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用铜蓝对肠道整装标本进行微波染色。

Microwave staining of intestinal whole-mount preparations with Cuprolinic blue.

作者信息

Van Ginneken C, De Smet M, Van Meir F, Weyns A

机构信息

Laboratory of Veterinary Anatomy and Embryology, Faculty of Medicine and Pharmacology, University of Antwerp, Belgium.

出版信息

Histochem J. 1998 Oct;30(10):703-9. doi: 10.1023/a:1003490720203.

Abstract

Encouraged by the knowledge that microwaves have a beneficial effect on immunohistochemical reactions, the present study aimed to find out whether microwaves could improve the Cuprolinic Blue staining of enteric neurons as well as the actual method that has been developed for gastrointestinal whole-mount preparations. In addition to incorporating a microwave application in the method described by Holst and Powley (1995), some other modifications were made: two incubations before incubation in the staining solution and free-floating incubations. In the whole-mount preparations, most, if not all, enteric neurons were stained by Cuprolinic Blue. These neurons appeared as blue-green cells with non-reacting nuclei and neuronal processes. At higher magnification, the cytoplasm was characterized by a fine blue-green granulation, and the nucleolus in the nucleus appeared as a blue iridescent structure. Non-specific staining occurred in fibrocytes and epithelial cells but, because of their location and appearance, they could easily be distinguished from neurons. The modified incubations and the incorporation of a microwave application into the conventional Cuprolinic Blue staining method turn the method into an easy-to-use one that seems to visualize most, if not all, enteric neurons in whole-mount preparations of the pig jejunum.

摘要

鉴于微波对免疫组织化学反应具有有益作用这一认识,本研究旨在探究微波是否能够改善肠神经元的铜叶绿酸蓝染色效果以及已开发出的用于胃肠道整装标本的实际方法。除了在霍尔斯特和波利(1995年)所描述的方法中加入微波处理外,还进行了一些其他改进:在染色液中孵育前进行两次孵育以及游离漂浮孵育。在整装标本中,大部分(即便不是全部)肠神经元都被铜叶绿酸蓝染色。这些神经元呈现为蓝绿色细胞,细胞核和神经突无反应。在高倍镜下,细胞质具有细微的蓝绿色颗粒,细胞核中的核仁呈现为蓝色彩虹状结构。纤维细胞和上皮细胞出现非特异性染色,但因其位置和外观,很容易与神经元区分开来。改进后的孵育方法以及将微波处理纳入传统的铜叶绿酸蓝染色方法,使得该方法变得易于使用,似乎能够在猪空肠整装标本中使大部分(即便不是全部)肠神经元可视化。

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