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Cytogenetics for detection of minimal residual disease in acute myeloblastic leukemia
E J Freireich1, A Cork, S A Stass
1Department of Hematology, University of Texas M.D. Anderson Cancer Center, Houston 77030.
Abstract:
Bone marrow samples collected from acute myeloblastic leukemia (AML) patients in complete clinical and hematological remission were studied for the persistence of cytogenetic abnormalities. AML patients from the three favorable cytogenetic categories [inv 16, t(8;21) and t(15;17)] and patients from the unfavorable cytogenetic categories (+8, -5, -7 and Philadelphia-positive) were studied. Seventy-one patients had evaluable metaphase spreads in remission marrows and 20 (28%) had one or more abnormal metaphases identical to that present in the pretreatment marrow. All 20 of these patients relapsed within 78 weeks, thus there were no false positive studies. Fifty-one patients had only diploid metaphases in their complete remission marrow, 25 relapsed, and 21 remained in continuous complete remission. Thus there was a 49% false negative rate of this study. These data indicate that the failure to detect residual chromosomally abnormal cells in the bone marrow does not guarantee continuous complete remission. Cytogenetic study was most useful in the favorable cytogenetic groups and least useful in the unfavorable groups. The persistence of normal metaphases in pretreatment marrows did not affect outcome or risk of recurrence. Twenty-five of 34 evaluable patients who relapsed after remission had either the identical cytogenetic abnormality present in the pretreatment marrow or showed the identical abnormality with additional chromosomal changes. Thus study indicates that cytogenetic examinations of complete remission bone marrow samples in patients with AML provides an objective method for detecting residual leukemia, and identifies patients with a potential for prolonged disease-free survival.
Insights
Detecting residual leukemia in acute myeloblastic leukemia (AML) patients is possible through cytogenetic examination of bone marrow. Persistent chromosomal abnormalities in remission indicate a high risk of relapse, aiding in identifying patients for prolonged disease-free survival.
Area of Science:
- Hematology
- Oncology
- Cytogenetics
Background:
- Acute myeloblastic leukemia (AML) is a heterogeneous disease.
- Achieving complete remission is a primary treatment goal.
- Residual disease detection is crucial for predicting relapse.
Purpose of the Study:
- To investigate the persistence of cytogenetic abnormalities in AML patients in remission.
- To assess the utility of cytogenetic analysis in predicting relapse.
- To identify factors influencing disease-free survival in AML.
Main Methods:
- Bone marrow samples from AML patients in remission were analyzed for cytogenetic abnormalities.
- Patients were categorized into favorable and unfavorable cytogenetic groups.
- Correlation between residual abnormalities and relapse rates was examined.
Main Results:
- 28% of patients in remission had persistent cytogenetic abnormalities identical to pretreatment.
- All patients with residual abnormalities relapsed within 78 weeks.
- A 49% false-negative rate was observed, indicating limitations in detection.
Conclusions:
- Cytogenetic examination of remission bone marrow is an objective method for detecting residual leukemia.
- Persistent chromosomal abnormalities predict relapse and identify patients for closer monitoring.
- This method aids in stratifying AML patients for risk-adapted therapy and predicting outcomes.
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