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删除CD4^+CD25^+T细胞对OVA诱导的小鼠体液免疫应答的影响

Depletion of CD4^+ CD25^+ T cells could lead to increased OVA specific humoral response of mice
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摘要 目的观察删除CD4+CD25+T细胞对OVA免疫小鼠体液免疫应答的影响。方法小鼠腹腔注射抗CD25单克隆抗体,分别于3天、10天、27天采血流式检测外周血中CD4+CD25+T细胞的比例;注射抗CD25单克隆抗体3天后,OVA加铝佐剂免疫未删除和删除CD4+CD25+T细胞小鼠,7天后加强免疫一次,分别于初次免疫后7天,加强免疫后14天采血制备血清,ELISA法检测血清中OVA特异性IgE和IgG1的浓度。结果注射抗CD25单克隆抗体3天和10天,外周血中无CD4+CD25+T细胞;27天后CD4+CD25+T细胞的比例部分恢复。初次免疫7天后,删除CD4+CD25+T细胞小鼠总IgE、OVA特异性IgE和IgG1浓度较未删除组升高;加强免疫14天后,删除CD4+CD25+T细胞小鼠OVA特异性IgE较未删除组升高。结论删除CD4+CD25+T细胞能够影响小鼠OVA特异性体液免疫应答。 Objective To evaluate whether depletion of CD4 + CD25 + T cells leads to increased humoral immune response of mice immunized with OVA. Methods Groups of mice received one i.p. injection of anti-CD25 mAb, 3、10、27 days later, blood was harvested and the percentage of CD4 + CD25 + T cells was determined by FACS. 3 days after injection of anti-CD25 mAb, depleted and un-deplleted CD4 + CD25 + T cells mice were immunized with OVA + ALUM, and boosted 7 days later. Blood was harvested from mice 7 days after prime and 14 days after boost, and OVA specific IgE and IgG1 in sera were determined by ELISA. Results 3 days and 10 days after injection of anti-CD25 mAb, there were no CD4 + CD25 + T cells in blood; 27 days after injection of anti-CD25 mAb, there were CD4 + CD25 + T cells of which percentage was lower than normal mice. 7 days after prime, depletion of CD4 + CD25 + T cells leaded to increased total IgE, OVA specific IgE and IgG1; 14 days after boost, depletion of CD4 + CD25 + T cells leaded to increased OVA specific IgE. Conclusion Depletion of CD4 + CD25 + T cells could effect OVA specific humoral immune response of mice immunized with OVA.
出处 《分子诊断与治疗杂志》 2011年第4期237-240,共4页 Journal of Molecular Diagnostics and Therapy
基金 国家自然科学基金(30872310) 广州市属高校科研项目(10A159)
关键词 CD4+CD25+T细胞 B细胞 体液免疫 CD4 + CD25 + T cells B cells Humoral immunity
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参考文献15

  • 1Sakaguchi S,Sakaguchi N,Asano M,et al.Immunologic self-tolerance maintained by activated T cells expressing IL-2 receptor alpha-chains(CD25).Breakdown of a single mechanism of self-tolerance causes various autoimmune diseases[J].J Immunol,1995,155(3):1151-1164.
  • 2Sakaguchi S.Naturally arising CD4+ regulatory T cells for immunologic self-tolerance and negative control of immune responses[J].Annu Rev Immunol,2004,22:531-562.
  • 3Xia G,Shah M,Luo X.Prevention of allograft rejection by amplification of Foxp3(+)CD4(+)CD25(+) regulatory T cells[J].Transl Res,2009,153(2):60-70.
  • 4Raimondi G,Turner M S,Thomson A W,et al.Naturally occurring regulatory T cells:recent insights in health and disease[J].Crit Rev Immunol,2007,27(1):61-95.
  • 5Nouri-Aria K T and Durham S R.Regulatory T cells and allergic disease[J].Inflamm Allergy Drug Targets,2008,7(4):237-252.
  • 6Beyer M,Schultze J L.Regulatory T cells in cancer[J].Blood,2006,108(3):804-811.
  • 7Taylor J J,Mohrs M,Pearce E J.Regulatory T cell responses develop in parallel to Th responses and control the magnitude and phenotype of the Th effector population[J].J Immunol,2006,176(10):5839-5847.
  • 8Shen E,Zhao K,Wu C,et al.The suppressive effect of CD25+Treg cells on Th1 differentiation requires cell-cell contact partially via TGF-β production[J].Cell Biol Int,2011,Feb 1[4][Epub ahead of print].
  • 9沈二霞,吴长有.CD4^+CD25^+调节性T细胞对B细胞免疫应答的抑制作用[J].国际免疫学杂志,2006,29(4):213-217. 被引量:9
  • 10McHeyzer-Williams L J,Malherbe L P,McHeyzer-Williams MG.Helper T cell-regulated B cell immunity[J].Curr Top Microbiol Immunol,2006,311:59-83.

二级参考文献21

  • 1陈广洁.Foxp3和CD4^+CD25^+调节性T细胞研究进展[J].国外医学(免疫学分册),2005,28(1):1-4. 被引量:15
  • 2王胜军,许化溪,杨胜利.CD4^+CD25^+调节性T细胞[J].细胞生物学杂志,2005,27(1):61-65. 被引量:20
  • 3Sakaguchi S,Sakaguchi N,Asano M,et al.Immunologic self-tolerance maintained by activated T cells expressing IL-2 receptor α-chains (CD25).Breackdown of single mechanism of self-tolerance causes various autoimmune diseases.J Immunol,1995,155(3):1151-1164.
  • 4McHugh RS,Whitters MJ,Piccirillo CA,et al.CD4^+CD25^+ immunoregulotory T cells:gene expression analysis reveals a functional role for the glucocorticoid-induced TNF receptor.Immunity,2002,16(2):311-323.
  • 5Bruder D,Probst-Kepper M,Westendorf AM,et al.Neuropilin-1:a surface marker of regulatory T cells.Eur J Immunol,2004,34(3):623-630.
  • 6Piccirillo CA,Thornton AM.Cornerstone of peripheral tolerance:naturally occurring CD4^+CD25^+ regulatory T cells.Trends Immunol,2004,25(7):374-80.
  • 7Fontenot JD,Gavin MA,Rudensky AY.Foxp3 programs the developmented function of CD4^+CD25^+ regulatory T cells.Nat Immunol,2003,4(4):330-336.
  • 8Khattri R,Cox T,Yasayko SA,et al.An essential role for Scurfin in CD4^+ CD25^+ regulatory T cells.Nat Immunol,2003,4(4):337-342.
  • 9Hori S,Nomura T,Sakaguchi S.Control of regulatory T cells development by the transcription factor Foxp3.Science,2003,299(5609):1057-1061.
  • 10Sakaguchi S.Naturally arising CD4^+ regulatory T cells for immunologic self-tolerance and negative control of immune responses.Annu Rev Immunol,2004,22:531-562.

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