The sensing of poorly deformable red blood cells by the human spleen can be mimicked in vitro

Author:

Deplaine Guillaume123,Safeukui Innocent12,Jeddi Fakhri3,Lacoste François4,Brousse Valentine5,Perrot Sylvie12,Biligui Sylvestre36,Guillotte Micheline12,Guitton Corinne7,Dokmak Safi8,Aussilhou Béatrice8,Sauvanet Alain8,Cazals Hatem Dominique9,Paye François10,Thellier Marc36,Mazier Dominique36,Milon Geneviève11,Mohandas Narla12,Mercereau-Puijalon Odile12,David Peter H.12,Buffet Pierre A.36

Affiliation:

1. Institut Pasteur, Unité d'Immunologie Moléculaire des Parasites, Département de Parasitologie Mycologie, Paris, France;

2. Centre National de la Recherche Scientifique,URA2581, Paris, France;

3. Inserm-UPMC (Paris 6 University) Unité Mixte de Recherche s945, Paris, France;

4. Fond Inckermann, Fondation de France, Paris, France;

5. Department of Pediatrics, Necker Hospital, Assistance Publique-Hopitaux de Paris (AP-HP), Paris, France;

6. Department of Parasitology, Pitié Salpétrière Hospital, AP-HP, Paris, France;

7. Department of Haematology, Kremlin-Bicêtre Hospital, AP-HP, Le Kremlin-Bicêtre, France;

8. Department of Surgery, Beaujon Hospital, AP-HP, Clichy, France;

9. Department of Pathology, Beaujon Hospital, AP-HP, Clichy, France;

10. Department of Surgery, Saint-Antoine Hospital, AP-HP, Paris, France;

11. Institut Pasteur, Immunophysiologie et Parasitisme Intracellulaire, Département de Parasitologie Mycologie, Paris, France; and

12. New York Blood Center, New York, NY

Abstract

Abstract Retention of poorly deformable red blood cells (RBCs) by the human spleen has been recognized as a critical determinant of pathogenesis in hereditary spherocytosis, malaria, and other RBC disorders. Using an ex vivo perfusion system, we had previously shown that retention of Plasmodium falciparum–infected RBCs (Pf-RBCs) occur in the splenic red pulp, upstream from the sinus wall. To experimentally replicate the mechanical sensing of RBCs by the splenic microcirculation, we designed a sorting device where a mixture of 5- to 25-μm-diameter microbeads mimics the geometry of narrow and short interendothelial splenic slits. Heated RBCs, Pf-RBCs, and RBCs from patients with hereditary spherocytosis were retained in the microbead layer, without hemolysis. The retention rates of Pf-RBCs were similar in microbeads and in isolated perfused human spleens. These in vitro results directly confirm the importance of the mechanical sensing of RBCs by the human spleen. In addition, rigid and deformable RBC subpopulations could be separated and characterized at the molecular level, and the device was used to deplete a stored RBC population from its subpopulation of rigid RBCs. This experimental approach may contribute to a better understanding of the role of the spleen in the pathogenesis of inherited and acquired RBC disorders.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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