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Comprehensive Protocol to Sample and Process Bone Marrow for Measuring Measurable Residual Disease and Leukemic Stem Cells in Acute Myeloid Leukemia
Published on: March 5, 2018
Detection of minimal residual disease in acute myelogenous leukemia
1Institute of Hematology, Chaim Sheba Medical Center, Tel Hashomer and Sackler School of Medicine, Tel Aviv University, Tel Aviv, Israel. praanani@012.net.il
Abstract:
Acute myelogenous leukemia (AML) is considered to be in complete remission when fewer than 5% of the cells in bone marrow are blasts. Nevertheless, approximately two thirds of patients relapse due to persisting leukemic blasts. The persistence of these cells, below the threshold of morphological detection, is termed minimal residual disease (MRD) and various methods are used for its detection. These methods include classical cytogenetics, fluorescence in situ hybridization, qualitative and quantitative RT-PCR and multiparametric flow cytometry. Currently, less than half of the AML patients have a specific marker detectable by RT-PCR techniques. The major specific molecular markers are involvement of the MLL gene with up to 50 different partners and partial tandem duplications, the core binding factor leukemias with AML1/ETO and CBFbeta/MYH11 rearrangements, PML/RARalpha in acute promyelocytic leukemia, internal tandem duplications and mutations of FLT3 and some other rare translocations. In addition, several other genes show abnormal expression levels in AML, including the Wilms tumor gene, the PRAME gene and Ig/TCR rearrangements. Most of these genetic abnormalities can be detected by qualitative but more importantly by quantitative RT-PCR. The kinetics of disappearance of molecular markers in AML differs between the various types of leukemias, although at least a 2 log reduction of transcript after induction chemotherapy is necessary for long-term remission in all types. Conversely, the change of PCR from negativity to positivity is highly predictive of relapse. Whereas in acute lymphoblastic leukemia, multiparametric flow cytometry is an established method for MRD detection, this is less so in AML. The reason is the absence of well-characterized leukemia-specific antigens and the existence of phenotypic changes at relapse. On the other hand, this method is convenient due to its simplicity and universal applicability. In conclusion, several methods can be used for MRD detection in AML patients; each has its pros and cons. Several issues still remain to be settled including the choice of the best method and the timing for MRD monitoring and above all the practical clinical implications of MRD in the various types of AML.
Insights
Minimal residual disease (MRD) detection in acute myelogenous leukemia (AML) is crucial for predicting relapse. Various methods exist, but optimal strategies for MRD monitoring and clinical implications require further research.
Area of Science:
- Hematology
- Oncology
- Molecular Biology
Background:
- Acute myelogenous leukemia (AML) patients often relapse despite achieving complete remission.
- Persistent leukemic cells below detection levels, known as minimal residual disease (MRD), are responsible for relapse.
- Accurate MRD detection is vital for effective AML management and prognosis.
Purpose of the Study:
- To review current methods for minimal residual disease (MRD) detection in acute myelogenous leukemia (AML).
- To discuss the advantages and limitations of various MRD detection techniques.
- To highlight the clinical significance and future directions in MRD monitoring for AML.
Main Methods:
- Review of current literature on MRD detection in AML.
- Analysis of techniques including cytogenetics, FISH, RT-PCR, and flow cytometry.
- Evaluation of molecular markers and their detection by quantitative RT-PCR.
Main Results:
- Quantitative RT-PCR is effective for detecting specific molecular markers in AML.
- A 2-log reduction in transcript levels post-chemotherapy is necessary for remission.
- Changes in PCR status from negative to positive strongly predict relapse.
- Multiparametric flow cytometry, while broadly applicable, faces challenges in AML due to antigen variability.
Conclusions:
- Multiple methods are available for MRD detection in AML, each with unique strengths and weaknesses.
- Optimal MRD monitoring strategies, including method selection and timing, are still under investigation.
- Further research is needed to clarify the clinical implications of MRD in different AML subtypes.
