Deep molecular response in chronic myeloid leukemia: the new goal of therapy?
François-Xavier Mahon1, Gabriel Etienne
1Authors' Affiliations: Laboratoire d'Hématologie, Centre Hospitalier Universitaire de Bordeaux and Laboratoire Hématopoïèse Leucémique et Cible Thérapeutique, Biothérapies des maladies génétiques et cancers, Inserm U1035, Université Bordeaux Ségalen; and Centre Régional de Lutte Contre le Cancer de Bordeaux et du Sud-Ouest, Institut Bergonié, Département d'Oncologie Médicale, Bordeaux, France.
Abstract:
Chronic myeloid leukemia (CML) is caused by formation of the BCR-ABL1 fusion protein. Tyrosine kinase inhibitors (TKI) that target BCR-ABL1 are now the standard of care for patients with CML. Molecular monitoring of residual BCR-ABL1 mRNA transcripts, typically performed using real-time quantitative PCR, has improved treatment management, particularly for patients with CML in chronic phase. Major molecular response (MMR; i.e., a ≥3-log reduction in BCR-ABL1 transcript levels) is used in current treatment guidelines to assess prognosis. Recent evidence suggests that deeper molecular responses (≥4-log reductions in BCR-ABL1 transcript levels), particularly when attained early during treatment, may have even better correlation with long-term outcomes, including survival and disease progression. Furthermore, achieving deep molecular response is a requirement for entering trials evaluating treatment-free remission (TFR). In this review, we discuss the evolving definition of minimal residual disease and the various levels of molecular response under evaluation in current clinical studies. In addition, the available clinical data on achieving MMR and deeper levels of molecular response with TKI therapy, the prognostic value of deep molecular response, and factors that may predict a patient's ability to achieve and sustain a deep molecular response on TKI therapy are also discussed. Available data from TFR studies are addressed. We discuss current knowledge of the ideal conditions for attempting treatment discontinuation, factors predictive of molecular relapse, when TKI therapy should be restarted, and which therapeutic strategies (when administered in the first-line setting and beyond) are expected to best enable successful TFR.
Insights
Deeper molecular responses in chronic myeloid leukemia (CML) correlate with better outcomes. Achieving deep molecular response is key for treatment-free remission (TFR) trials, guiding CML management and discontinuation strategies.
Area of Science:
- Hematology
- Oncology
- Molecular Biology
Background:
- Chronic myeloid leukemia (CML) is driven by the BCR-ABL1 fusion protein.
- Tyrosine kinase inhibitors (TKIs) targeting BCR-ABL1 are the standard CML treatment.
- Molecular monitoring of BCR-ABL1 mRNA via qPCR enhances CML management.
Purpose of the Study:
- To review evolving definitions of minimal residual disease in CML.
- To discuss the prognostic value of deep molecular response (DMR).
- To explore factors influencing DMR achievement and sustained TFR.
Main Methods:
- Review of current clinical studies on TKI therapy for CML.
- Analysis of data on major molecular response (MMR) and DMR.
- Examination of treatment-free remission (TFR) trial data.
Main Results:
- Deeper molecular responses (≥4-log reduction) show improved long-term outcomes.
- Early achievement of DMR correlates with better prognosis.
- DMR is a prerequisite for TFR eligibility.
Conclusions:
- Achieving and sustaining DMR is crucial for CML patients on TKIs.
- Understanding factors predicting DMR and relapse aids TFR success.
- Optimizing TKI strategies can facilitate successful treatment discontinuation.
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