Ultrastructural study of hepatic granulomas induced by Cryptococcus neoformans by quick-freezing and deep-etching method.

N Sakaguchi
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引用次数: 15

Abstract

The ultrastructure of hepatic granulomas induced by Cryptococcus (C.) neoformans was studied by a quick-freezing and deep-etching (QF-DE) method. Viable yeast cells were inoculated intravenously into rats and the livers were prepared for QF-DE replicas. Two cytoskeletal components were identified in the cytoplasm of macrophages composing the cryptococcal granulomas. These were: intermediate filaments, mainly located in the perinuclear region, and actin filaments, which were extensively decorated with myosin subfragment 1 (S1) and formed networks in the peripheral portion of the cytoplasm. In addition, two types of macrophage pseudopodia were observed in the granulomas. These were cobble stone-like pseudopodia at the yeast-macrophages contract areas, and thin, long and occasionally interdigitating pseudopodia in which actin filaments were consistently observed. Dense networks of actin filaments were also seen in pseudopodia protruding into the tight structure of the capsule of C. neoformans. These results suggest a role for actin filaments as one of the main factors in the force generating system of the phagocytic process.

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新型隐球菌致肝脏肉芽肿的速冻和深蚀刻超微结构研究。
采用速冻深度刻蚀法(QF-DE)研究了新生隐球菌(隐球菌)致肝脏肉芽肿的超微结构。将有活力的酵母细胞静脉注射到大鼠体内,制备肝脏用于QF-DE复制。在构成隐球菌肉芽肿的巨噬细胞的细胞质中鉴定出两种细胞骨架成分。它们是:中间丝,主要位于核周区;肌动蛋白丝,广泛被肌球蛋白亚片段1 (S1)装饰,并在细胞质的外周部分形成网络。此外,肉芽肿中可见两种巨噬细胞伪足。在酵母-巨噬细胞收缩区可见鹅卵石样伪足,在肌动蛋白丝一致的伪足中可见细长偶尔交错的伪足。在假足中也可以看到密集的肌动蛋白丝网络,这些肌动蛋白丝突出到新形态假足的紧密结构中。这些结果表明肌动蛋白丝在吞噬过程的力产生系统中起主要作用。
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