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The procedure for ultracytochemical demonstration of dehydrogenases in the rat adrenal cortex using copper ferrocyanide.

机译:使用铜铁氰化物对大鼠肾上腺皮质中脱氢酶的超声化学演示的程序

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摘要

This is a procedure for the ultracytochemical demonstration of 3β-hydroxy-steroid dehydrogenase (3β-HSD) and glucose-6-phosphate dehydrogenase (G6PD) and the localization of these enzymes in the adrenocortical cell of rat is presented. The procedure involves pre-fixation of tissues, tissue sectioning and incubation of specimens. Brief fixation (for 30min) in a mixture of glutaraldehyde and formaldehyde (0.25%: 1% and 2%: 2%) or 2.7% glutaraldehyde was excellent to preserve both the activity of 3β-HSD and G6PD and fine cellular structure. Unfrozen sections obtained by Vibratome (Oxford) were superior to frozen sections obtained by a cryostat for preservation of the ultrastructure and enzyme activity of the cell. Sections used were 40-100μm in thickness. In the present method dehydroepiandrosterone (DHA), etio-cholane-3β-17-one (etiocholane) and pregnenolone were utilized as substrate, potassium ferricyanide as a final electron acceptor instead of tetrazolium salt, and phenazine methosulfate (PMS) as an intermediate electron carrier. As a result, the activity of 3β-HSD was localized in the cytoplasmic matrix and intracristal space of mitochondria. The activity of G6PD was visualized mainly in the cytoplasmic matrix near the plasma membrane. The reaction did not take place in any cells incubated either in the substrate-free medium or in the medium markedly inhibited by respiratory chain inhibitors such as Rotenone and Antimycin A. The findings mentioned so far were evidently those of the specific ultracytochemical reaction. Several problems will be discussed in this paper concerning the procedure for the ultracytochemical demonstration.
机译:这是3β-羟基类固醇脱氢酶(3β-HSD)和葡萄糖-6-磷酸脱氢酶(G6PD)的超细胞化学演示方法,并介绍了这些酶在大鼠肾上腺皮质细胞中的定位。该程序涉及组织的预先固定,组织切片和标本的孵育。在戊二醛和甲醛(0.25%:1%和2%:2%)或2.7%戊二醛的混合物中短暂固定(30分钟)非常适合保留3β-HSD和G6PD的活性以及良好的细胞结构。通过Vibratome(Oxford)获得的未冷冻切片优于通过低温恒温器获得的冷冻切片,可保留细胞的超微结构和酶活性。使用的切片的厚度为40-100μm。在本方法中,以脱氢表雄酮(DHA),乙硫酚-胆烷-3β-17-one(乙硫胆烷)和孕烯醇酮为底物,铁氰化钾为最终电子受体,代替四唑鎓盐,吩嗪硫酸甲酯(PMS)为中间电子载体。结果,3β-HSD的活性定位于线粒体的细胞质基质和晶体内部空间。 G6PD的活性主要在质膜附近的细胞质基质中可见。在无底物培养基中或在呼吸链抑制剂如鱼藤酮和抗霉素A显着抑制的培养基中孵育的任何细胞中均未发生该反应。到目前为止,所提及的发现显然是特定超细胞化学反应的发现。本文将讨论有关超细胞化学演示程序的几个问题。

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