Newman S L, Bucher C, Rhodes J, Bullock W E
Department of Internal Medicine, University of Cincinnati College of Medicine, Ohio 45267.
J Clin Invest. 1990 Jan;85(1):223-30. doi: 10.1172/JCI114416.
Phagocytosis of Histoplasma capsulatum (Hc) yeasts and microconidia by human macrophages (M phi) was quantified by a fluorescence quenching technique. Phagocytosis of unopsonized Hc yeasts by monocyte-derived M phi and human alveolar M phi (AM) was rapid. After 60 min, 79% of cultured M phi and 59% of AM had ingested an average of 9.8 and 11 yeasts/M phi, respectively. In contrast, only 26% of monocytes ingested 4.5 yeasts/cell after 60 min. Phagocytosis of unopsonized microconidia by cultured M phi and by AM was equivalent. Monoclonal antibodies specific for the alpha-chains and beta-chain of the CD18 family of adhesion receptors inhibited the binding of Hc yeasts and microconidia to cultured M phi and AM. Thus, the M phi CD18 complex mediates recognition of both phases of this dimorphic fungus. Disruption of actin microfilaments with cytochalasin D inhibited both attachment and ingestion of yeasts by M phi. In contrast, nocodazole, which prevents polymerization of microtubules, did not inhibit binding or ingestion. Both drugs inhibited ingestion, but neither drug inhibited binding of C3b- and C3bi-coated sheep erythrocytes to complement receptors type one (CR1) or type three (CR3), respectively. Therefore, different signal transducing mechanisms for phagocytosis appear to be triggered by the binding of Hc yeasts to CD18, and by the binding of EC3bi to CD11b/CD18, respectively.
采用荧光猝灭技术对人巨噬细胞(M phi)吞噬荚膜组织胞浆菌(Hc)酵母型细胞和微生子的过程进行了定量分析。单核细胞衍生的M phi和人肺泡巨噬细胞(AM)对未调理的Hc酵母型细胞的吞噬作用迅速。60分钟后,79%的培养M phi和59%的AM分别平均吞噬了9.8个和11个酵母型细胞/ M phi。相比之下,60分钟后只有26%的单核细胞吞噬了4.5个酵母型细胞/细胞。培养的M phi和AM对未调理的微生子的吞噬作用相当。针对黏附受体CD18家族α链和β链的单克隆抗体可抑制Hc酵母型细胞和微生子与培养的M phi和AM的结合。因此,M phi CD18复合物介导了对这种双相真菌两个阶段的识别。用细胞松弛素D破坏肌动蛋白微丝可抑制M phi对酵母型细胞的黏附和吞噬。相比之下,阻止微管聚合的诺考达唑并不抑制黏附或吞噬。两种药物均抑制吞噬,但均不抑制C3b和C3bi包被的绵羊红细胞分别与I型(CR1)或III型(CR3)补体受体的结合。因此,Hc酵母型细胞与CD18的结合以及EC3bi与CD11b/CD18的结合似乎分别触发了不同的吞噬信号转导机制。