Fischer H G, Frosch S, Reske K, Reske-Kunz A B
Institute for Immunology, Johannes Gutenberg Universität, Mainz, Federal Republic of Germany.
J Immunol. 1988 Dec 1;141(11):3882-8.
The effects of granulocyte-macrophage (GM)-CSF on the synthesis of MHC class II molecules and on the Ag presentation capacity by bone marrow derived macrophages (BMM phi) was investigated. BMM phi obtained by in vitro culture in the presence of macrophage-CSF were negative for synthesis of I-A molecules and induced the Ag-mediated proliferation of insulin-specific T clone cells with lower efficiency than splenic accessory cells. After pulse treatment with GM-CSF for 24 to 48 h, day 12 BMM phi exhibited highly efficient Ag presentation function which was superior to that induced by IFN-gamma. Expression of membrane-bound IL-1 was augmented significantly by GM-CSF, but not by IFN-gamma. However, the T cell clone used to probe for accessory cell function of BMM phi was not dependent on IL-1 for optimal proliferation. Concomitantly, GM-CSF induced the de novo synthesis of I-A molecules, although to a lesser extent than optimal doses of IFN-gamma. Thus GM-CSF appears to elicit properties in addition to Ia molecule synthesis and membrane IL-1 expression in BMM phi being essential for efficient accessory cell function to the T clone cells. The activation of BMM phi by GM-CSF was reversible and could be repeated. These data show that GM-CSF exerts a modulatory influence on preformed BMM phi, reversibly activating cells to Ia biosynthetic potential and pronounced accessory cell capacity, thus rendering the explanation unlikely that differentiation of precursor cells into a constitutively functional state had occurred.
研究了粒细胞-巨噬细胞(GM)-集落刺激因子对骨髓来源巨噬细胞(BMM phi)MHC II类分子合成及抗原呈递能力的影响。在巨噬细胞集落刺激因子存在下通过体外培养获得的BMM phi,I-A分子合成呈阴性,且诱导胰岛素特异性T克隆细胞的抗原介导增殖的效率低于脾辅助细胞。用GM-集落刺激因子脉冲处理24至48小时后,第12天的BMM phi表现出高效的抗原呈递功能,优于干扰素-γ诱导的功能。GM-集落刺激因子可显著增强膜结合IL-1的表达,但干扰素-γ不能。然而,用于探测BMM phi辅助细胞功能的T细胞克隆的最佳增殖并不依赖于IL-1。同时,GM-集落刺激因子诱导I-A分子的从头合成,尽管程度低于最佳剂量的干扰素-γ。因此,GM-集落刺激因子似乎除了诱导Ia分子合成和膜IL-1表达外,还引发了其他特性,这些特性对于BMM phi对T克隆细胞的有效辅助细胞功能至关重要。GM-集落刺激因子对BMM phi的激活是可逆的,且可重复。这些数据表明,GM-集落刺激因子对预先形成的BMM phi发挥调节作用,可逆地激活细胞至Ia生物合成潜能和显著的辅助细胞能力,因此不太可能发生前体细胞分化为组成性功能状态的情况。