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Flow Cytometry to Estimate Leukemia Stem Cells in Primary Acute Myeloid Leukemia and in Patient-derived-xenografts, at Diagnosis and Follow Up
Published on: March 26, 2018
Expression of surface-associated 82kDa-proMMP-9 in primary acute leukemia blast cells inversely correlates with
Joerg Schmohl1, Donato Santovito2, Thomas Guenther3
1University of Minnesota Masonic Cancer Center, Section of Molecular Cancer Therapeutics, Therapeutic Radiology-Radiation Oncology, University of Minnesota, Minneapolis, MN; Department for Hematology and Oncology, Eberhard Karls University, Tuebingen, Germany.
Abstract:
With its ability to degrade extracellular matrix proteins and activate growth factors and cytokines, matrix metalloproteinase (MMP)-9 is an important regulator of cell function. Previously, we reported that myeloid leukemic cells express a unique 82kDa-proMMP-9 variant on their cell surface that is not affected by its natural inhibitor. In this study, we generated monoclonal antibodies that specifically recognize 82kDa-proMMP-9. Flow cytometry analysis using these antibodies revealed significant surface expression of 82kDa-proMMP-9 in monocytes, but minimal amounts in T and B cells isolated from peripheral blood of nine healthy donors and 22 patients with acute myeloid leukemia (AML). In all AML patients, blasts expressed 82kDa-proMMP-9 at levels of 4%-46%, with significantly higher levels in patients with a better risk defined according to National Comprehensive Cancer Network (NCCN) guidelines (ρ = -0.748, p < 0.001) and favorable phenotype according to the French-American-British classification (p = 0.02) compared with patients with adverse prognoses. Receiver operating characteristic curve analysis confirmed the diagnostic accuracy of 82kDa-proMMP-9 measurement in AML blasts (area under the curve: 0.893 [0.739-1.000], p = 0.019). It led us to define a cutoff value of 11.5% for identifying patients with lower NCCN risk (p = 0.005) and with a tendency toward a higher probability of response to anthracycline-based therapy (p = 0.109) and increased event-free survival (p = 0.24). Thus, 82kDa-proMMP-9 expression on blasts may represent a novel independent marker of prognosis in patients with AML.
Insights
Matrix metalloproteinase (MMP)-9, a unique 82kDa variant, is expressed on myeloid leukemic cells. Higher levels of this 82kDa-proMMP-9 correlate with better prognosis and diagnostic accuracy in acute myeloid leukemia (AML) patients.
Area of Science:
- Biochemistry
- Immunology
- Oncology
Background:
- Matrix metalloproteinase (MMP)-9 regulates cell function by degrading extracellular matrix and activating growth factors.
- A unique 82kDa-proMMP-9 variant on myeloid leukemic cells is resistant to natural inhibitors.
- This study investigates the expression and prognostic significance of 82kDa-proMMP-9 in acute myeloid leukemia (AML).
Purpose of the Study:
- To generate specific monoclonal antibodies for detecting the 82kDa-proMMP-9 variant.
- To analyze the surface expression of 82kDa-proMMP-9 in monocytes and leukemia cells.
- To evaluate 82kDa-proMMP-9 as a potential diagnostic and prognostic marker in AML.
Main Methods:
- Generation of monoclonal antibodies targeting 82kDa-proMMP-9.
- Flow cytometry analysis of peripheral blood cells from healthy donors and AML patients.
- Statistical analysis including ROC curve analysis and correlation with risk stratification.
Main Results:
- Significant surface expression of 82kDa-proMMP-9 was found in monocytes, with minimal expression in T and B cells.
- AML blasts showed variable 82kDa-proMMP-9 expression (4%-46%).
- Higher 82kDa-proMMP-9 levels in AML blasts correlated with better risk (NCCN guidelines, FAB classification) and showed diagnostic accuracy (AUC 0.893).
Conclusions:
- 82kDa-proMMP-9 is expressed on AML blasts and its levels are associated with favorable prognosis.
- A cutoff value of 11.5% can identify lower-risk AML patients.
- 82kDa-proMMP-9 may serve as a novel independent prognostic marker in AML.
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