A modified method of fine-granular cationic iron colloid preparation: its use in light and electron microscopic detection of anionic sites in the rat kidney glomerulus and certain other tissues.

T Murakami, T Taguchi, A Ohtsuka, K Sano, T Kaneshige, R L Owen, A L Jones
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引用次数: 53

Abstract

Ferric chloride, when boiled with hydrazine hydrate and cacodylic acid, is converted into a fine cationic iron (ferric hydroxide) colloid which consists of 0.5-1.5 nm electron-dense granules, and gives a distinct Prussian blue reaction. This colloid allows light and electron microscopic detection of ionized anionic sites in tissues at a wide pH range of 0.8-7.6. It is smaller in size and more stable, and assures longer and greater staining of tissues, especially at low pH levels, than the iron colloid prepared with sodium or ammonium cacodylate by Seno and his associates (1983, 1984, 1985). Some light and electron micrographs of the rat kidney, spleen and other organs stained with our colloid are presented as examples. These micrographs confirm that the glomerular podocyte end-foot surface facing the Bowman's capsular space is strongly negative-charged. They also show that almost all lymphoid cells around the arteries in the splenic white pulp and thymic cortex contain strongly negative-charged nuclei and that the distal convoluted and collecting urinary tubules are more negative-charged than the proximal convoluted tubules.

一种改进的细颗粒阳离子铁胶体制备方法:用于大鼠肾小球及其他组织阴离子位点的光镜和电镜检测。
当氯化铁与水合肼和羧酸一起煮沸时,会转化成一种精细的阳离子铁(氢氧化铁)胶体,该胶体由0.5-1.5 nm的电子致密颗粒组成,并产生明显的普鲁士蓝反应。这种胶体允许光和电子显微镜在0.8-7.6的宽pH范围内检测组织中的离子化阴离子位点。与Seno和他的同事(1983,1984,1985)用钙酸钠或钙酸铵制备的铁胶体相比,它体积更小,更稳定,能够保证更长时间和更大程度的组织染色,特别是在低pH值水平下。用我们的胶体染色的大鼠肾脏、脾脏和其他器官的一些光镜和电镜照片作为例子。这些显微照片证实肾小球足细胞端足面朝向鲍曼囊间隙呈强负电荷。结果还显示,脾白髓和胸腺皮质动脉周围的几乎所有淋巴细胞都含有强负电荷核,远曲小管和集合小管比近曲小管带更多的负电荷。
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