Klausmann M, Pflüger K H, Krumwieh D, Seiler F R, Havemann K
Department of Medicine, University of Marburg, F.R.G.
Leukemia. 1988 Dec;2(12 Suppl):63S-72S.
Besides its effect on bone marrow progenitors, GM-CSF is able to modulate functions of mature cells such as neutrophils. It inhibits random migration and chemotaxis through action on both cells and chemotactic factors, and stimulates oxidative metabolism as well as elastase release. Furthermore, it strongly enhances the response of the cells to the usual stimulants such as f-Met-Leu-Phe and phorbol esters. The role of neutral proteinases and activated oxygen species in different diseases such as ARDS, emphysema, coagulation defects, arthritis, and inflammation, is recognized. The remarkable in vitro release of neutral proteinases and activated oxygen species from granulocytes after GM-CSF stimulation may be of importance in vivo. This should be considered in clinical application of GM-CSF, particularly with high-dose therapy.
除了对骨髓祖细胞有作用外,粒细胞-巨噬细胞集落刺激因子(GM-CSF)还能够调节成熟细胞(如中性粒细胞)的功能。它通过作用于细胞和趋化因子来抑制随机迁移和趋化性,并刺激氧化代谢以及弹性蛋白酶释放。此外,它还能强烈增强细胞对常见刺激物(如N-甲酰甲硫氨酰-亮氨酰-苯丙氨酸和佛波酯)的反应。中性蛋白酶和活性氧在不同疾病(如急性呼吸窘迫综合征、肺气肿、凝血缺陷、关节炎和炎症)中的作用已得到认可。GM-CSF刺激后粒细胞在体外显著释放中性蛋白酶和活性氧,这在体内可能具有重要意义。在GM-CSF的临床应用中,尤其是高剂量治疗时,应考虑到这一点。