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用于在半薄切片中显示麻风分枝杆菌的定向染色。

Orientation staining for the demonstration of Mycobacterium leprae in semithin sections.

作者信息

Luderschmidt C

出版信息

Int J Lepr Other Mycobact Dis. 1987 Mar;55(1):83-7.

PMID:2435826
Abstract

In Spurr-embedded biopsies for ultrastructural examinations, Mycobacterium leprae hardly differed from the surrounding tissues using the staining technique of Richardson. Also, the usual histological staining methods of Ziehl-Neelsen and Fite did not achieve positive results for the determination of M. leprae. Therefore, we applied the methylene blue-borax and basic fuchsin technique for the demonstration of the bacilli in plastic-embedded tissue of 11 patients suffering from Hansen's disease. In every patient the diagnosis was confirmed by histological examination of skin biopsies. Portions of the biopsies of nine patients were then fixed in glutaraldehyde and osmium tetroxide and embedded according to Spurr. In the other two cases, the material was first fixed in 10% Formalin and embedded in paraffin. After cutting 3-micron sections for routine histological examination, the remaining material was prepared adequately for ultrastructural examination. Using the methylene blue-borax and basic fuchsin technique, the semithin sections of plastic-embedded material presented a considerably more differentiated picture than other comparable methods. M. leprae located in foamy cells or in the tissue stained violet. These findings were corroborated in subsequent electron-microscopic examinations. The semithin sections thus prepared allow, through the clear demonstration of the microorganisms, a precise demarcation of the ultrathin area.

摘要

在用于超微结构检查的Spurr包埋活检组织中,采用理查森染色技术时,麻风分枝杆菌与周围组织几乎没有差异。此外,常用的齐尔-尼尔森染色法和菲特染色法在检测麻风分枝杆菌时均未得到阳性结果。因此,我们应用亚甲蓝-硼砂和碱性品红技术,对11例麻风病患者的塑料包埋组织中的杆菌进行显示。每位患者均通过皮肤活检的组织学检查确诊。然后,将9例患者活检组织的部分样本用戊二醛和四氧化锇固定,并按照Spurr法进行包埋。另外2例患者的样本,先固定于10%甲醛中,然后石蜡包埋。切取3微米厚的切片进行常规组织学检查后,将剩余材料妥善制备用于超微结构检查。使用亚甲蓝-硼砂和碱性品红技术,塑料包埋材料的半薄切片呈现出比其他可比方法明显更清晰的图像。位于泡沫细胞或组织中的麻风分枝杆菌染成紫色。这些发现在随后的电子显微镜检查中得到了证实。如此制备的半薄切片通过清晰显示微生物,能够精确界定超薄切片区域。

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