Proof of principle for transfusion of in vitro–generated red blood cells

Author:

Giarratana Marie-Catherine12,Rouard Hélène34,Dumont Agnès5,Kiger Laurent6,Safeukui Innocent7,Le Pennec Pierre-Yves8,François Sabine129,Trugnan Germain10,Peyrard Thierry8,Marie Tiffany123,Jolly Séverine123,Hebert Nicolas123,Mazurier Christelle123,Mario Nathalie11,Harmand Laurence123,Lapillonne Hélène1212,Devaux Jean-Yves5,Douay Luc12313

Affiliation:

1. UPMC Paris 06, UMR_S938 CDR Saint-Antoine, Prolifération et Différenciation des Cellules Souches, Paris, France;

2. Inserm, UMR_S938, Prolifération et Différenciation des Cellules Souches, Paris, France;

3. EFS Ile de France, Unité d'Ingénierie et de Thérapie Cellulaire, Créteil, France;

4. UPEC, Université Paris Est Créteil, France;

5. AP-HP Hôpital St Antoine, Service de Médecine Nucléaire, Paris, France;

6. Inserm U473, Hôpital du Kremlin-Bicêtre, Kremlin-Bicêtre, France;

7. CNRS URA 2581, Institut Pasteur, Molecular Immunology of Parasites Unit, Paris, France;

8. CNRGS, INTS, Paris, France;

9. IRSN, BP 17, Fontenay-aux-Roses, France;

10. UPMC Université Paris 06; ERL Inserm U1057/UMR7203; FMPMC, Paris, France;

11. AP-HP, Hôpital Saint-Antoine, Service de Biochimie A, Paris, France;

12. AP-HP, Hôpital Trousseau, Service d'Hématologie Biologique, Paris, France; and

13. AP-HP, Hôpital St Antoine, Service d'Hématologie et Immunologie Biologiques, Paris, France

Abstract

AbstractIn vitro RBC production from stem cells could represent an alternative to classic transfusion products. Until now the clinical feasibility of this concept has not been demonstrated. We addressed the question of the capacity of cultured RBCs (cRBCs) to survive in humans. By using a culture protocol permitting erythroid differentiation from peripheral CD34+ HSC, we generated a homogeneous population of cRBC functional in terms of their deformability, enzyme content, capacity of their hemoglobin to fix/release oxygen, and expression of blood group antigens. We then demonstrated in the nonobese diabetes/severe combined immunodeficiency mouse that cRBC encountered in vivo the conditions necessary for their complete maturation. These data provided the rationale for injecting into one human a homogeneous sample of 1010 cRBCs generated under good manufacturing practice conditions and labeled with 51Cr. The level of these cells in the circulation 26 days after injection was between 41% and 63%, which compares favorably with the reported half-life of 28 ± 2 days for native RBCs. Their survival in vivo testifies globally to their quality and functionality. These data establish the proof of principle for transfusion of in vitro–generated RBCs and path the way toward new developments in transfusion medicine. This study is registered at http://www.clinicaltrials.gov as NCT0929266.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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