期刊文献+

Treg/Th17平衡轴在溃疡性结肠炎发病中的意义及流式细胞术检测进展 被引量:19

Progress of Treg/Th17 immune axis imbalance in ulcerative colitis and its detection by the method of flow cytometry
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摘要 肠道黏膜免疫系统异常是溃疡性结肠炎(ulcerative colitis,UC)发生发展的主要原因。调节性T细胞(regulatory T cell,Treg)和辅助性T细胞17(The helper 17 cells,Th17)所形成的Treg/Th17免疫平衡轴是维持肠道免疫稳态的关键因素,本文将对影响和调节Treg/Th17免疫平衡轴的各种细胞和转录因子进行综述。同时综述了流式细胞术在检测Treg/Th17中的最新进展。 Intestinal mucosal immune system abnormality is main cause of ulcerative colitis(UC). Treg/Th17 immune axis balance may play a key role in maintaining intestinal immune homeostasis. In this article, we will summarize recent researches about Treg/Th17 immune axis in UC and the cellular and transcriptional factors which could affect Treg and Th17. Meanwhile, as an important detect method, flow cytometry has been widely used in evaluating Treg/Th17 immune axis balance, therefore, we also review the latest progress of flow cytometry in the detection of Treg/Th17, such as the ratio of Treg/Th17 immune axis in different experiments and the main dyes and agents used in the detection.
出处 《免疫学杂志》 CAS CSCD 北大核心 2015年第6期541-544,共4页 Immunological Journal
基金 国家自然科学基金(81373737) 973计划(2015CB554504) 教育部霍英东基础研究基金(141041) 四川省科技厅项目(2015JQO058)
关键词 溃疡性结肠炎 调节性T细胞 辅助性T细胞17 流式细胞术 Ulcerative colitis Treg Th17 Flow cytometry
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参考文献19

  • 1Kurtz CC, Drygiannakis I, Naganuma M, et al. Extracellular adenosine regulates colitis through effects on lymphoid and nonlymphoid cells[J]. Am J Physiol Gastrointest Liver Physiol, 2014, 307(3): G338-346.
  • 2Joseph B, Drew P, Fan P, et al. Metabolic control of the Treg/Thl7 axis[J]. Immunol Rev, 2013, 252(1): 52-77.
  • 3Haruei 0, Kazuhiko N, Tsutomu I, et al. Regulatory T cells expanded by rapamycin in vitro suppress colitis in an experimental mouse model[J]. J Gastroenterol, 2012, 47(4): 366-376.
  • 4Zhang M, Qiu X, Zhang H, et al. Faecalibacterium prausnitzii inhibits interleukin-17 to ameliorate colorectal colitis in rats[J]. PLoS One, 2014, 9(10): e109146.
  • 5Nicola EL, Nicholas M, Angela B, et al. Foxp3~ regulatory T cells, Thl7 effector cells, and cytokine environment in inflammatory bowel disease[J]. J Clin Immunol, 2010, 30(1): 80-89.
  • 6Obata Y, Furusawa ~, Endo TA, et al. The epigenetic regulator Uhrfl facilitates the proliferation and maturation of colonic regulatory T cells[J]. Nat Immunol, 2014, 15 (6): 571-579.
  • 7Edwards JP, Thornton AM, Shevach EM, et al. Release of active TGF-131 from the latent TGF-~I/GARP complex on T regulatory cells is mediated by integrin ~8[J]. J Immunol, 2014, 193(6): 2843-9.
  • 8Wang C, Thangamani S, Kim M, et al. BATF is required for normal expression of gut-homing receptors by T helper cells in response to retinoic acid[J]. J Exp Mcd, 2013, 210(3): 475-89.
  • 9Cekic C, Arabul M, Alper E, et al. Evaluation of the relationship between serum ghrelin, C-reactive protein and interleukin-6 levels, and disease activity in inflammatory bowel diseases[J]. Hepatogastroenterology, 2014, 61 (133): 1196-200.
  • 10赵磊,冯学斌,王跃嗣,崔晴晴,曹茵茵.抗ICOS抗体体外对哮喘大鼠血液和淋巴液CD4^+CD25^+Foxp3^+调节性T细胞数量及其功能影响[J].细胞与分子免疫学杂志,2012,28(10):1029-1032. 被引量:6

二级参考文献19

  • 1杨辉,蔡光先,刘柏炎,蔡莹,谢勇.首次换液时间对贴壁法培养骨髓间充质干细胞纯度及增殖的影响[J].中国组织工程研究与临床康复,2007,11(20):3868-3871. 被引量:18
  • 2Lewkowich IP,Herman NS, Schleifer KW, et al. CD4 + CD25 + Tcells protect against experimentally induced asthma and alter pulmonarydendritic cell phenotype and function [ J]. J Exp Med,2005,202(11): 1549 -1561.
  • 3Park SK, Cho MK, Park HK, et al. Macrophage migration inhibitoryfactor homologs of anisakis simplex suppress Th2 response in allergicairway inflammation model via CD4 + CD25 + Foxp3 + T cell recruit-ment[J]. J Immunol, 2009 , 182( 11) : 6907 -6914.
  • 4Chen Y, Shen S, Gorentla BK, et al. Murine regulatory T cellscontain hyperproliferative and death-prone subsets with differentialICOS expression.J]. J Immunol, 2012, 188(4) : 1698 - 1707.
  • 5Presser K, Schwinge D, Wegmann M, et al. Coexpression of TGF-betal and IL-10 enables regulatory T cells to completely suppress air-way hyperreactivity[J]. J Immunol, 2008,181 ( 11 ) ; 7751 -7758.
  • 6Birebent B, Lorho R, Lechartier H, et al. Suppressive properties ofhuman CD4+ CD25 + regulatory T cells are dependent on CTLA-4expression[ J]. Eur J Immunol,2004, 34( 12) : 3485 - 3496.
  • 7Dong C, Juedes AE, Temann UA, et al. ICOS co-stimuiatory receptoris essential for T-cell activation and function [ J ]. Nature, 2001,409(6816) : 97-101.
  • 8McAdam AJ, Greenwald RJ, Levin MA, et al. ICOS is critical forCD40-mediated antibody class switching [ J ]. Nature, 2001, 409?6816) : 102 -105.
  • 9Guo L, Fujino M, Kimura H, et al. Simultaneous blockade ofco-stimulatory signals,CD28 and ICOS,induced a stable tolerance inrat heart transplantation [ J ]. Transpl Immunol, 2003 , 12(1 ) : 41 -48.
  • 10Miyamoto K, Kingsley Cl, Zhang X, et al. The ICOS molecule playsa crucial role in the development of mucosal tolerance[ J]. J Immu-nol, 2005, 175(11 ) : 7341 -7347.

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