Survival and recovery of apheresis platelets stored in a polyolefin container with high oxygen permeability

Vox Sang. 2008 May;94(4):292-8. doi: 10.1111/j.1423-0410.2008.01042.x. Epub 2008 Mar 5.

Abstract

Background and objectives: Oxygen permeability is important in platelet storage media. We compared a new polyolefin container with enhanced oxygen permeability (PO-80; Kawasumi, Tokyo, Japan) to a widely used alternative (PL2410; Baxter Healthcare, Deerfield, IL, USA).

Materials and methods: In vitro characteristics of paired platelet concentrates (PCs; mean 4.2 x 10(11)/250 ml plasma/bag) stored in PO-80 or PL2410 were assessed through 9 days of storage. In vivo recovery and survival of 7-day-old autologous PCs were assessed according to the Murphy method.

Results: Laboratory assessment of platelet quality favoured PO-80 during 9 days of storage with statistically significant differences in glucose consumption (2.75 vs. 4.93 mmol/10(12)/24 h in the interval 120-168 h), lactate generation (4.37 vs. 8.11 mmol/10(12)/24 h in the interval 120-168 h), pressure of oxygen (pO(2)) (59.3 vs. 38.1 mmHg at day 1), and HCO(3)(-) (14.7 vs. 13.4 mmol/l at day 1). Statistically significant differences were not seen in aggregation, hypotonic shock response or pH. In vivo assessment of autologous platelets stored 7 days in the PO-80 container revealed that recovery was 82.1% and survival was 81.0% of fresh control. Seven-day stored PCs in PO-80 were shown in vivo to be non-inferior to fresh platelets, with upper confidence limits (UCL(95)) in recovery and survival of stored PCs below the maximum acceptable difference (MAD); 15.3% UCL(95) < 20.4% MAD and 2.1 days UCL(95) < 2.1 days MAD.

Conclusions: The in vitro characteristics of PCs stored in a highly oxygen-permeable container were stable at least 7 days. The in vivo study supports the suitability of PO-80 for 7-day platelet storage.

Publication types

  • Comparative Study
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Blood Banking / methods*
  • Blood Gas Analysis
  • Blood Platelets / metabolism*
  • Humans
  • Hydrogen-Ion Concentration
  • Oxygen / metabolism
  • Permeability
  • Plastics / chemistry
  • Plastics / pharmacology*
  • Platelet Transfusion
  • Plateletpheresis / instrumentation*
  • Polyenes / chemistry
  • Polyenes / pharmacokinetics*
  • Specimen Handling

Substances

  • Plastics
  • Polyenes
  • PL 732
  • Oxygen