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Morphological and immunohistochemical analyses of soluble proteins in mucous membranes of living mouse intestines by cryotechniques

机译:冷冻技术对活体小鼠肠道粘膜中可溶性蛋白的形态学和免疫组化分析

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We have performed immunohistochemical or ultrastructural analyses of living mouse small intestines using Epon blocks prepared by 'in vivo cryotechnique' (IVCT). By electron microscopy, intracellular ultrastructures of epithelial cells were well preserved in tissue areas 5-10|im away from cryogen-contact surface tissues. Their microvilli contained dynamically waving actin filaments, and highly electron-dense organelles, such as mitochondria, were seen under the widely organized terminal web. By quick-freezing of fresh resected tissues (FT-QF), many erythrocytes were congested within blood vessels due to loss of blood pressure. By immersion-fixation (IM-DH) and perfusion-fixation (PF-DH), small vacuoles were often seen in the cytoplasm of epithelial cells, and their intercellular spaces were also dilated. Moreover, actin filament bundles were irregular in cross sections of microvilli, compared with those with IVGT. Epon-embedded thick sections were treated with sodium ethoxide, followed by antigen retrieval and immunostained for immunoglobulin A (IgA), Ig kappa light chain (Igic), J-chain and albumin. By cryotechniques, IgA immunoreactivity was detected as tiny dot-like patterns in cytoplasm of some epithelial cells. Both J-chain and IgK immunoreactivities were detected in the same local areas as those of IgA. By FT-QF, however, the IgA immunor-eactivity was more weakly detected, compared with that with IVCT. In thick sections prepared by IM-DH and PF-DH, it was rarely observed in both plasma and epithelial cells. Another albumin was diffusely immunolocalized in extracellular matrices of mucous membranes and also within blood vessels. Thus, IVCT was useful for preservation of soluble proteins and ultra-structural analyses of dynamically changing epithelial cells of living mouse small intestines.
机译:我们已经使用“体内冷冻技术”(IVCT)制备的Epon阻断剂对活体小鼠小肠进行了免疫组织化学或超微结构分析。通过电子显微镜,上皮细胞的细胞内超微结构在​​与冷冻剂接触的表面组织相距5-10m的组织区域中被良好地保存。它们的微绒毛中包含动态挥动的肌动蛋白丝,在广泛组织的终端网下可以看到高度电子密集的细胞器,例如线粒体。通过快速冷冻新鲜切除的组织(FT-QF),由于血压降低,许多红细胞充血在血管内。通过浸没-固定(IM-DH)和灌注-固定(PF-DH),在上皮细胞的细胞质中经常看到小的液泡,并且它们的细胞间空间也被扩大。此外,与IVGT相比,肌动蛋白丝束在微绒毛的横截面上是不规则的。用乙醇钠处理包埋有epon的厚切片,然后进行抗原回收,并对免疫球蛋白A(IgA),Igκ轻链(Igic),J链和白蛋白进行免疫染色。通过冷冻技术,在某些上皮细胞的细胞质中,IgA免疫反应性被检测为微小的点状模式。在与IgA相同的局部区域中检测到J链和IgK免疫反应性。然而,通过FT-QF,与IVCT相比,检测到的IgA免疫活性更弱。在IM-DH和PF-DH制备的厚切片中,浆细胞和上皮细胞均很少见到。另一种白蛋白在粘膜的细胞外基质以及血管内扩散免疫定位。因此,IVCT可用于保存可溶性蛋白质和动态变化的活小鼠小肠上皮细胞的超微结构分析。

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