Albayati Samara, Li Nailin, Unsworth Amanda J, Liverani Elisabetta
Sol Sherry Thrombosis Research Center, Temple University School of Medicine, Temple University Hospital, Philadelphia, PA, USA.
Department of Medicine-Solna, Cardiovascular Medicine Unit, Karolinska Institutet, Stockholm, Sweden.
J Cell Commun Signal. 2022 Dec;16(4):661-675. doi: 10.1007/s12079-022-00676-0. Epub 2022 Apr 12.
Platelets are well known for their roles in hemostasis and thrombosis, and are increasingly recognized for their abilities to interact with white blood cells during inflammatory diseases, via secreted soluble factors as well as cell-cell contact. This interaction has been investigated in animal models and patient samples and has shown to be implicated in patient outcomes in several diseases. Platelet-leukocyte co-cultures are widely used to study platelet-leukocyte interactions ex vivo. However, there is a paucity with regard to the systematic characterization of cell activation and functional behaviors of platelets and leukocytes in these co-cultures. Hence we aimed to characterize a model of platelet-leukocyte co-culture ex vivo. Human peripheral blood mononuclear cell (PBMC) and platelets were isolated and co-cultured for 5 days at 37 °C in the presence or absence of anti-CD3/CD28 antibodies or PHA. We evaluated PF-4 secretion and p-selectin expression in platelets as markers of platelet activation. Lymphocyte activation was assessed by cell proliferation and cell population phenotyping, in addition to platelet-lymphocyte aggregation. Platelet secretion and p-selectin expression is maintained throughout the co-culture, indicating that platelets were viable and reactive over the 5 days. Similarly PBMCs were viable and maintained proliferative capacity. Finally, dynamic heterotypic conjugation between platelets and T lymphocytes was also observed throughout co-culture (with a peak at days 3 and 4) upon T lymphocyte activation. In conclusion, this in vitro model can successfully mimic the in vivo interaction between platelets and T lymphocytes, and can be used to confirm and/or support in vivo results.
血小板因其在止血和血栓形成中的作用而广为人知,并且越来越多地因其在炎症性疾病期间通过分泌可溶性因子以及细胞间接触与白细胞相互作用的能力而受到认可。这种相互作用已在动物模型和患者样本中进行了研究,并已证明与多种疾病的患者预后有关。血小板-白细胞共培养被广泛用于体外研究血小板-白细胞相互作用。然而,对于这些共培养中血小板和白细胞的细胞活化及功能行为的系统表征却很少。因此,我们旨在表征一种体外血小板-白细胞共培养模型。分离人外周血单个核细胞(PBMC)和血小板,并在37℃下于存在或不存在抗CD3/CD28抗体或PHA的情况下共培养5天。我们评估了血小板中PF-4分泌和p-选择素表达作为血小板活化的标志物。除了血小板-淋巴细胞聚集外,还通过细胞增殖和细胞群体表型分析来评估淋巴细胞活化。在整个共培养过程中血小板分泌和p-选择素表达均得以维持,表明血小板在5天内具有活力且有反应性。同样,PBMC也具有活力并维持增殖能力。最后,在T淋巴细胞活化后,在整个共培养过程中(在第3天和第4天达到峰值)也观察到了血小板与T淋巴细胞之间的动态异型结合。总之,这种体外模型可以成功模拟血小板与T淋巴细胞之间的体内相互作用,并可用于确认和/或支持体内结果。