细胞受体

  • 网络Cell receptors;TcR;BCR
细胞受体细胞受体
  1. 非小细胞肺癌患者T细胞受体Vβ表达和克隆性研究

    Study on clonal expression of T cells bearing dominant TCR V β in non-small-cell lung cancers

  2. 应用siRNA抑制神经胶质瘤C6细胞受体表达的探讨

    SiRNA Inhibit the Expression of Receptor in Mammalian Cells

  3. 方法应用PCR技术扩增T细胞受体γ链基因重排,选用四种限制性核酸内切酶消化扩增产物。

    Methods After amplifying T-cell receptor γ chain gene rearrangement using polymerase chain reaction ( PCR ), we digested the products with 4 kinds of restriction enzyme .

  4. T细胞受体(TCR)Vβ基因1&20亚家族在识别和杀伤病毒及肿瘤抗原方面各自有着重要的作用。

    T cell receptor ( TCR ) V β 1-20 genes have important roles in recognizing viral antigen and tumor antigen .

  5. CD28协同刺激分子对T细胞受体介导的胸腺细胞亚群凋亡的影响

    Effect of CD28 costimulator on T Cell receptor ( TCR ) - induced apoptosis of thymocytes

  6. T细胞受体基因重排分析预测皮肤T细胞淋巴瘤患者的临床预后:Southern印迹法与PCR法的比较研究

    Analysis of T - cell receptor gene rearrangement for predicting clinical outcome in patients with cutaneous T - cell lymphoma : A comparison of Southern blot and polymerase chain reaction methods

  7. 目的:建立T细胞受体(TCR)在免疫突触形成过程中作重定向(reorientation)运动的机制模型。

    Objective : To develop the mechanistic model for the reorientation of T cell receptors during immunological synapse formation .

  8. 其中的血凝素蛋白(HA),是流感病毒主要的表面蛋白之一,负责与宿主细胞受体结合而启动病毒感染。

    Hemagglutinin ( HA ), one of the major surface proteins of the influenza virus , is responsible for virus attachment to the receptor of host cells to initiate an infection .

  9. 武汉地区人群中CD14单核细胞受体基因启动子区多态性与冠心病的关系

    Polymorphism in the promoter of the CD14 monocyte receptor gene as a risk factor for coronary heart disease in a Wuhan population

  10. 作为JEV的病毒吸附蛋白(virusattachmentprotein,VAP),E蛋白介导JEV与宿主细胞受体结合及膜融合。

    Since E protein is known as the viral attachment protein ( VAP ), it contains structural and functional elements that participate in the virus-host cell receptor interaction and membrane fusion .

  11. 目的:检测重组激活基因、DNA修复因子Ku70/Ku80和末端脱氧核苷转移酶mRNA表达以及T细胞受体基因重排在人白血病和淋巴瘤细胞株的发生情况。

    OBJECTIVE : To investigate RAG gene , DNA repair factors Ku70 / Ku80 and terminal deoxynucleotidyl transferase ( TdT ) mRNA expression and T cell receptor ( TCR ) gene recombination in human leukemia and lymphoma cell lines .

  12. 结论:转染嵌合性T细胞受体基因的小鼠T淋巴细胞在体外可通过细胞因子释放和CTL效应发挥显著的抗肿瘤作用。

    Conclusion : Our results suggest that murine T-lymphocytes harboring chimeric T-cell receptor gene had obvious antitumor effect in vitro through releasing cytokines and CTL effect .

  13. 方法:利用β-肾上腺素能受体放射性配基3H-DHA和Fura-2/AM测定心肌细胞受体和胞内游离钙。

    Methods : β - receptors and cytosolic free calcium of cultured cardiac myocytes were studied with the hydrophilic ligand 3H-DHA and Fura-2 / AM .

  14. 目的:探讨检测T细胞受体γ(TCRγ)基因重排的方法用于蕈样肉芽肿(MF)早期辅助诊断。

    Objective : Our aim was to detect the rearrangement of T cell receptor gamma ( TCR - γ) gene for the early diagnosis of mycosis fungoides ( MF ) .

  15. 氨基肽酶N是人类冠状病毒HCoV229E的细胞受体,可能为SARS冠状病毒(SARSCOV)S蛋白的受体。

    Aminopeptidase N has been identified as the cellular receptor for human coronavirus HCoV 229E and was a putative receptor for the spike glycoprotein encoded by the SARS associated coronavirus ( SARS CoV ) .

  16. 方法比较不同时期的皮肤组织病理和免疫表型特点,同时应用聚合酶链反应(PCR)和Southern印迹杂交法,检测皮损组织和外周血标本的T细胞受体基因重排。

    Methods Characteristics of clinicopathology and immunophenotype of skin tissues of different phases of the patients were compared . Simultaneously , clonal T-cell receptor gene rearrangement of skin lesion tissues and blood specimens were detected by means of polymerase chain reaction and Southern blot analysis .

  17. 目的以降落式PCR和单链构型多态性(SSCP)方法检测淋巴细胞白血病单克隆T细胞受体(TCR)γ基因重排,探讨其在淋巴细胞白血病诊断中的价值。

    Objective To explore the value of detecting clonal T cell receptor γ ( TCR - γ) gene rearrangement with touch-down PCR and single-strand conformational polymorphism analysis ( SSCP ) in the diagnosis of lymphoid leukemia .

  18. 关于杯状病毒的细胞受体,目前只在少数几个种属中获得了一定的进展,但关于RHDV的细胞受体仍是一片空白。

    A few progresses have been made about the cellular receptors of calicivirus in some kinds of this family , but a blank to RHDV .

  19. HCV为一单股正链RNA病毒,属于黄病毒属嗜肝病毒科,其基因组编码的糖蛋白E1、E2构成了其高度有序的表面结构,其上可能存在与宿主细胞受体结合的配体表位。

    HCV is a positive strand RNA virus of the flaviviridae family . Glycoprotein El , E2 on HCV envelope structurally form HCV highly ordered surface structure , where there are maybe ligand epitopes which combined with host cellular receptors .

  20. 研究NK细胞受体与配体的特异识别中起重要作用的受体的结构、功能、配体特异性以及这一特异识别在病毒感染、肿瘤及自身免疫性疾病中所扮演的角色有重要意义。

    This review aims to understand the vital role of the recognition between NK receptors and their ligands in virus infection , tumor and auto-immune diseases and the structure , function , and ligand specificity of the receptors responsible for the recognition .

  21. 目的:探讨T细胞受体保守域α链基因(TCRCα)-575A/G多态性与中国汉族人群IgA肾病临床病理的相关关系。

    AIM : To investigate the relationship of T cell receptor constant alpha chain gene ( TCRC α) - 575 A / G polymorphism with clinical and pathological characteristics of IgA nephropathy in Chinese population of Han nationality .

  22. 重症肌无力T细胞受体基因重排的初步研究

    Analysis of T Cell Receptor Gene Rearrangements in Myasthenia Gravis Patients

  23. 骨髓增生异常综合征患者T细胞受体基因重排的检测价值

    The detection of T cell receptor gene rearrangement in myelodysplastic syndromes

  24. 甲型肝炎病毒细胞受体结合区氨基酸突变分析

    Assay of Amino Acid Mutagenesis in Hepatitis A Virus Cellular Receptor Binding Region

  25. 免疫突触形成过程中T细胞受体的重定向运动:涡旋驱动模型

    Reorientation of T cell receptors during immunological synapse formation : a vortex-driven model

  26. 肿瘤新生血管相关内皮细胞受体研究进展

    Advances in study of tumor neovasculature endothelial cell receptors

  27. 氧化低密度脂蛋白通过激活内皮细胞受体诱发一氧化氮的产生

    Oxidized low density lipoprotein stimulated endothelial nitric oxide by activating lectin like oxidized LDL receptor

  28. 分子生物学检查示T细胞受体γ链基因重排。

    The rearrangement of the T cell receptor γ chain was identified by molecular biologic study .

  29. 抗鼠T细胞受体抗体抑制胸腺细胞的迁出

    Emigration of mature T cells from the thymus is inhibited by T cell receptor monoclonal antibody

  30. 免疫球蛋白重链可变段和T细胞受体可变段的分子进化研究

    Study on Molecular Evolution for both Variable Segments of Immunoglobulin Heavy Chain and T Cell Receptor