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首页> 外文期刊>Journal of Electron Microscopy >Significance of ‘in vivo cryotechnique’ for morphofunctional analyses of living animal organs
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Significance of ‘in vivo cryotechnique’ for morphofunctional analyses of living animal organs

机译:“体内冷冻技术”对于活体动物器官形态功能分析的意义

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Our final goal of morphological and immunohistochemical studies is that all findings examined in animal experiments should reflect the physiologically functional background. Therefore, the preservation of original components in cells and tissues of animals is necessary for describing the functional morphology of living animal organs. It is generally accepted that morphological findings of various organs were easily modified by stopping their blood supply. There had been a need to develop a new preparation technique for freezing the living animal organs in vivo and then obtaining acceptable morphology and also immunolocalization of original components in functioning cells and tissues. We already developed the ‘in vivo cryotechnique’ (IVCT) not only for their morphology, but also for immunohistochemistry of many soluble components in various living animal organs. All physiological processes of cells and tissues were immediately immobilized by IVCT, and every component in the cells and tissues was maintained in situ at the time of freezing. Thus, the ischaemic or anoxic effects on them could be minimized by IVCT. Our specially designed cryoknife with liquid cryogen has solved the morphological and immunohistochemical problems which are inevitable with the conventional preparation methods at a light or electron microscopic level. The IVCT will be extremely useful for arresting transient physiological processes and for maintaining any intracellular components in situ, such as rapidly changing signal molecules, membrane channels and receptors.
机译:我们的形态学和免疫组织化学研究的最终目标是,在动物实验中检查的所有发现都应反映生理功能背景。因此,在动物的细胞和组织中保存原始成分对于描述活体动物器官的功能形态是必要的。人们普遍认为,通过停止供血可以轻易改变各种器官的形态学发现。需要开发一种新的制备技术,以在体内冷冻活的动物器官,然后获得可接受的形态,并且还在功能细胞和组织中获得原始成分的免疫定位。我们已经开发了“体内冷冻技术”(IVCT),不仅用于它们的形态,还用于各种活体动物器官中许多可溶性成分的免疫组织化学。通过IVCT立即固定细胞和组织的所有生理过程,并且在冷冻时将细胞和组织中的所有成分保持在原位。因此,通过IVCT可以使对它们的缺血或缺氧影响最小化。我们专门设计的带有液态制冷剂的冷冻刀解决了从光学或电子显微镜角度上常规制备方法不可避免的形态和免疫组化问题。 IVCT对于阻止短暂的生理过程和在原位维持任何细胞内组分(例如快速变化的信号分子,膜通道和受体)非常有用。

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