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Merck

Platelet storage media.

Vox sanguinis (2014-07-01)
H Gulliksson
RESUMEN

Present platelet storage media often designated platelet additive solutions (PAS) basically contain acetate, citrate and phosphate and recently also potassium and magnesium. However, there seems to be an increasing interest in developing PASs that can be used also after further reduction of residual plasma content below 15-20% plasma. Inclusion of glucose but also calcium and bicarbonate in such solutions have been suggested to improve platelet (PLT) storage, especially when plasma content is reduced to very low levels. Results from a limited number of studies using novel PAS alternatives have been presented during the last years, such as InterSol-G, PAS-5, M-sol, PAS-G and SAS. Most of them are experimental solutions. The combined results presented in those studies suggest that presence of glucose may be necessary during PLT storage, primarily to maintain ATP at acceptable levels. At plasma inclusion below 15-20%, the content of glucose will generally be too low to support PLT metabolism for more than a few days making glucose addition in PAS necessary. Significant effects associated with presence of calcium was observed in PLTs stored in PAS with 5% inclusion but not with 20-35% plasma inclusion, suggesting that the content of plasma could be of importance. Bicarbonate only seems to be of importance for pH regulation, primarily when plasma inclusion is reduced to about 5%. Reduction in rate of glycolysis was observed in some PAS alternatives containing potassium and magnesium but not in others. Differences in pH or in concentrations of the various compounds included in PAS may be possible explanations. Additionally, novel PAS containing glucose, calcium and bicarbonate does not seem to be associated with improved in vitro results as compared to SSP+ or CompoSol when PLTs are stored with 35% plasma inclusion. The results would then also suggest that excess of glucose in novel PAS environment may not be associated with additional positive effects on PLT metabolism. This review is based on the few publications on novel PAS available, and additional studies would be needed in the future.

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Sigma-Aldrich
Magnesio, powder, ≥99%
Sigma-Aldrich
Magnesio, purum, for Grignard reactions, ≥99.5%, turnings
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Magnesio, ribbon, ≥99.0% Mg basis
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Magnesio, chips, 6-35 mesh, 99.98% trace metals basis
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Magnesio, turnings, reagent grade, 98%
Sigma-Aldrich
Magnesio, turnings, 5-25 mm, 99.95% trace metals basis
Sigma-Aldrich
Magnesio, wire, 127 μm diameter, 99.9% trace metals basis
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Magnesium preparation, Highly Reactive Rieke® Metal, suspension, 2.5 g in THF
Sigma-Aldrich
Magnesio, dendritic pieces, purified by distillation, 99.998% trace metals basis
Sigma-Aldrich
Magnesio, grit, ≥99.0% (KT)
Sigma-Aldrich
Magnesio, rod, diam. 6 mm, ≥99.9% trace metals basis
Magnesio, wire reel, 1m, diameter 0.5mm, as drawn, 99.9+%
Sigma-Aldrich
Magnesio, 20-230 mesh, reagent grade, 98%
Magnesio, wire reel, 0.1m, diameter 0.4mm, as drawn, 99.9+%
Sigma-Aldrich
Magnesio, ReagentPlus®, ribbon, ≥99% trace metals basis
Magnesio, wire reel, 0.5m, diameter 1.1mm, as drawn, 99.9+%
Sigma-Aldrich
Magnesio, in a Sure/Seal bottle, turnings, anhydrous tetrahydrofuran 37.5 mmol
Magnesio, wire reel, 0.1m, diameter 0.5mm, as drawn, 99.9+%
Magnesio, wire reel, 0.5m, diameter 0.25mm, as drawn, 99.9+%
Magnesio, wire reel, 2m, diameter 0.125mm, as drawn, 99.9+%
Magnesio, wire reel, 0.5m, diameter 0.5mm, as drawn, 99.9+%
Sigma-Aldrich
Magnesio, in a Sure/Seal bottle, turnings, 37.5 mmol
Magnesio, wire reel, 1m, diameter 1.1mm, as drawn, 99.9+%
Magnesio, wire reel, 0.1m, diameter 0.125mm, as drawn, 99.9+%
Magnesio, wire reel, 0.1m, diameter 0.25mm, as drawn, 99.9+%
Magnesio, wire reel, 0.1m, diameter 1.1mm, as drawn, 99.9+%
Magnesio, wire reel, 0.5m, diameter 1.0mm, as drawn, 99.9+%
Magnesio, wire reel, 2m, diameter 1.1mm, as drawn, 99.9+%
Magnesio, wire reel, 0.5m, diameter 0.4mm, as drawn, 99.9+%
Magnesio, microfoil, 25x25mm, thinness 1.0μm, specific density 174μg/cm2, 6 micron aluminum permanent support, 99.9%