Bochsler P N, Doré M, Neilsen N R, Slauson D O
Department of Pathology, College of Veterinary Medicine, Cornell University, Ithaca, New York.
Inflammation. 1990 Oct;14(5):499-508. doi: 10.1007/BF00914271.
Surface adhesion molecules present on human leukocytes are known to regulate certain adhesion-related events, such as adhesion to endothelium, extravasation, and aggregation. We have used a mouse anti-human monoclonal antibody designated 60.3 (MAb 60.3) and indirect immunofluorescence technique to identify an antigen on bovine neutrophils (PMNs). MAb 60.3 bound to resting and stimulated bovine PMN in a surface-oriented pattern. Immunofluorescence flow cytometric analysis indicated that warming the PMNs from 4 degrees C to 37 degrees C slightly increased (13.9%) expression of the antigen recognized by MAb 60.3. Zymosan-activated serum (ZAS, 10%) increased antigen expression by 12.4% over those PMNs in buffer alone, and phorbol 12-myristate 13-acetate (PMA; 100 ng/ml) by 65.6%. Bacterial lipopolysaccharide (LPS; 1 micrograms/ml) from E. coli 0111:B4 did not enhance antigen expression. The functional nature of this antigen was demonstrated by use of MAb 60.3 and PMN aggregation. Preincubation of bovine PMN with MAb 60.3 for 10 min resulted in nearly complete inhibition of PMN-PMN aggregation upon subsequent stimulation with PMA (100 ng/ml); preincubation with a control antibody did not inhibit aggregation. These results indicate that bovine PMNs possess surface molecule(s) that may function in adhesion-related events, and surface expression may be enhanced by PMN stimulation.
已知人类白细胞上存在的表面粘附分子可调节某些与粘附相关的事件,如与内皮细胞的粘附、渗出和聚集。我们使用了一种名为60.3的小鼠抗人单克隆抗体(单克隆抗体60.3)和间接免疫荧光技术来鉴定牛中性粒细胞(PMN)上的一种抗原。单克隆抗体60.3以表面定向模式与静止和受刺激的牛PMN结合。免疫荧光流式细胞术分析表明,将PMN从4℃加热至37℃会使单克隆抗体60.3识别的抗原表达略有增加(13.9%)。酵母聚糖激活血清(ZAS,10%)使抗原表达比单独缓冲液中的PMN增加了12.4%,佛波酯12-肉豆蔻酸酯13-乙酸酯(PMA;100 ng/ml)使其增加了65.6%。来自大肠杆菌0111:B4的细菌脂多糖(LPS;1微克/毫升)并未增强抗原表达。通过使用单克隆抗体60.3和PMN聚集证明了该抗原的功能性质。用单克隆抗体60.3对牛PMN进行预孵育10分钟,在随后用PMA(100 ng/ml)刺激时,几乎完全抑制了PMN-PMN聚集;用对照抗体预孵育则不抑制聚集。这些结果表明,牛PMN具有可能在与粘附相关的事件中起作用的表面分子,并且PMN刺激可能会增强其表面表达。