Ultrastructural, histochemical, and freeze-fracture evaluation of multilamellated structures in human pulmonary alveolar proteinosis.

T Takemura, Y Fukuda, M Harrison, V J Ferrans
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引用次数: 24

Abstract

Ultrastructural, histochemical, and freeze-fracture studies of material recovered by bronchoalveolar lavage from patients with pulmonary alveolar proteinosis revealed four types (A, B, C, and D) of multilamellated structures (MS). Type A, the major component, consisted of concentric, trilaminar structures which were composed of two electron-dense layers and a central lucent layer (5.7-7.5 nm in overall width) alternating with wider (25-30 nm) electron-lucent intervening layers. Type B MS were formed by concentric lamellae with a 5-5.3-nm periodicity. Type C MS were composed of wavy, electron-dense lamellae with a 4-4.5-nm periodicity. Type D MS were conglomerated masses of intricately arranged double or triple electron-dense layers (7.5-13.5 nm wide) alternating with wider (30-40-nm) electron-lucent layers. The electron-dense lamellae of type A, type C, and type D MS were stained with ruthenium red, the Thiéry method, and concanavalin A, indicating the presence of carbohydrate components. Freeze-fracture studies revealed smooth inner and outer surfaces in type A MS, with the fracture planes passing through the central parts of the trilaminar structures; the intervening layers contained 10-nm particles, which probably are proteins. Type B MS had smooth surfaces, and type C MS had slightly particulate surfaces; while type D MS showed tubular or polygonal structures, 350 nm wide, with rows of particles 7-8 nm in diameter. It is concluded that type A and type D MS contain proteins and carbohydrates, probably in the form of glycoproteins, as well as phospholipids, and are related to tubular myelin. Type B and type C MS are considered to contain mainly phospholipids; type C MS are also considered to contain carbohydrates and to be related to lamellar bodies of type II alveolar epithelial cells.

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人肺泡蛋白沉积症多层结构的超微结构、组织化学和冷冻骨折评估。
对肺泡蛋白沉积症患者经支气管肺泡灌洗恢复的材料进行超微结构、组织化学和冷冻骨折研究,发现四种类型(A、B、C和D)的多层结构(MS)。A型是主要成分,由两个电子致密层和一个中心发光层(总宽度为5.7-7.5 nm)组成的同心三层结构组成,中间有更宽的(25-30 nm)电子发光层。B型质谱由同心圆片组成,周期为5 ~ 5.3 nm。C型质谱由周期性为4-4.5 nm的波状电子致密片组成。D型质谱是由两层或三层电子致密层(7.5-13.5 nm宽)和更宽(30-40 nm)的电子发光层交替排列而成的复杂团块。A型、C型和D型质谱的电子致密薄片分别用钌红、thisamry法和刀豆蛋白A染色,表明存在碳水化合物成分。冻裂研究显示,A型MS的内、外表面光滑,断裂面穿过三层结构的中心部分;中间的层含有10纳米的颗粒,可能是蛋白质。B型质谱表面光滑,C型质谱表面微颗粒;D型质谱显示管状或多角形结构,宽350 nm,排列的颗粒直径为7 ~ 8 nm。A型和D型MS含有蛋白质和碳水化合物,可能以糖蛋白和磷脂的形式存在,并与管状髓磷脂有关。B型和C型质谱被认为主要含有磷脂;C型质谱也被认为含有碳水化合物,并与II型肺泡上皮细胞的板层体有关。
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