Proteostasis and metabolic dysfunction characterize a subset of storage-induced senescent erythrocytes targeted for post-transfusion clearance.

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Tác giả: Pascal Amireault, Johanna Bruce, Pierre A Buffet, Madeleine Casimir, Angelo D'Alessandro, Safi Dokmak, Michaël Dussiot, Monika Dzieciatkowska, Aurélie Fricot, Emilie-Fleur Gautier, Sonia Georgeault, Youcef Hadjou, Olivier Hermine, Louise Leblanc, Mickaël Marin, Papa Alioune Ndour, François Paye, Sandy Peltier, Philippe Roingeard, Camille Roussel, Micaela Kalani Roy, Abdoulaye Sissoko, Steven L Spitalnik, Daniel Stephenson

Ngôn ngữ: eng

Ký hiệu phân loại: 616.151 *Diseases of erythrocytes

Thông tin xuất bản: United States : The Journal of clinical investigation , 2025

Mô tả vật lý:

Bộ sưu tập: NCBI

ID: 694420

 Although refrigerated storage slows the metabolism of volunteer donor RBCs, which is essential in transfusion medicine, cellular aging still occurs throughout this in vitro process. Storage-induced microerythrocytes (SMEs) are morphologically-altered senescent RBCs that accumulate during storage and are cleared from circulation following transfusion. However, the molecular and cellular alterations that trigger clearance of this RBC subset remain to be identified. Using a staining protocol that sorts long-stored SMEs (i.e., CFSEhigh) and morphologically-normal RBCs (CFSElow), these in vitro aged cells were characterized. Metabolomics analysis identified depletion of energy, lipid-repair, and antioxidant metabolites in CFSEhigh RBCs. By redox proteomics, irreversible protein oxidation primarily affected CFSEhigh RBCs. By proteomics, 96 proteins, mostly in the proteostasis family, had relocated to CFSEhigh RBC membranes. CFSEhigh RBCs exhibited decreased proteasome activity and deformability
  increased phosphatidylserine exposure, osmotic fragility, and endothelial cell adherence
  and were cleared from the circulation during human spleen perfusion ex vivo. Conversely, molecular, cellular, and circulatory properties of long-stored CFSElow RBCs resembled those of short-stored RBCs. CFSEhigh RBCs are morphologically and metabolically altered, have irreversibly oxidized and membrane-relocated proteins, and exhibit decreased proteasome activity. In vitro aging during storage selectively alters metabolism and proteostasis in these storage-induced senescent RBCs targeted for clearance.
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