Institut de Chimie Physique UMR 8000, CNRS, Université Paris-Saclay, 91405 Orsay, France.
Int J Mol Sci. 2022 Jan 11;23(2):767. doi: 10.3390/ijms23020767.
Neutrophils play a very key role in the human immune defense against pathogenic infections. The predominant players in this role during the activation of neutrophils are the release of cytotoxic agents stored in the granules and secretory vesicles and the massive production of reactive oxygen species (ROS) initiated by the enzyme NADPH oxidase. In addition, in living organisms, cells are continuously exposed to endogenous (inflammations, elevated neutrophil presence in the vicinity) and exogenous ROS at low and moderate levels (travels by plane, radiotherapy, space irradiation, blood banking, etc.). To study these effects, we used ROS induced by gamma radiation from low (0.2 Gy) to high (25 Gy) dose levels on PLB-985 cells from a myeloid cell line differentiated to neutrophil-like cells that are considered a good alternative to neutrophils. We determined a much longer lifetime of PLB-985 cells than that of neutrophils, which, as expected, decreased by increasing the irradiation dose. In the absence of any secondary stimulus, a very low production of ROS is detected with no significant difference between irradiated and non-irradiated cells. However, in phagocytosing cells, irradiation doses above 2 Gy enhanced oxidative burst in PLB-985 cells. Whatever the irradiation dose, NADPH oxidase devoid of its cytosolic regulatory units is observed at the plasma membrane in irradiated PLB-985 cells. This result is different from that observed for irradiated neutrophils in which irradiation also induced a translocation of regulatory subunits suggesting that the signal transduction mechanism or pathway operate differently in both cells.
中性粒细胞在人体免疫防御针对病原性感染中起着非常关键的作用。在中性粒细胞激活过程中,起主要作用的是释放储存在颗粒和分泌小泡中的细胞毒性物质,以及由 NADPH 氧化酶启动的大量活性氧物种 (ROS) 的产生。此外,在活生物体中,细胞不断受到内源性(炎症、附近中性粒细胞增多)和外源性 ROS 的影响,其水平较低且处于中等水平(乘飞机旅行、放射治疗、空间辐射、血液储存等)。为了研究这些影响,我们使用来自低剂量(0.2 Gy)到高剂量(25 Gy)的γ射线诱导的 ROS 处理来自髓样细胞系分化为类似于中性粒细胞的细胞的 PLB-985 细胞,这些细胞被认为是中性粒细胞的良好替代品。我们确定了 PLB-985 细胞比中性粒细胞具有更长的寿命,这是预期的,随着照射剂量的增加,寿命会缩短。在没有任何二次刺激的情况下,检测到 PLB-985 细胞中 ROS 的产生非常低,并且在照射和未照射的细胞之间没有显著差异。然而,在吞噬细胞中,照射剂量高于 2 Gy 会增强 PLB-985 细胞中的氧化爆发。无论照射剂量如何,在照射的 PLB-985 细胞中,都可以观察到 NADPH 氧化酶失去其细胞溶质调节单元而位于质膜上。与照射的中性粒细胞观察到的结果不同,照射还诱导调节亚基的易位,这表明信号转导机制或途径在两种细胞中以不同的方式运作。