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用于钙化软骨电子探针分析的薄冷冻切片制备

Preparation of thin cryo-sections for electron probe analysis of calcifying cartilage.

作者信息

Ali S Y, Gray J C, Wisby A, Phillips M

出版信息

J Microsc. 1977 Sep;111(1):65-76. doi: 10.1111/j.1365-2818.1977.tb00048.x.

Abstract

Conventional methods of fixation, dehydration, embedding and wet-sectioning can produce artefacts in the chemical composition of mineralizing tissues. Cryoultramicrotomy was adopted for a more reliable approach to electron probe analysis of initial apatite formation in calcifying cartilage. Fresh rabbit epiphyseal cartilage was mounted on silver pins, frozen by immersion in liquid nitrogen, and sectioned with the specimen temperature at 133 K and the knife temperature at 273 K. Dry cryo-sections (30-70 nm in thickness) were manipulated on to coated grids and examined the same day. These cryo-sections showed good morphological and cytoplasmic detail, with large areas relatively free of ice-crystal damage. Sections stained either with osmium vapour or negatively stained with silicotungstic acid showed areas with well-preserved mitochondria with granules and endoplasmic reticulum. Unstained sections also showed dense granules (50-120 nm in diameter) in the mitochondria of chondrocytes and preliminary electron probe analysis of these has indicated a Ca/P mass ratio of approximately 1.14. In the longitudinal septa, about 2 micrometer away from the chondrocytes, matrix-vesicle-like particles could be seen with crystal needles inside them. Micro-analysis of two of these gave a Ca/P mass ratio of 1.73 and 2.68. Cryo-ultramicrotomy appears to confirm a number of conclusions derived from conventional ultrastructural study of growth cartilage and suggests for the first time how amorphous calcium phosphate and crystalline apatite can be shown to exist in different organelles in the same cryo-section of the tissue.

摘要

传统的固定、脱水、包埋和湿切片方法可能会在矿化组织的化学成分中产生假象。采用低温超薄切片术,以便更可靠地对钙化软骨中初始磷灰石形成进行电子探针分析。将新鲜的兔骨骺软骨固定在银针上,通过浸入液氮中冷冻,然后在标本温度为133K、刀温为273K的条件下切片。将干燥的冷冻切片(厚度为30 - 70纳米)放置在镀膜载网上,并在当天进行检查。这些冷冻切片显示出良好的形态和细胞质细节,大片区域相对没有冰晶损伤。用锇蒸汽染色或用硅钨酸负染色的切片显示出线粒体带有颗粒以及内质网保存良好的区域。未染色的切片在软骨细胞的线粒体中也显示出密集的颗粒(直径为50 - 120纳米),对这些颗粒的初步电子探针分析表明钙/磷质量比约为1.14。在纵向间隔中,距离软骨细胞约2微米处,可以看到类似基质小泡的颗粒,内部有晶针。对其中两个颗粒进行微分析,得到的钙/磷质量比分别为1.73和2.68。低温超薄切片术似乎证实了从生长软骨的传统超微结构研究中得出的一些结论,并首次表明在组织的同一冷冻切片中,无定形磷酸钙和结晶磷灰石如何能在不同细胞器中存在。

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