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白细胞介素7是成熟人类T细胞的生长因子。

Interleukin 7 is a growth factor for mature human T cells.

作者信息

Londei M, Verhoef A, Hawrylowicz C, Groves J, De Berardinis P, Feldmann M

机构信息

Charing Cross Sunley Research Centre, London, GB.

出版信息

Eur J Immunol. 1990 Feb;20(2):425-8. doi: 10.1002/eji.1830200228.

Abstract

We have studied the capacity of interleukin (IL) 7 to support the growth and expansion of human T cell clones of different phenotype and function. All the clones studied (CD4+CD8+, CD4-CD8- Tcell receptor alpha/beta or gamma/delta) responded to IL 7. The proliferative response of all the T cell clones induced by IL 7 was routinely less than to IL2, but comparable to the IL4 response. IL 7 also induced the proliferation of resting, freshly prepared peripheral blood mononuclear cells (PBMC) or Tcell-enriched (E+) cells. The pattern of proliferation observed in the presence of IL 7 was similar, but lower in magnitude, to that induced by IL 2. In both these cells populations the response to lymphokines alone was always less than the response to lymphokines plus insolubilized anti-CD3 monoclonal antibody. In contrast IL4 produced a different pattern of responsiveness, as significant proliferation was observed only on PBMC costimulated with anti-CD3. The possibility that IL 7 mediates its growth stimulation by the IL2 pathway was excluded by the incapacity of anti-IL2 or anti-Tac monoclonal antibody, in concentrations which blocked IL2-dependent proliferation, to inhibit IL 7-dependent growth. We conclude that IL 7 is a major growth factor for human mature T cells, and its activity is not limited to lymphocyte progenitors.

摘要

我们研究了白细胞介素(IL)7支持不同表型和功能的人T细胞克隆生长和扩增的能力。所有研究的克隆(CD4 + CD8 +、CD4 - CD8 - T细胞受体α/β或γ/δ)均对IL 7有反应。IL 7诱导的所有T细胞克隆的增殖反应通常低于对IL2的反应,但与对IL4的反应相当。IL 7还能诱导静息的、新制备的外周血单个核细胞(PBMC)或富含T细胞的(E +)细胞增殖。在IL 7存在下观察到的增殖模式与IL 2诱导的相似,但程度较低。在这两种细胞群体中,单独对淋巴因子的反应总是低于对淋巴因子加固定化抗CD3单克隆抗体的反应。相比之下,IL4产生了不同的反应模式,因为仅在用抗CD3共刺激的PBMC上观察到显著增殖。抗IL2或抗Tac单克隆抗体在阻断IL2依赖性增殖的浓度下无法抑制IL 7依赖性生长,排除了IL 7通过IL2途径介导其生长刺激的可能性。我们得出结论,IL 7是人类成熟T细胞的主要生长因子,其活性不限于淋巴细胞祖细胞。

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