Bynum 2016 Transfusion
Bynum JA, Adam Meledeo M, Getz TM, Rodriguez AC, Aden JK, Cap AP, Pidcoke HF (2016) Bioenergetic profiling of platelet mitochondria during storage: 4Β°C storage extends platelet mitochondrial function and viability. Transfusion 56 Suppl 1:S76-84. |
Bynum JA, Meledeo MA, Getz TM, Rodriguez AC, Aden JK, Cap AP, Pidcoke HF (2016) Transfusion
Abstract: Platelets (PLTs) are stored at room temperature (RT) to preserve in vivo circulation time, but PLT quality is degraded. The PLT storage lesion is mitigated by refrigeration, but questions remain regarding effects of cold storage (4Β°C) on mitochondrial function. Mitochondrial reactive oxygen species (ROS) generation may adversely affect PLT function and viability during storage, and refrigeration may mitigate these effects.
PLTs were stored under two temperature conditions (RT, 20-24Β°C; or 4Β°C, 1-6Β°C) and four storage durations (baseline [BL] and Days 3, 5, and 7). Mitochondrial respiration and maximal oxygen utilization were assessed with high-resolution respirometry. Mitochondrial ROS generation was assessed using a superoxide stain. Rotational thromboelastometry (ROTEM) was performed at BL and on Day 5 to assess PLT function. Collagen-induced PLT aggregation was measured by impedance aggregometry.
Mitochondrial ROS in 4Β°C-stored samples were lower compared to RT and retained a greater capacity to generate ROS after activation. Mitochondrial respiration and maximal mitochondrial utilization was conserved in PLTs stored at 4Β°C. ROTEM data demonstrated that net maximum clot firmness was higher in 4Β°C samples compared to RT and prevented fibrinolysis. The aggregation response to collagen was preserved in the 4Β°C samples versus RT-stored PLTs. Aggregation impairment correlated well with attenuated mitochondrial respiration and elevated production of intracellular mitochondrial ROS in the RT PLTs.
Mitochondrial damage and ROS production may contribute to loss of PLT viability during storage, whereas cold storage is known to preserve PLT function. Here we demonstrate that 4Β°C storage results in less oxidant stress and preserves mitochondrial function and potential compared to RT. β’ Keywords: cold storage
β’ O2k-Network Lab: US TX San Antonio Ross E
Labels: MiParea: Respiration
Stress:Oxidative stress;RONS Organism: Human Tissue;cell: Blood cells, Platelet Preparation: Intact cells
Coupling state: LEAK, ROUTINE, ET
Pathway: ROX
HRR: Oxygraph-2k
2016-06, MitoEAGLE blood cells data, MitoFit 2021 PLT