Pastakia K B, Brownson N E, Terle D A, Harvath L
Laboratory of Cellular Hematology, Division of Hematology, Center for Biologic Evaluation and Research, Food and Drug Administration, Bethesda, Maryland, USA.
Clin Mol Pathol. 1996 Feb;49(1):M17-22. doi: 10.1136/mp.49.1.m17.
Aims-To investigate the heterotypic adhesion of unactivated platelets to chemotactically responsive (migrated) and non-responsive (non-migrated) polymorphonuclear neutrophils (PMN).Methods-Platelets and PMN were isolated from autologous, normal blood. Migrated and non-migrated PMN were separated after N-formylmethionyl-leucylphenylalanine (FMLP) stimulation. Platelets were labelled with a fluorescent monoclonal antibody directed against CD41 (GPIIb-IIIa). Platelets (3 x 10(8)/ml) and PMN (3 x 10(6)/ml) were incubated together. Heterotypic cell adhesion was measured in isolated PMN and PMN co-incubated with platelets by flow cytometric analysis of platelet marker fluorescence in PMN gated events. Platelet-PMN adhesion was also visualised by fluorescence microscopy.Results-In studies of isolated PMN, contaminating platelets were bound to 16-34% of unstimulated PMN, 7-22% of stimulated PMN, 2-4% of migrated PMN, and 17-24% of non-migrated PMN. When platelets were co-incubated with migrated or non-migrated PMN, 15-78% of PMN bound one or two platelets.Conclusions-Unactivated platelets adhere to isolated PMN in vitro. Fewer unactivated platelets were adhered to migrated PMN than to non-migrated PMN in isolated PMN preparations. These results indicate that platelets adhering to PMN are removed during PMN migration.
目的——研究未活化血小板与趋化反应性(已迁移)和无反应性(未迁移)多形核中性粒细胞(PMN)的异型黏附。方法——从自体正常血液中分离血小板和PMN。在N-甲酰甲硫氨酰-亮氨酰-苯丙氨酸(FMLP)刺激后分离已迁移和未迁移的PMN。用针对CD41(糖蛋白IIb-IIIa)的荧光单克隆抗体标记血小板。将血小板(3×10⁸/ml)和PMN(3×10⁶/ml)一起孵育。通过对PMN门控事件中血小板标志物荧光的流式细胞术分析,在分离的PMN以及与血小板共孵育的PMN中测量异型细胞黏附。血小板-PMN黏附也通过荧光显微镜观察。结果——在对分离的PMN的研究中,污染的血小板与16% - 34%的未刺激PMN、7% - 22%的刺激PMN、2% - 4%的已迁移PMN以及17% - 24%的未迁移PMN结合。当血小板与已迁移或未迁移的PMN共孵育时,15% - 78%的PMN结合了一或两个血小板。结论——未活化血小板在体外可黏附于分离的PMN。在分离的PMN制剂中,黏附于已迁移PMN的未活化血小板比未迁移PMN少。这些结果表明,在PMN迁移过程中,黏附于PMN的血小板被清除。