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An Organotypic High Throughput System for Characterization of Drug Sensitivity of Primary Multiple Myeloma Cells
Published on: July 15, 2015
Impaired efferocytosis by monocytes in multiple myeloma
Ying Yu Liang1, Ilse Schwarzinger2, Ingrid Simonitsch-Klupp3
1Department of Surgery and Comprehensive Cancer Center, Medical University of Vienna, A-1090 Vienna, Austria.
Abstract:
Efficient clearance of apoptotic cells by efferocytosis is important for tissue homeostasis. Impaired efferocytosis leads to the accumulation of cell debris, which is regarded as a trigger in chronic inflammation and autoimmune diseases. Patients with hematological neoplastic disorders such as multiple myeloma (MM) exhibit high blood levels of apoptotic microparticles. The present study investigated whether these high levels of apoptotic microparticles are associated with insufficient dead cell clearance. Blood samples were collected from patients with MM immediately prior to and 3, 7 and 10 days after the initial cycle of bortezomib-based therapy. In addition, bone marrow aspirates (BMA) were collected prior to and following therapy. Prior to therapy, a 52% reduction in efferocytosis by blood monocytes was observed compared with the healthy controls (P<0.017). This was associated with an elevated number of 7-AAD+ dead cell remnants in the blood flow as well as in BMA. A portion of the blood samples contained active caspase 3. The subsequent bortezomib-based therapy had no effect on efferocytosis, although the quantity of dead cell remnants decreased. This reduction was associated with a decline in cluster of differentiation 8 (CD8)+ and CD4+ T cells and an increase in the number of monocytes. However, of 28 distinct soluble immune-modulating molecules (i.e. chemokines, cytokines and soluble co-stimulators) only C-C motif chemokine ligand 2 (CCL2), CCL24 and sCD27 were affected by bortezomib-based therapy. The levels of all other molecules remained unchanged or were below the detection threshold in all samples. The present study results revealed that the presence of dead cell remnants in the blood and bone morrow of patients with MM is associated with impaired efferocytosis by monocytes; however, its contribution to inflammatory events during MM remains unclear.
Insights
Patients with multiple myeloma (MM) show impaired efferocytosis, leading to dead cell accumulation. Bortezomib therapy reduced cell debris but did not improve efferocytosis, highlighting a complex relationship in MM.
Area of Science:
- Immunology
- Cell Biology
- Hematology
Background:
- Efficient efferocytosis (clearance of apoptotic cells) is crucial for tissue homeostasis.
- Impaired efferocytosis contributes to chronic inflammation and autoimmune diseases.
- Multiple myeloma (MM) patients exhibit elevated apoptotic microparticles, suggesting potential efferocytosis defects.
Purpose of the Study:
- To investigate if high apoptotic microparticle levels in MM patients correlate with impaired dead cell clearance.
- To assess the impact of bortezomib-based therapy on efferocytosis and dead cell remnants in MM.
Main Methods:
- Collected blood and bone marrow aspirates from MM patients before and after bortezomib therapy.
- Quantified efferocytosis by blood monocytes and measured 7-AAD+ dead cell remnants.
- Analyzed levels of soluble immune-modulating molecules, including chemokines and cytokines.
Main Results:
- Pre-therapy MM patients had 52% reduced monocyte efferocytosis compared to healthy controls.
- Elevated 7-AAD+ dead cell remnants were found in blood and bone marrow of MM patients.
- Bortezomib therapy decreased dead cell remnants but did not improve efferocytosis; it altered T cell and monocyte counts and specific chemokine levels (CCL2, CCL24, sCD27).
Conclusions:
- Impaired efferocytosis by monocytes is linked to dead cell remnants in MM patients.
- The exact role of this impaired efferocytosis in MM-associated inflammation requires further investigation.
- Bortezomib therapy impacts the immune microenvironment in MM, but not directly efferocytosis function.
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