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Defective monocyte-to-macrophage maturation in patients with aplastic anemia
R Andreesen1, W Brugger, C Thomssen
1Department for Hematology and Oncology, Albrecht-Ludwigs-Universität Freiburg i. Brsg., FRG.
Abstract:
Macrophages (MAC) are important effector cells of the immune system but also play an essential role as regulatory cells in hematopoiesis. They originate from circulating monocytes (MO) as immature precursor cells that undergo terminal differentiation upon migration from the capillary bed into the various tissues. In the presence of serum, MAC maturation from blood MO is observed in vitro and can be followed by the expression of maturation-associated antigens (MAX.1, .3, .11, and .26; transferrin receptor, 13C2, CD16). We have tested blood MO from 22 patients with aplastic anemia (AA) for their capacity to undergo terminal maturation in vitro. After isolation, blood MO in six patients expressed CD14 molecules at low density when compared to normals. On culture for 7 days, in 15 patients various abnormalities could be shown by phenotype analysis using cell-enzyme-linked immunosorbent assay (ELISA) and an immunoperoxidase staining technique of single cells. Abnormalities ranged from the distinctive failure of mature MAC to express single surface antigens (eg, gp64-MAX.1) to complete inhibition of the development of a MAC maturation-associated phenotype. In three patients the maturational defect was found to persist in complete remission after successful therapy with antileukocyte globulin (ALG). Neither in other immunosuppressed or multiple-transfused patients nor in those with bone marrow hypoplasia secondary to cancer chemotherapy and during hematologic reconstitution following autologous bone marrow transplantation (BMT), defective MO maturation in vitro was seen. Our data provide evidence for the existence of serious disorders within the MO-MAC lineage in patients with AA. This observation may either reflect the stem-cell defect or indicate a MAC involvement in the pathogenesis of the disease.
Insights
Patients with aplastic anemia (AA) show defective monocyte (MO) to macrophage (MAC) maturation in vitro. This suggests a potential stem cell defect or macrophage involvement in AA pathogenesis.
Area of Science:
- Immunology
- Hematology
- Cell Biology
Background:
- Macrophages (MAC) are crucial immune effector and hematopoiesis regulatory cells.
- Monocytes (MO) differentiate into MACs in tissues after migrating from circulation.
- MAC maturation in vitro is characterized by specific antigen expression.
Purpose of the Study:
- To investigate the in vitro maturation capacity of monocytes from aplastic anemia (AA) patients.
- To identify potential defects in the monocyte-macrophage lineage in AA.
Main Methods:
- Phenotype analysis of blood monocytes (MO) from 22 aplastic anemia (AA) patients.
- In vitro culture of MO for 7 days with serum.
- Cell-enzyme-linked immunosorbent assay (ELISA) and immunoperoxidase staining for antigen expression.
Main Results:
- Six AA patients had low-density CD14 expression on isolated MO.
- Fifteen AA patients exhibited abnormal MAC maturation phenotypes after culture.
- Defects ranged from absent specific antigen expression (gp64-MAX.1) to inhibited maturation.
Conclusions:
- Aplastic anemia (AA) patients display significant defects in monocyte (MO) to macrophage (MAC) differentiation.
- These MO-MAC lineage disorders may indicate a stem cell defect or macrophage role in AA pathogenesis.
- Maturation defects persisted in some patients even after successful therapy.