Cognasse Fabrice, Hamzeh Cognasse Hind, Eyraud Marie Ange, Prier Amélie, Arthaud Charles Antoine, Tiberghien Pierre, Begue Stephane, de Korte Dirk, Gouwerok Eric, Greinacher Andreas, Aurich Konstanze, Noorman Femke, Dumont Larry, Kelly Kathleen, Cloutier Marc, Bazin Renée, Cardigan Rebecca, Huish Sian, Smethurst Peter, Devine Dana, Schubert Peter, Johnson Lacey, Marks Denese C
Établissement Français du Sang Auvergne-Rhône-Alpes (Dpt scientifique), Saint-Étienne, France.
University of Jean Monnet, Mines Saint-Étienne, INSERM, U 1059 SAINBIOSE, Saint-Étienne, France.
Transfusion. 2023 Jan;63(1):217-228. doi: 10.1111/trf.17200. Epub 2022 Dec 1.
Structural and biochemical changes in stored platelets are influenced by collection and processing methods. This international study investigates the effects of platelet (PLT) processing and storage conditions on HMGB1, sCD40L, and sCD62P protein levels in platelet concentrate supernatants (PCs).
STUDY DESIGN/METHODS: PC supernatants (n = 3748) were collected by each international centre using identical centrifugation methods (n = 9) and tested centrally using the ELISA/Luminex platform. Apheresis versus the buffy coat (BC-PC) method, plasma storage versus PAS and RT storage versus cold (4°C) were investigated. We focused on PC preparation collecting samples during early (RT: day 1-3; cold: day 1-5) and late (RT: day 4-7; cold: day 7-10) storage time points.
HMGB1, sCD40L, and sCD62P concentrations were similar during early storage periods, regardless of storage solution (BC-PC plasma and BC-PC PAS-E) or temperature. During storage and without PAS, sCD40L and CD62P in BC-PC supernatants increased significantly (+33% and +41%, respectively) depending on storage temperature (22 vs. 4°C). However, without PAS-E, levels decreased significantly (-31% and -20%, respectively), depending on storage temperature (22 vs. 4°C). Contrastingly, the processing method appeared to have greater impact on HMGB1 release versus storage duration. These data highlight increases in these parameters during storage and differences between preparation methods and storage temperatures.
The HMGB1 release mechanism/intracellular pathways appear to differ from sCD62P and sCD40L. The extent to which these differences affect patient outcomes, particularly post-transfusion platelet increment and adverse events, warrants further investigation in clinical trials with various therapeutic indications.
储存血小板的结构和生化变化受采集和处理方法影响。这项国际研究调查了血小板(PLT)处理和储存条件对血小板浓缩物上清液(PC)中HMGB1、可溶性CD40配体(sCD40L)和可溶性P选择素(sCD62P)蛋白水平的影响。
研究设计/方法:每个国际中心使用相同的离心方法收集PC上清液(n = 3748)(n = 9),并使用酶联免疫吸附测定法/液相芯片平台进行集中检测。研究了单采血小板与白膜层(BC-PC)法、血浆储存与血小板添加剂溶液(PAS)储存以及室温(RT)储存与冷藏(4°C)储存的差异。我们重点关注在早期(RT:第1 - 3天;冷藏:第1 - 5天)和晚期(RT:第4 - 7天;冷藏:第7 - 10天)储存时间点采集样本的PC制备情况。
无论储存溶液(BC-PC血浆和BC-PC PAS-E)或温度如何,早期储存期间HMGB1、sCD40L和sCD62P浓度相似。在储存过程中且无PAS时,BC-PC上清液中的sCD40L和CD62P根据储存温度(22°C与4°C)显著增加(分别增加33%和41%)。然而,无PAS-E时,根据储存温度(22°C与4°C),水平显著下降(分别下降31%和20%)。相比之下,处理方法似乎对HMGB1释放的影响大于储存持续时间。这些数据突出了储存期间这些参数的增加以及制备方法和储存温度之间的差异。
HMGB1释放机制/细胞内途径似乎与sCD62P和sCD40L不同。这些差异对患者结局的影响程度,特别是输血后血小板增量和不良事件,值得在具有各种治疗适应症的临床试验中进一步研究。