中国激光, 2009, 36 (10): 2603, 网络出版: 2009-10-23   

氦氖激光照射胸腺区促进荷瘤小鼠T细胞的CD59表达与活化信号转导

He-Ne Laser Irradiation to the Thymus Area Enhances CD59 Expression and Activation of Cell Signaling in T Cells of Tumor-Bearing Mice
作者单位
青岛大学 医学院免疫学教研室,山东 青岛 266071
摘要
探讨低功率氦氖激光照射对荷瘤小鼠T细胞CD59表达及其功能的影响。将(BALB/C)小鼠分为4组:Ⅰ组不做处理;Ⅱ组仅致瘤;Ⅲ组致瘤后每日照射胸腺区;Ⅳ组致瘤后隔日照射胸腺区。致瘤后第20天处死小鼠,分离培养胸腺T细胞。采用噻唑蓝(MTT)比色法测T细胞增殖,用免疫组化和免疫荧光测T细胞CD59表达量,然后用酶联免疫吸附测定法(ELISA)测T细胞活化后白介素2(IL-2)水平,用激光共聚焦测T细胞胞浆内钙离子变化,以及用流式细胞术测T细胞活化为CD+25T细胞的能力。结果表明,照射组肿瘤生长受抑;荷瘤组T细胞的CD59表达量、白介素2水平、增殖能力、钙离子浓度及活化的CD+25T细胞水平均低于正常组,但照射组明显高于非照射组。由此可见,激光照射促进了荷瘤小鼠T细胞CD59的表达,增强了其活化信号的转导。
Abstract
The effect of low-power He-Ne laser irradiation on the function and expression of CD59 on T cells in tumor-bearing mice is studied. 40 BALB/C mice were randomly and evenly divided into four groups:tumor-bearing mice were constructed in groupⅡⅢⅣ,while groupⅠwere treated as normal control. Thymus region of mice in group Ⅲ were irradiated every day and mice in group Ⅳ were irradiated every two days. The growth of tumors were noted by tumor growth curves. The mice were executed 20 days later and T cells were segregated from thymus. The expression of CD59 on T cells from thymus was detected by immunohistochemistry and immunofluorescence;lymphocyte proliferation in thymus was detected by lymphocyte transformation test (MTT assay);IL-2 was detected by enzyme-linked immunosorbent array (ELISA);Laser scanning confocal microscope imaging of the calcium fluorescent indicator dye Fluo-3/AM was used to determine the kinetic changes of [Ca2+] in T cell endochylema. CD25+ T cells were determined by flow cytometer .The experiments show that tumor growth was inhibited after laser irradiation.The expression of CD59 protein,the proliferation of lymphocytes,level of IL-2,degree of the [Ca2+] and the expression of CD25 in group Ⅱ,Ⅲ,Ⅳ were decreased compared with group Ⅰ,but were increased in group Ⅲ,Ⅳcompared with group Ⅱ. The results indicate that the low expression of CD59 was improved after irradiation by low-power He-Ne laser,and irradiation can enhance the function of T cells.
参考文献

[1] Xuexiang Shi,Bei Zhang,Jinlin Zang et al.. CD59 silencing via retrovirus-mediated RNA interference enhanced complement-mediated cell damage in ovary cancer[J]. Cellular & Molecular Immunology.,2009,6(1):61-66

[2] F. C. Kimberley,B. Sivasankar,B. Paul Morqan. Alternative roles for CD59[J]. Mol. Immunol.,2007,44(1-3):73-81

[3] 秦诚,蔡小勇. 补体调节蛋白CD46、CD55及CD59在肿瘤免疫治疗中的研究进展[J]. 癌症,2006,25(11):1450-1453

    Qin Cheng,Cai Xiaoyong. Research progression on complement regulatory proteins CD46,CD55,and CD59 in tumor immunotherapy[J]. Chinese J. Cancer.,2006,25(11):1450-1453

[4] M. Paula Longhi,B. Sivasankar,Nader Omidvar et al.. Murine CD59a modulates anti-viral CD4+ T cell activity in a complement-Independent Manner[J]. J. Immunol.,2005,175(11):7098-7102

[5] Karel Drbal,Manuel Moertelmaier,Christa Holzhauser et al.. Single-molecule microscopy reveals heterogeneous dynamics of lipid raft components upon TCR engagement[J]. International Immunology.,2007,19(5):675-684

[6] 石雨薇,付美兰,哈利达 等. 急性白血病红细胞CD55、CD59分子的检测及意义[J]. 新疆医科大学学报,2008,31(7):826-830

    Shi Yuwei,Fu Meilan,Halida et al.. Detection and significance of CD55~+ and CD59~+ in the erythrocyte and body fluid immunity sign with acute leukemia[J]. J. Xinjiang Medical University.,2008,31(7):826-830

[7] 杨小红,刘承宜,刘少杰 等. 软骨细胞光生物调节作用的体外实验[J]. 中国激光,2006,33(12):1692-1698

    Yang Xiaohong,Liu Chengyi,Liu Shaojie et al.. Photobiomodulation on chondrocyte proliferation :in vitro evaluation[J]. Chinese J . Lasers,2006,33(12):1692-1698

[8] 付春茂,孙新华.氦氖激光照射对兔正畸牙周组织中血管内皮细胞生长因子受体-2 表达的影响[J]. 中国激光,2008,35(1):156-160

    Fu Chunmao,Sun Xinhua. Effects of He-Ne laser irradiation on vascular endothelial cell growth factor R-2 expression in periodontium of tooth movement in rabbits[J]. Chinese J. Lasers,2008,35(1):156-160

[9] P. E. Korty,C. Brando,E. M. Shevach. CD59 functions as a signal-transducing molecule for human T cell activation[J]. J. Immunol.,1991,146(12):4092-8

[10] H. Okada,Y. Nagami,K. Takahashi et al.. 20 KDa homologous restriction factor of complement resembles T cell activating protein[J]. Biochem. Biophys. Res. Commun.,1989,162(3):1553-1559

[11] C. W. van den Berg,T. Cinek,M. B. Hallett et al.. Exogenous CD59 incorporated into U937 cells through its glycosyl phosphatidylinositol anchor becomes associated with signaling molecules in a time dependent manner[J]. Biochem. Soc. Trans.,1995,23(2):269S

[12] Yong Chen,Jie Qin,Jiye Cai et al.. Cold induces micro- and nano-scale reorganization of lipid raft markers at mounds of T cell membrane fluctuations[J]. Plos One.,2009,4(4):1-12

[13] Shuji Kojima. Induction of glutathione and activation of immune functions by low-dose,whole-body irradiation withγ-Rays[J]. Yakugaku Zasshi.,2006,126(10):849-857

[14] E. G. Novoselova,O. V. Glushkova,D. A. Cherenkov et al.. Effects of low-power laser radiation on mice immunity[J]. Photodermatol. Photoimmunol Photomed.,2006,22(1):33-38

[15] A. Gonzalez-Garcia,I. Merida,A. C. Martinez et al.. Intermediate affinity interleukin-2 receptor mediates survival via a phosphatidy linositol3-Kinase-dependent pathway[J]. Biolchem.,1997,272(15):10220-10226

[16] 黄保续,王洪斌,刘焕奇 等.氦氖激光对鼠体液免疫因子IL-2影响的实验研究[J]. 中国激光,2004,31(2):249-252

    Huang Baoxu,Wang Hongbin,Liu Huanqi et al.. Study on the effects of He-Ne laser irradiation on the activity of humoral immune factors IL-2 in mice[J]. Chinese J. Lasers,2004,31(2):249-252

[17] S. L. Gaffen,K. D. Liu. Overview of interleukin-2 function,production and clinical applications[J]. Cytokine.,2004,28(3):109-23

徐鹤, 高美华. 氦氖激光照射胸腺区促进荷瘤小鼠T细胞的CD59表达与活化信号转导[J]. 中国激光, 2009, 36(10): 2603. Xu He, Gao Meihua. He-Ne Laser Irradiation to the Thymus Area Enhances CD59 Expression and Activation of Cell Signaling in T Cells of Tumor-Bearing Mice[J]. Chinese Journal of Lasers, 2009, 36(10): 2603.

本文已被 2 篇论文引用
被引统计数据来源于中国光学期刊网
引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!