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首页> 外文期刊>Acta Biochimica et Biophysica Sinica >Reactive Effect of Low Intensity He-Ne Laser upon Damaged infrastructure of Human Erythrocyte Membrane in Fenton System by Atomic Force Microscopy
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Reactive Effect of Low Intensity He-Ne Laser upon Damaged infrastructure of Human Erythrocyte Membrane in Fenton System by Atomic Force Microscopy

机译:低强度He-Ne激光对Fenton系统中人红细胞膜结构破坏的原子力显微镜反应

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摘要

To find out the mechanism of modulating the deformability of erythrocytes with low intensity He-Ne laser action, we studied the effect of low intensity He-Ne laser on the ultrastructure of human erythrocyte membrane. Erythrocytes were treated with free radicals from a Fenton reaction system before exposing them to low intensity He-Ne laser. The ultrastructure of damaged erythrocyte membrane was examined by atomic force microscopy. The results showed that the erythrocyte membrane became very rough and the molecules on the surface of the membrane congregated into particles of different magnitudes sizes after treating with free radicals. Comparing the degree of congregation of the molecular particles in the non-irradiated group and the He-Ne laser irradiated (9 mW and 18 mW) group, we found the average size of molecular particles in the laser irradiated group was smaller than that in the non-irradiated group, indicating that the low intensity laser had repairing function to the damage of erythrocyte membrane produced by the free radicals.
机译:为了找出低强度He-Ne激光作用调节红细胞变形能力的机制,我们研究了低强度He-Ne激光对人红细胞膜超微结构的影响。在暴露于低强度He-Ne激光之前,先用Fenton反应系统中的自由基处理红细胞。通过原子力显微镜检查受损的红细胞膜的超微结构。结果表明,用自由基处理后,红细胞膜变得非常粗糙,并且膜表面上的分子聚集为大小不同的颗粒。比较未辐照组和He-Ne激光辐照组(9 mW和18 mW)组中分子颗粒的聚集程度,我们发现激光辐照组中分子颗粒的平均粒径小于未辐照组的平均粒径。非照射组,表明低强度激光对自由基产生的红细胞膜的损伤具有修复作用。

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