Blood Transfusion Research Center, High Institute for Research and Education in Transfusion Medicine, Tehran, Iran.
Australian Centre for Blood Diseases, Monash University, Melbourne, VIC, 3004, Australia.
J Thromb Thrombolysis. 2018 Nov;46(4):534-540. doi: 10.1007/s11239-018-1739-6.
Platelet receptor GPVI plays an important role in platelet firm adhesion to site of vascular injury. Receptor ligation with collagen, in company with other agonist/receptor interactions, augments inside out signaling pathways leading to platelet aggregation and thrombus formation. As GPVI expression is significantly modulated by ectodomain shedding, this study aimed to examine whether GPVI shedding functionally affects collagen-mediated platelet activation during storage. 6 PRP-platelet concentrates were subjected to adhesion analysis on collagen matrix under mild stirring condition as well as collagen-induced aggregation on day 1, 3 and 5 post-storage. Concurrently, platelet supernatants of same samples were fractionated by ultra-centrifugation and obtained micro-particle-free samples were subjected to western blot analysis for the evaluation of GPVI shedding. We showed a direct correlation between collagen-dependent platelet aggregation and adhesion (r = 0.8, p = 0.0001). The increasing levels of GPVI shedding during storage were in reverse correlation with collagen-induced platelet aggregation (r = - 0.82, p = 0.0004) which was significantly reducing during storage. Platelet adhesion to collagen matrix significantly decreased post-storage while it was also reversely correlated with the levels of GPVI shedding during 5 days storage of platelets (r = - 0.69, p = 0.002). Data presented here demonstrated that progressive shedding of surface adhesion receptor GPVI can affect its functional activities in stored platelets. Thereby considering the crucial role of GPVI in platelet adhesion to the site of injury, whether the therapeutic efficacy of banked platelet products could be influenced by storage-dependent shedding of this receptor, remains to be answered in future studies.
血小板受体 GPVI 在血小板牢固黏附于血管损伤部位中发挥重要作用。受体与胶原的结合,与其他激动剂/受体相互作用一起,增强了外向信号通路,导致血小板聚集和血栓形成。由于 GPVI 的表达受到细胞外结构域脱落的显著调节,因此本研究旨在研究 GPVI 脱落是否会在储存过程中对胶原介导的血小板激活产生功能影响。6 份 PRP-血小板浓缩物在轻度搅拌条件下在胶原基质上进行黏附分析,以及在储存后第 1、3 和 5 天进行胶原诱导的聚集。同时,对相同样本的血小板上清液进行超速离心分离,并获得无微粒的样品,进行 Western blot 分析以评估 GPVI 脱落。我们显示了胶原依赖性血小板聚集和黏附之间的直接相关性(r=0.8,p=0.0001)。储存过程中 GPVI 脱落的增加水平与胶原诱导的血小板聚集呈负相关(r=-0.82,p=0.0004),而聚集在储存过程中显著减少。储存后血小板对胶原基质的黏附显著降低,而这也与储存 5 天期间 GPVI 脱落水平呈负相关(r=-0.69,p=0.002)。这里呈现的数据表明,表面黏附受体 GPVI 的逐渐脱落会影响其在储存血小板中的功能活性。因此,考虑到 GPVI 在血小板黏附到损伤部位中的关键作用,储存依赖性脱落是否会影响库存血小板产品的治疗效果,仍有待未来研究回答。