Research Centre for High Altitude Medicine, Qinghai University Medical College, Qinghai University, Xining, Qinghai 810000, P.R. China.
Department of Occupational Health and Occupational Medicine, School of Public Health and Tropical Medicine, Southern Medical University, Guangzhou, Guangdong 510515, P.R. China.
Mol Med Rep. 2014 Mar;9(3):819-24. doi: 10.3892/mmr.2014.1894. Epub 2014 Jan 13.
The regulation of neutrophil polarization by calcium entry is critical for maintaining an effective host response. Hypoxia has a major effect on the apoptosis of neutrophils, however the role of store-operated Ca2+ entry (SOCE) in neutrophil polarization under hypoxia remains to be elucidated. In the present study, we examined the polarization of differentiated human neutrophil-like HL-60 (dHL-60) cells exposed to hypoxia (3% O2) and the results demonstrated that the percentage of polarized cells following exposure to an N-formyl-Met-Leu-Phe (fMLP) gradient in the Zigmond chamber was increased. We examined stromal interaction molecule 1 (STIM1) and Orai1 expression in dHL-60 cells during hypoxia, and it was observed that the expression of STIM1 and Orai1 was significantly reduced at day 2. However, no apparent change was observed on the first day, indicating that this effect is dependent on stimulation time. Fluo-4/acetoxymethyl (AM) ester imaging also demonstrated that SOCE was decreased in dHL-60 cells. The plasmid overexpression assay demonstrated that the response of polarization was returned to the control level. We demonstrated the inhibitory role of SOCE on the polarization of dHL-60 cells under hypoxic conditions, which may be the mechanism for the adaptation of neutrophils to hypoxia. SOCE is also suggested to be a key modulator of immune deficiency under hypoxic conditions and is potentially a therapeutic target.
钙内流对中性粒细胞极化的调节对于维持有效的宿主反应至关重要。缺氧对中性粒细胞的凋亡有很大的影响,然而,在缺氧条件下储存操作的钙内流(SOCE)在中性粒细胞极化中的作用仍有待阐明。在本研究中,我们检查了暴露于低氧(3%O2)的分化的人中性粒细胞样 HL-60(dHL-60)细胞的极化,结果表明,在 Zigmond 室中暴露于 N-甲酰基-Met-Leu-Phe(fMLP)梯度后极化细胞的百分比增加。我们在低氧条件下检查了 dHL-60 细胞中基质相互作用分子 1(STIM1)和 Orai1 的表达,观察到 STIM1 和 Orai1 的表达在第 2 天显著降低。然而,第一天没有观察到明显的变化,表明这种效应依赖于刺激时间。Fluo-4/乙氧基甲基(AM)酯成像也表明 SOCE 在 dHL-60 细胞中减少。质粒过表达试验表明,极化反应恢复到对照水平。我们证明了 SOCE 在低氧条件下对 dHL-60 细胞极化的抑制作用,这可能是中性粒细胞适应低氧的机制。SOCE 也被认为是低氧条件下免疫缺陷的关键调节剂,具有潜在的治疗靶点。