1996•Vox SanguinisRequires access

Effect of Whole Blood Storage on Factor VIII Recovery in Fresh Frozen Plasma and Cryoprecipitate

D. P. Allersma, R. M. R. Imambaks, L. J. Meerhof

Open publisher page 2 citations

Abstract

Depending on logistics, whole blood has to be stored for several hours after collection. If storage time exceeds 8 h, storage has to be at 1-6°C to comply with FDA regulations. In the Netherlands, however, whole blood is also stored for 12-15 h at 20-24°C using butane-1,4-diol cooling devices. We compared these two storage methods for factor VIII recovery in plasma and cryoprecipitate. At laboratory scale a significantly higher factor VIII recovery was found in plasma prepared from whole blood stored at ambient temperature; in cryoprecipitate this was confirmed but differences were not significant. However, as a result of inefficient cooling in routine procedure, no significantly different factor VIII recoveries were found in plasma prepared from whole blood stored at either of the two temperatures. From our study we conclude that overnight storage of whole blood at ambient temperature using butane-1,4-diol cooling devices has to be favoured.

About this research paper

What this paper is about

Depending on logistics, whole blood has to be stored for several hours after collection. If storage time exceeds 8 h, storage has to be at 1-6°C to comply with FDA regulations. In the Netherlands, however, whole blood is also stored for 12-15 h at 20-24°C using butane-1,4-diol cooling devices. We compared these two storage methods for factor VIII recovery in plasma and cryoprecipitate. At laboratory scale a significantly higher factor VIII recovery was found in plasma prepared from whole blood stored at ambient temperature; in cryoprecipitate this was confirmed but differences were not significant. However, as a result of inefficient cooling in routine procedure, no significantly different factor VIII recoveries were found in plasma prepared from whole blood stored at either of the two temperatures. From our study we conclude that overnight storage of whole blood at ambient temperature using butane-1,4-diol cooling devices has to be favoured.

Why it matters

OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Depending on logistics, whole blood has to be stored for several hours after collection. If storage time exceeds 8 h, storage has to be at 1-6°C to comply with FDA regulations. In the Netherlands, however, whole blood is also stored for 12-15 h at 20-24°C using butane-1,4-diol cooling devices. We compared these two storage methods for factor VIII recovery in plasma and cryoprecipitate. At laboratory scale a significantly higher factor VIII recovery was found in plasma prepared from whole blood stored at ambient temperature; in cryoprecipitate this was confirmed but differences were not significant. However, as a result of inefficient cooling in routine procedure, no significantly different factor VIII recoveries were found in plasma prepared from whole blood stored at either of the two temperatures. From our study we conclude that overnight storage of whole blood at ambient temperature using butane-1,4-diol cooling devices has to be favoured.

Key concepts: Cryoprecipitate, Whole blood, Fresh frozen plasma, Blood preservation, Blood collection, Chromatography, Chemistry, Medicine

Related papers

Back to paper searchBrowse research topicsOriginal source
Effect of Whole Blood Storage on Factor VIII Recovery in Fresh Frozen Plasma and Cryoprecipitate — Research Paper | ScholarLens