Katakura Tatsushi, Miyazaki Masaru, Kobayashi Makiko, Herndon David N, Suzuki Fujio
Department of Internal Medicine, University of Texas Medical Branch, Galveston, TX 77555, USA.
J Immunol. 2004 Feb 1;172(3):1407-13. doi: 10.4049/jimmunol.172.3.1407.
Classically activated macrophages (CAMphi) have been described as a major effector cell on the host's innate immunities. However, CAMphi are not generated in immunocompromised hosts whose alternatively activated macrophages (AAMphi) predominate. In this study, the mechanism by which AAMphi suppress the ability of resident macrophages (RMphi) to generate CAMphi was investigated. AAMphi were isolated from peritoneal exudates of mice 2 days after third-degree thermal injuries affecting 15% total body surface area. CAMphi were generated from RMphi (peritoneal Mphi from normal mice) through stimulation with CpG DNA, a typical CAMphi inducer. RMphi did not polarize to CAMphi when they were cultured with AAMphi in a dual-chamber Transwell even when supplemented with CpG DNA. In addition, RMphi stimulated with CpG DNA did not convert to CAMphi when they were cultured with the culture fluids of AAMphi (AAMphi Culture-Sup). AAMphi Culture-Sup contained IL-6, IL-10, CCL17, PGE(2), and TGF-beta. Among these, CCL17 and IL-10 inhibited CAMphi generation. The ability of AAMphi Culture-Sup to inhibit CAMphi generation was eliminated when the Culture-Sup was treated with a mixture of mAbs directed against CCL17 and IL-10. These results indicate that CCL17 and IL-10 released from AAMphi inhibit CAMphi generation from RMphi stimulated with CpG DNA.
经典活化巨噬细胞(CAMphi)被认为是宿主固有免疫的主要效应细胞。然而,在以替代性活化巨噬细胞(AAMphi)为主的免疫功能低下宿主中,不会产生CAMphi。在本研究中,对AAMphi抑制驻留巨噬细胞(RMphi)产生CAMphi能力的机制进行了研究。AAMphi是从全身表面积15%受到三度热损伤的小鼠腹腔渗出物中分离出来的。通过用典型的CAMphi诱导剂CpG DNA刺激,从RMphi(正常小鼠的腹腔巨噬细胞)产生CAMphi。当RMphi与AAMphi在双室Transwell中共培养时,即使添加了CpG DNA,它们也不会极化为CAMphi。此外,用CpG DNA刺激的RMphi与AAMphi的培养液(AAMphi Culture-Sup)共培养时,也不会转化为CAMphi。AAMphi Culture-Sup含有IL-6、IL-10、CCL17、PGE(2)和TGF-β。其中,CCL17和IL-10抑制CAMphi的产生。当用针对CCL17和IL-10的单克隆抗体混合物处理培养液时,AAMphi Culture-Sup抑制CAMphi产生的能力被消除了。这些结果表明,AAMphi释放的CCL17和IL-