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应用于大脑的酶组织化学方法。

Enzyme histochemical methods applied in the brain.

作者信息

Kugler P

机构信息

Department of Anatomy, University of Würzburg, FRG.

出版信息

Eur J Morphol. 1990;28(2-4):109-20.

PMID:2245127
Abstract

Catalytic enzyme histochemistry offers the possibility to demonstrate enzymes qualitatively and their activities quantitatively in brain sections at those sites where they are localized. To get an appropriate histochemical demonstration of enzymes, requirements are to be fulfilled with respect to the preparation of brain tissue, the detection methods, and the incubation conditions. For enzyme demonstration at the light microscopic level, brain tissue should be frozen as quickly as possible and for those at the electron microscopic level perfusion fixation using low concentrations of aldehydes seems to be best suited. The detection of enzymes in brain sections is preferentially performed by the so-called precipitation reactions with metallic ions, the tetrazolium and the diaminobenzidine methods. The application of these methods was shown in the example of aspartate aminotransferase, glutamate dehydrogenase, and cytochrome c oxidase. In the detection of enzymes incubation conditions should be chosen so that soluble enzymes cannot diffuse out of the sections into the incubation media and that the activities of enzymes are completely demonstrated. On the whole, all the precipitation reactions result in a water-insoluble reaction product which is precipitated at the enzymatic sites in brain sections. Finally, it is shown that scanning microphotometry is a valuable tool for the quantification of enzyme activities in brain sections. It is concluded that catalytic enzyme histochemistry using improved detection methods could be a source of results complementary to those provided by immunocytochemistry and microchemistry.

摘要

催化酶组织化学提供了在脑切片中酶的定位部位定性显示酶及其定量测定酶活性的可能性。为了获得合适的酶组织化学显示结果,在脑组织制备、检测方法和孵育条件方面都需要满足一定要求。对于光镜水平的酶显示,脑组织应尽快冷冻;而对于电镜水平的酶显示,使用低浓度醛类进行灌注固定似乎最为合适。脑切片中酶的检测优先采用与金属离子的所谓沉淀反应、四氮唑法和二氨基联苯胺法。以天冬氨酸转氨酶、谷氨酸脱氢酶和细胞色素c氧化酶为例展示了这些方法的应用。在酶的检测中,应选择合适的孵育条件,以使可溶性酶不会从切片扩散到孵育介质中,并且酶的活性能够得到充分显示。总体而言,所有沉淀反应都会产生一种水不溶性反应产物,该产物沉淀在脑切片中的酶活性部位。最后表明,扫描显微光度法是定量测定脑切片中酶活性的一种有价值的工具。得出的结论是,使用改进检测方法的催化酶组织化学可能是一种能够提供与免疫细胞化学和微量化学互补结果的方法。

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