Extracellular Vesicles from Red Blood Cell Products Induce a Strong Pro-Inflammatory Host Response, Dependent on Both Numbers and Storage Duration

Marleen Straat, Anita N Böing, Anita Tuip-De Boer, Rienk Nieuwland, Nicole P Juffermans, Marleen Straat, Anita N Böing, Anita Tuip-De Boer, Rienk Nieuwland, Nicole P Juffermans

Abstract

Background: Transfusion of red blood cells (RBCs) is associated with adverse outcome, but the causative factor is unknown. Extracellular vesicles (EVs) have pro-inflammatory properties. We hypothesized that EVs released from both fresh and stored RBC products can induce a host inflammatory response in a dose-dependent manner.

Methods: Whole blood was incubated with supernatant from RBC units stored for different time periods, either containing (different numbers of) EVs or depleted from EVs.

Results: Incubation with both fresh and stored supernatant containing EVs induced a strong host response with production of TNF, IL-6 and IL-8. In supernatant depleted from EVs, this host response was completely abrogated. IL-10 levels were not affected. EV-induced host response was both dependent on the number of EVs as well as on storage time.

Conclusions: EVs from both fresh and stored RBC units illicit a strong inflammatory host response in recipients and may therefore contribute to adverse outcome of RBC transfusion.

Keywords: Cytokines; Extracellular vesicles; Host response; Red blood cell units.

Figures

Fig. 1
Fig. 1
Whole blood stimulated with a fixed volume of supernatant (sup) derived from fresh and stored RBC bags either containing EVs or depleted from EVs (n = 11 per group). *p

Fig. 2

Whole blood stimulated with supernatant…

Fig. 2

Whole blood stimulated with supernatant (sup) derived from fresh and stored RBC bags…

Fig. 2
Whole blood stimulated with supernatant (sup) derived from fresh and stored RBC bags containing a fixed concentration of EVs.
Fig. 2
Fig. 2
Whole blood stimulated with supernatant (sup) derived from fresh and stored RBC bags containing a fixed concentration of EVs.

Source: PubMed

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