schiffer
1Division of Hematology/Oncology, Karmanos Cancer Institute, Wayne State University School of Medicine, Detroit, MI, USA.
Abstract:
The development of imatinib for the treatment of chronic myeloid leukemia (CML) has proven to be an example of medical success in the era of targeted therapy. However, imatinib resistance or intolerance occurs in a substantial number of patients. Additionally, patients who have progressed beyond the chronic phase of CML do relatively poorly with imatinib therapy. Mechanisms of imatinib resistance include BCR-ABL point mutations resulting in decreased imatinib binding, as well as mutation-independent causes of resistance such as SRC family kinase dysregulation, BCR-ABL gene amplification, drug influx/efflux mechanisms and other poorly understood processes. The options for therapy in these patients include stem cell transplantation, imatinib dose escalation as well as the use of second-generation tyrosine kinase inhibitors. Dasatinib is a second-generation multi-kinase inhibitor with several theoretical and mechanistic advantages over imatinib. Moreover, several studies have evaluated dasatinib in patients who have progressed on imatinib therapy with encouraging results. Other novel agents such as mTOR inhibitors, bosutinib and INNO 406 have also shown promise in this setting. Although treatment options have increased, the choice of second-line therapy in patients with CML is influenced by concerns surrounding the duration of response as well as toxicity. Consequently, there is no agreed upon optimal second-line agent. This paper reviews the current data and attempts to address these issues.
Insights
Imatinib resistance is common in chronic myeloid leukemia (CML) patients. Second-generation tyrosine kinase inhibitors like dasatinib offer new treatment options for CML, though optimal choices remain debated.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Imatinib is a successful targeted therapy for chronic myeloid leukemia (CML).
- A significant number of CML patients develop resistance or intolerance to imatinib.
- Alternative therapies are needed for CML patients who progress beyond the chronic phase or are intolerant to imatinib.
Purpose of the Study:
- To review current data on imatinib resistance in CML.
- To evaluate second-generation tyrosine kinase inhibitors (TKIs) as alternative therapies.
- To discuss the challenges in selecting optimal second-line treatment for CML.
Main Methods:
- Review of existing clinical studies and mechanistic data on imatinib resistance.
- Analysis of data for second-generation TKIs, including dasatinib, bosutinib, and INNO 406.
- Discussion of resistance mechanisms, including BCR-ABL mutations and other factors.
Main Results:
- Imatinib resistance mechanisms are diverse, involving BCR-ABL mutations and other pathways.
- Second-generation TKIs like dasatinib show promise in patients resistant or intolerant to imatinib.
- Other novel agents are also being investigated for CML treatment.
Conclusions:
- Despite advances, optimal second-line therapy for CML remains a challenge due to efficacy and toxicity concerns.
- Further research is needed to establish the best treatment strategies for CML patients with resistance or intolerance.
- The landscape of CML treatment is evolving with the introduction of new targeted therapies.
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