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. 2021 Mar;61(3):903-918.
doi: 10.1111/trf.16245. Epub 2020 Dec 31.

Metabolic rejuvenation upgrades circulatory functions of red blood cells stored under blood bank conditions

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Metabolic rejuvenation upgrades circulatory functions of red blood cells stored under blood bank conditions

Mickaël Marin et al. Transfusion. 2021 Mar.

Abstract

Background: Red blood cells (RBC) change upon hypothermic conservation, and storage for 6 weeks is associated with the short-term clearance of 15% to 20% of transfused RBCs. Metabolic rejuvenation applied to RBCs before transfusion replenishes energetic sources and reverses most storage-related alterations, but how it impacts RBC circulatory functions has not been fully elucidated.

Study design and methods: Six RBC units stored under blood bank conditions were analyzed weekly for 6 weeks and rejuvenated on Day 42 with an adenine-inosine-rich solution. Impact of storage and rejuvenation on adenosine triphosphate (ATP) levels, morphology, accumulation of storage-induced microerythrocytes (SMEs), elongation under an osmotic gradient (by LORRCA), hemolysis, and phosphatidylserine (PS) exposure was evaluated. The impact of rejuvenation on filterability and adhesive properties of stored RBCs was also assessed.

Results: Rejuvenation of RBCs restored intracellular ATP to almost normal levels and decreased the PS exposure from 2.78% to 0.41%. Upon rejuvenation, the proportion of SME dropped from 28.2% to 9.5%, while the proportion of normal-shaped RBCs (discocytes and echinocytes 1) increased from 47.7% to 67.1%. In LORCCA experiments, rejuvenation did not modify the capacity of RBCs to elongate and induced a reduction in cell volume. In functional tests, rejuvenation increased RBC filterability in a biomimetic splenic filter (+16%) and prevented their adhesion to endothelial cells (-87%).

Conclusion: Rejuvenation reduces the proportion of morphologically altered and adhesive RBCs that accumulate during storage. Along with the improvement in their filterability, these data show that rejuvenation improves RBC properties related to their capacity to persist in circulation after transfusion.

Keywords: red blood cell deformability; red blood cell morphology; rejuvenation; storage lesion; transfusion.

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References

REFERENCES

    1. Luten M, Roerdinkholder-Stoelwinder B, Schaap NPM, Grip WJD, Bos HJ, Bosman GJCGM. Survival of red blood cells after transfusion: A comparison between red cells concentrates of different storage periods. Transfusion. 2008;48(7):1478-1485.
    1. Rapido F, Brittenham GM, Bandyopadhyay S, et al. Prolonged red cell storage before transfusion increases extravascular hemolysis. J Clin Invest. 2016;127(1):375-382.
    1. Hunsicker O, Hessler K, Krannich A, et al. Duration of storage influences the hemoglobin rising effect of red blood cells in patients undergoing major abdominal surgery. Transfusion. 2018;58(8):1870-1880.
    1. Roussel C, Buffet PA, Amireault P. Measuring post-transfusion recovery and survival of red blood cells: Strengths and weaknesses of chromium-51 labeling and alternative methods. Front Med. 2018;5:130.
    1. Francis RO, Mahajan S, Rapido F, et al. Reexamination of the chromium-51-labeled posttransfusion red blood cell recovery method. Transfusion. 2019;59(7):2264-2275.

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