Page 82 - 2021_05-Haematologica-web
P. 82

A. D’Alessandro et al.
dependent detection of erythrocytes glu-
cose-6-phosphate dehydrogenase and its correlation with oxidative stress. Arch Physiol Biochem. 2016;122(2):61-66.
45. Kaestner L, Minetti G. The potential of ery- throcytes as cellular aging models. Cell Death Differ. 2017;24(9):1475-1477.
46. Spencer BR, Bialkowski W, Creel DV, et al. Elevated risk for iron depletion in high- school age blood donors. Transfusion. 2019; 59(5):1706-1716.
47. Kanias T, Stone M, Page GP, et al. Frequent blood donations alter susceptibility of red blood cells to storage- and stress-induced hemolysis. Transfusion. 2019; 59(1):67-78.
48. Pietras EM, Mirantes-Barbeito C, Fong S, et al. Chronic interleukin-1 exposure drives haematopoietic stem cells towards preco- cious myeloid differentiation at the expense of self-renewal. Nat Cell Biol. 2016; 18(6):607-618.
49. DeSimone RA, Hayden JA, Mazur CA, et
al. Red blood cells donated by smokers: A pilot investigation of recipient transfusion outcomes. Transfusion. 2019;59(8):2537- 2543.
50. Nemkov T, Reisz JA, Xia Y, Zimring JC, D’Alessandro A. Red blood cells as an organ? How deep omics characterization of the most abundant cell in the human body highlights other systemic metabolic func- tions beyond oxygen transport. Expert Rev Proteomics. 2018;15(11):855-864.
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