Literature DB >> 19413729

Delayed hemolytic transfusion reaction in sickle cell disease patients: evidence of an emerging syndrome with suicidal red blood cell death.

Philippe Chadebech1, Anoosha Habibi, Ruben Nzouakou, Dora Bachir, Natacha Meunier-Costes, Philippe Bonin, Martine Rodet, Btissam Chami, Frederic Galacteros, Philippe Bierling, France Noizat-Pirenne.   

Abstract

BACKGROUND: Delayed hemolytic transfusion reaction (DHTR) is a life-threatening complication in sickle cell disease (SCD) characterized by recurrence of disease complications, recipient red blood cell (RBC) destruction, and frequently no detectable antibody. Phosphatidylserine (PS) exposure signs suicidal RBC death or eryptosis and is involved in vasoocclusive crisis (VOC). STUDY DESIGN AND METHODS: Transfusion was monitored in 48 SCD patients for up to 20 days. PS exposure was evaluated in vivo on patient RBCs (PS-RBCs) at five time points and in vitro after incubation of donor RBCs with pretransfusion plasma.
RESULTS: Three VOC patients displayed DHTR with recurrent SCD features and no detectable antibody in two cases. In vitro, PS-RBC percentage was significantly increased by incubating donor RBCs with pretransfusion plasma samples from DHTR patients with no detectable antibody. No such increase was observed with samples from other patients. This result indicates that donor RBCs may be damaged by the environment of SCD patients, increasing the physiologic clearance of apoptotic RBCs. In vivo, PS-RBC percentage increased in all three cases after destruction of transfused RBCs, indicating that DHTR induces PS-RBCs and, possibly, subsequent VOC and autologous RBC destruction.
CONCLUSION: This study clearly demonstrates that DHTR can occur in the absence of detectable antibody. In these cases, a mechanism of excessive eryptosis is proposed.

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Year:  2009        PMID: 19413729     DOI: 10.1111/j.1537-2995.2009.02199.x

Source DB:  PubMed          Journal:  Transfusion        ISSN: 0041-1132            Impact factor:   3.157


  25 in total

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Review 9.  How I safely transfuse patients with sickle-cell disease and manage delayed hemolytic transfusion reactions.

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Review 10.  Delayed hemolytic transfusion reaction in sickle cell disease.

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