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可染体巨噬细胞在生发中心反应的调控中作用

Tingible body macrophages in regulation of germinal center reactions.

作者信息

Smith J P, Burton G F, Tew J G, Szakal A K

机构信息

Department of Anatomy, Virginia Commonwealth University, Medical College of Virginia, Richmond, USA.

出版信息

Dev Immunol. 1998;6(3-4):285-94. doi: 10.1155/1998/38923.

Abstract

Tingible body macrophages (TBM), long thought simply as scavengers of apoptotic lymphocytes, are located in the unique microenvironment of germinal centers in close proximity to antigen-retaining follicular dendritic cells (FDC). Observations that TBM endocytose FDC-iccosomal (immune-complex coated bodies) antigen suggested that TBM might present this antigen and help regulate the germinal center reaction. To test for antigen presentation, the ovalbumin (OVA)-specific T(H) hybridoma, 3DO-54.8, which produces IL-2 on receiving effective presentation of OVA, were used as responders to OVA-bearing TBM. Results showed that OVA-bearing TBM failed to induce IL-2 production. Furthermore, addition of TBM to IL-2-inducing positive controls (B cells) not only failed to augment IL-2 production, but rather TBM significantly (55-90%) reduced B-cell induction of IL-2. We found that TBM were rich in prostaglandin by comparison with other nongerminal center lymph node macrophages and that addition of indomethacin to the cultures reversed the inhibitory effect of TBM. Depletion of TBM from enriched preparations, prior to addition to positive control cultures, also abrogated the inhibitory effect on IL-2 production. These data support the concept that TBM, within the unique microenvironment of germinal centers, may be specialized to downregulate the germinal center reaction.

摘要

可染体巨噬细胞(TBM)长期以来一直被简单地认为是凋亡淋巴细胞的清除者,它们位于生发中心独特的微环境中,紧邻保留抗原的滤泡树突状细胞(FDC)。有观察发现TBM会内吞FDC免疫复合物包被小体(iccosomal)抗原,这表明TBM可能呈递这种抗原并有助于调节生发中心反应。为了检测抗原呈递情况,将卵清蛋白(OVA)特异性T(H)杂交瘤3DO - 54.8用作OVA负载TBM的反应细胞,该杂交瘤在接受OVA的有效呈递时会产生白细胞介素 - 2(IL - 2)。结果显示,负载OVA的TBM未能诱导IL - 2的产生。此外,将TBM添加到诱导IL - 2产生的阳性对照(B细胞)中,不仅未能增强IL - 2的产生,反而TBM显著(55 - 90%)降低了B细胞诱导的IL - 2产生。我们发现,与其他非生发中心淋巴结巨噬细胞相比,TBM富含前列腺素,并且在培养物中添加吲哚美辛可逆转TBM的抑制作用。在添加到阳性对照培养物之前,从富集制剂中去除TBM也消除了对IL - 2产生的抑制作用。这些数据支持了这样一种观点,即在生发中心独特的微环境中,TBM可能专门用于下调生发中心反应。

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