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应用快速冷冻技术观察人体皮肤的超微结构:结构保存与抗原性

Ultrastructure of human skin by a rapid freezing technique: structural preservation and antigenicity.

作者信息

Aoki N, Ito M, Ejiri S, Ozawa H

机构信息

Department of Dermatology, Niigata University School of Medicine, Japan.

出版信息

J Invest Dermatol. 1994 Mar;102(3):354-61. doi: 10.1111/1523-1747.ep12371795.

Abstract

To investigate the natural fine structure of skin, human skin biopsies were studied by electron microscopy and immunoelectron microscopy using rapid freezing and freeze-substitution techniques. Well-preserved structures were observed within a depth of 20 microns from the slammed surface of the samples. Epidermal cells were always closely located with very narrow intercellular spaces. Keratin filaments were distributed densely and homogeneously without forming bundles in the cytoplasm of epidermal keratinocytes. Langerhans cell granules were composed of a flat vesicular portion and an oval rod portion. The most striking finding was in the dermal-epidermal junction, where the lamina densa was present but no lamina lucida was observed. Further, by immunoelectron microscopy with anti-keratin monoclonal antibody, the 20-microns-deep part of the samples revealed the most significant staining. These findings indicate that the ultrastructure of routinely processed skin samples may be modified during the procedure for conventional chemical fixation and dehydration and that the ultrastructurally most preserved specimens, reflecting the conditions close to natural in vivo structures of the skin, can be obtained by the techniques described in this paper.

摘要

为了研究皮肤的自然精细结构,采用快速冷冻和冷冻置换技术,通过电子显微镜和免疫电子显微镜对人体皮肤活检组织进行了研究。在距样本平整表面20微米的深度范围内观察到保存完好的结构。表皮细胞总是紧密排列,细胞间隙非常狭窄。角蛋白丝在表皮角质形成细胞的细胞质中密集且均匀分布,不形成束状。朗格汉斯细胞颗粒由扁平的囊泡部分和椭圆形杆状部分组成。最显著的发现是在真皮-表皮交界处,此处存在致密板,但未观察到透明板。此外,通过用抗角蛋白单克隆抗体进行免疫电子显微镜观察,样本20微米深处的部分显示出最显著的染色。这些发现表明,常规处理的皮肤样本的超微结构在传统化学固定和脱水过程中可能会发生改变,并且通过本文所述技术可以获得反映皮肤自然体内结构状态的超微结构保存最完好的标本。

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