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Published on: April 29, 2015
Hypotonically loaded rat erythrocytes deliver encapsulated substances into peritoneal macrophages
F J Alvarez1, J A Jordán, A Herráez
1Departamento de Bioquímica y Biología Molecular, Facultad de Medicina, Universidad de Alcalá de Henares, Madrid, Spain.
Abstract:
Previous work has shown increased uptake of hypotonically loaded rat RBCs by the spleen and liver "in vivo," suggesting that the cells of MPS are involved in their elimination from the circulation. In order to elucidate the mechanism of such elimination, we have undertaken studies on the interaction of such loaded RBCs, in comparison with native RBCs, with peritoneal macrophages. Erythrophagocytosis assays were performed in well plates to which thioglycollate-induced peritoneal macrophages had adhered. Native or loaded 51Cr-RBCs were added under different opsonization conditions to monolayer adherent macrophages, and then the amount of RBCs that were recognized was determined, with separation into adhesion and phagocytosis fractions. Native RBCs are slightly recognized by peritoneal macrophages, about one RBC per macrophage (Mphi). Osmotic treatment of rat RBCs used for encapsulation (independently of the encapsulated substance, 125I-CA or FITC-dextran) produces some modification in the erythrocyte membrane that induces higher recognition of these cells, about three loaded RBCs per macrophage. Consequently, both fluorescent (FITC-Dx) and radioactive (125I-CA) substances previously encapsulated in RBCs were transferred to M(phi)s. The fluorescence microscopic observations confirmed these results. Moreover, in the case of carrier 51Cr-cells loaded with 125I-CA, the amount of 125I-radioactivity delivered into M(phi)s was relatively higher than that of 51Cr. The highest ratio, 125I-CA (encapsulated substance)/51Cr-RBCs (carrier cells), present in M(phi)s means there was a stronger interaction with macrophages of RBCs that carry a higher amount of encapsulated CA, as a function of the heterogeneity of the loaded rat RBCs population previously reported. Finally, the adhesion and phagocytosis of loaded RBCs seem not to involve complement receptors or Fc receptors on the macrophages.
Insights
Hypotonically loaded rat red blood cells (RBCs) are recognized and phagocytosed by macrophages due to membrane modifications. This process facilitates the transfer of encapsulated substances into macrophages, independent of complement or Fc receptors.
Area of Science:
- Immunology
- Cell Biology
- Hematology
Background:
- Previous studies indicate spleen and liver uptake of hypotonically loaded rat red blood cells (RBCs).
- This suggests involvement of the mononuclear phagocyte system (MPS) in RBC clearance.
- The precise mechanism of elimination requires further investigation.
Purpose of the Study:
- To elucidate the mechanism of elimination of loaded RBCs by peritoneal macrophages.
- To compare the interaction of loaded RBCs with native RBCs.
- To investigate the role of membrane modifications in RBC recognition by macrophages.
Main Methods:
- Erythrophagocytosis assays using thioglycollate-induced peritoneal macrophages.
- Incubation of native or 51Cr-labeled loaded RBCs with macrophages under varying opsonization conditions.
- Quantification of RBC adhesion and phagocytosis, and transfer of encapsulated substances (125I-CA, FITC-dextran).
- Fluorescence microscopy for confirmation.
Main Results:
- Osmotic loading modifies the RBC membrane, increasing recognition by macrophages (3 loaded RBCs/macrophage vs. 1 native RBC/macrophage).
- Encapsulated substances (125I-CA, FITC-dextran) were transferred to macrophages following RBC phagocytosis.
- Radioactive signal from encapsulated 125I-CA was higher in macrophages than the carrier 51Cr signal, indicating preferential transfer.
- Adhesion and phagocytosis did not appear to involve complement or Fc receptors.
Conclusions:
- Osmotic treatment of RBCs induces membrane changes that enhance their recognition and phagocytosis by macrophages.
- Macrophage uptake of loaded RBCs facilitates the delivery of encapsulated substances.
- The interaction mechanism does not rely on complement or Fc receptors.
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