Department of Chemistry and Biomedicine, Linnaeus University, 391 82 Kalmar, Sweden.
Mayo Clinic Vaccine Research Group, Mayo Clinic, Rochester, MN 55905, USA.
Int J Mol Sci. 2024 Jan 16;25(2):1091. doi: 10.3390/ijms25021091.
Platelet activation and the complement system are mutually dependent. Here, we investigated the effects of storage time on complement activation and platelet function in routinely produced platelet concentrates. The platelet concentrates (n = 10) were stored at 22 °C for seven days and assessed daily for complement and platelet activation markers. Additionally, platelet function was analyzed in terms of their responsiveness to protease-activated receptor-1 (PAR-1) and thromboxane A2 receptor (TXAR) activation and their capacity to adhere to collagen. Complement activation increased over the storage period for all analyzed markers, including the C1rs/C1-INH complex (fold change (FC) = 1.9; < 0.001), MASP-1/C1-INH complex (FC = 2.0; < 0.001), C4c (FC = 1.8, < 0.001), C3bc (FC = 4.0; < 0.01), and soluble C5b-9 (FC = 1.7, < 0.001). Furthermore, the levels of soluble platelet activation markers increased in the concentrates over the seven-day period, including neutrophil-activating peptide-2 (FC = 2.5; < 0.0001), transforming growth factor beta 1 (FC = 1.9; < 0.001) and platelet factor 4 (FC = 2.1; < 0.0001). The ability of platelets to respond to activation, as measured by surface expression of CD62P and CD63, decreased by 19% and 24% ( < 0.05) for PAR-1 and 69-72% ( < 0.05) for TXAR activation, respectively, on Day 7 compared to Day 1. The extent of platelet binding to collagen was not significantly impaired during storage. In conclusion, we demonstrated that complement activation increased during the storage of platelets, and this correlated with increased platelet activation and a reduced ability of the platelets to respond to, primarily, TXAR activation.
血小板活化和补体系统相互依存。在这里,我们研究了储存时间对常规生产的血小板浓缩物中补体活化和血小板功能的影响。将血小板浓缩物(n = 10)在 22°C 下储存 7 天,并每天评估补体和血小板活化标志物。此外,还分析了血小板对蛋白酶激活受体-1(PAR-1)和血栓烷 A2 受体(TXAR)激活的反应性以及与胶原黏附的能力。在整个储存期间,所有分析的标志物的补体活化均增加,包括 C1rs/C1-INH 复合物(倍数变化(FC)= 1.9;<0.001)、MASP-1/C1-INH 复合物(FC = 2.0;<0.001)、C4c(FC = 1.8,<0.001)、C3bc(FC = 4.0;<0.01)和可溶性 C5b-9(FC = 1.7,<0.001)。此外,在 7 天的时间内,浓缩物中可溶性血小板活化标志物的水平也增加,包括中性粒细胞激活肽-2(FC = 2.5;<0.0001)、转化生长因子β 1(FC = 1.9;<0.001)和血小板因子 4(FC = 2.1;<0.0001)。血小板对激活的反应能力,通过 CD62P 和 CD63 的表面表达来衡量,与第 1 天相比,在第 7 天 PAR-1 分别降低了 19%和 24%(<0.05),而 TXAR 激活分别降低了 69-72%(<0.05)。在储存过程中,血小板与胶原的结合程度没有明显受损。总之,我们证明了在血小板储存过程中补体的活化增加,这与血小板的活化增加以及血小板对主要是 TXAR 激活的反应能力降低有关。