Kuznetsova Tatsiana, Kulahava Tatsiana, Zholnerevich Ivan, Amaegberi Nadezda, Semenkova Galina, Shadyro Oleg, Arnhold Juergen
N.I. Pirogov Russian National Research Medical University, Moscow, Russian Federation.
Department of Biophysics, Faculty of Physics, Belarusian State University, Minsk, Belarus.
Mol Immunol. 2017 Jul;87:317-324. doi: 10.1016/j.molimm.2017.05.007. Epub 2017 May 22.
The aim of this work was to compare cell form, size and volume as well as the locomotor activity of polymorphonuclear leukocytes (PMNLs) stimulated by adhesion to glass and exposed to hypochlorous acid at non-toxic dose. After 20min of adhesion to a glass surface, volume, cell surface area and projection area of PMNLs were equaled to 143.1±21.4μm, 288.8±28.8μm and 248.3±32.3μm, respectively. Projection area of PMNLs exposed to NaOCl was noticeably enlarged as compared with control samples. The cell volume of 20min adherent cells exposed to NaOCl was enlarged in comparison with both control cells and 5min adhered exposed to NaOCl cells. NaOCl exposure induced a degranulation of PMNLs as measured by lysozyme release. Granules could be found both above the cell surface and on the substratum near the cell. The S/V ratio for PMNLs increased (from 1.52 to 2.02μm) with the increasing of cell activation time. But at NaOCl addition the reverse tendency was observed (from 2.10 to 1.87μm). In cells exposed to NaOCl the redistribution and decrease of concentration of F-actin took place. This observation supports the hypothesis that the priming of PMNLs with hypochlorous acid modifies cell motility and morphology and reflects also on other functions.
这项工作的目的是比较多形核白细胞(PMNLs)在粘附于玻璃并暴露于无毒剂量的次氯酸后,其细胞形态、大小和体积以及运动活性。在粘附于玻璃表面20分钟后,PMNLs的体积、细胞表面积和投影面积分别为143.1±21.4μm、288.8±28.8μm和248.3±32.3μm。与对照样品相比,暴露于次氯酸钠的PMNLs的投影面积明显增大。与对照细胞和粘附5分钟后暴露于次氯酸钠的细胞相比,暴露于次氯酸钠的20分钟粘附细胞的细胞体积增大。通过溶菌酶释放测量发现,次氯酸钠暴露诱导了PMNLs的脱颗粒。在细胞表面上方和细胞附近的基质上都可以发现颗粒。随着细胞活化时间的增加,PMNLs的S/V比值增加(从1.52增加到2.02μm)。但加入次氯酸钠后观察到相反的趋势(从2.10降至1.87μm)。在暴露于次氯酸钠的细胞中,F-肌动蛋白发生了重新分布且浓度降低。这一观察结果支持了以下假设:用次氯酸预处理PMNLs会改变细胞运动性和形态,并且也反映在其他功能上。