Literature DB >> 11479031

Cell age-related monovalent cations content and density changes in stored human erythrocytes.

G Minetti1, A Ciana, A Profumo, M Zappa, C Vercellati, A Zanella, A Arduini, A Brovelli.   

Abstract

Conversion of erythrocyte membrane protein 4.1b to 4.1a occurs through a non-enzymatic deamidation reaction in most mammalian erythrocytes, with an in vivo half-life of approximately 41 days, making the 4.1a/4.1b ratio a useful index of red cell age [Inaba and Maede, Biochim. Biophys. Acta 944 (1988) 256-264]. Normal human erythrocytes distribute into subpopulations of increasing cell density and cell age when centrifuged in polyarabinogalactan density gradients. We have observed that, when erythrocytes were stored at 4 degrees C under standard blood bank conditions, the deamidation was virtually undetectable, as cells maintained the 4.1a/4.1b ratio they displayed at the onset of storage. By measuring the 4.1a/4.1b values in subpopulations of cells of different density at various time points during storage, a modification of the normal 'cell age/cell density' relationship was observed, as erythrocytes were affected by changes in cell volume in an age-dependent manner. This may stem from a different impact of storage on the imbalance of monovalent cations, Na(+) and K(+), in young and old erythrocytes, related to their different complement of cation transporters.

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Year:  2001        PMID: 11479031     DOI: 10.1016/s0304-4165(01)00159-3

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  10 in total

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3.  Age-Related Modulations in Erythrocytes under Blood Bank Conditions.

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Review 4.  Survival of red blood cells after transfusion: processes and consequences.

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5.  Time-Course Investigation of Small Molecule Metabolites in MAP-Stored Red Blood Cells Using UPLC-QTOF-MS.

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7.  The terminal density reversal phenomenon of aging human red blood cells.

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Review 9.  Neocytolysis: none, one or many? A reappraisal and future perspectives.

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Review 10.  The involvement of cation leaks in the storage lesion of red blood cells.

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  10 in total

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