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CSF1R Inhibition Combined with GM-CSF Reprograms Macrophages and Disrupts Protumoral Interplays with AML Cells
Tatiana Smirnova1, Caroline Spertini1, Olivier Spertini1
1Service and Central Laboratory of Hematology, Centre Hospitalier Universitaire Vaudois, University of Lausanne, 1011 Lausanne, Switzerland.
Abstract:
Relapse is a major issue in acute myeloid leukemia (AML) and while the contribution of gene mutations in developing drug resistance is well established, little is known on the role of macrophages (MΦs) in an AML cell microenvironment. We examined whether myeloblasts could educate MΦs to adopt a protumoral orientation supporting myeloblast survival and resistance to therapy. Flow cytometry analyses demonstrated that M2-like CD163+ MΦs are abundantly present, at diagnosis, in the bone marrow of AML patients. We showed that myeloblasts, or their conditioned medium, polarize monocytes to M2-like CD163+ MΦs, induce the secretion of many protumoral factors, and promote myeloblast survival and proliferation as long as close intercellular contacts are maintained. Importantly, pharmacologic inhibition of the CSF1 receptor (CSF1R), in the presence of GM-CSF, reprogrammed MΦ polarization to an M1-like orientation, induced the secretion of soluble factors with antitumoral activities, reduced protumoral agonists, and promoted the apoptosis of myeloblasts interacting with MΦs. Furthermore, myeloblasts, which became resistant to venetoclax or midostaurin during their interplay with protumoral CD163+ MΦs, regained sensitivity to these targeted therapies following CSF1R inhibition in the presence of GM-CSF. These data reveal a crucial role of CD163+ MΦ interactions with myeloblasts that promote myeloblast survival and identify CSF1R inhibition as a novel target for AML therapy.
Insights
Acute myeloid leukemia (AML) relapse is linked to macrophages (MΦs). Inhibiting the CSF1 receptor (CSF1R) in AML can overcome drug resistance by reprogramming MΦs and promoting cancer cell death.
Area of Science:
- Hematology
- Cancer Biology
- Immunology
Background:
- Relapse in acute myeloid leukemia (AML) is a significant clinical challenge.
- The role of the tumor microenvironment, particularly macrophages (MΦs), in AML drug resistance is not fully understood.
Purpose of the Study:
- To investigate if AML myeloblasts can induce protumoral MΦ polarization.
- To explore the therapeutic potential of targeting MΦs in AML.
Main Methods:
- Flow cytometry to analyze MΦ phenotypes (CD163+) in AML patient bone marrow.
- In vitro co-culture experiments with myeloblasts and monocytes.
- Pharmacologic inhibition of CSF1 receptor (CSF1R) with GM-CSF.
Main Results:
- AML myeloblasts polarize monocytes into protumoral M2-like CD163+ MΦs, promoting myeloblast survival and therapy resistance.
- CSF1R inhibition with GM-CSF shifts MΦs to an antitumoral M1-like phenotype, reducing protumoral factors and inducing myeloblast apoptosis.
- CSF1R inhibition restores sensitivity to venetoclax and midostaurin in resistant AML cells.
Conclusions:
- CD163+ MΦs play a critical role in supporting AML cell survival and therapy resistance.
- CSF1R inhibition represents a promising novel therapeutic strategy for AML by targeting the MΦ-myeloblast interaction.
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