Newman G R, Jasani B, Williams E D
J Histochem Cytochem. 1983 Dec;31(12):1430-4. doi: 10.1177/31.12.6355289.
Diaminobenzidine (DAB), commonly used in immunocytochemistry as the substrate for peroxidase, has a low electron density. DAB has a known affinity for the salts of some metals and therefore an examination of the ability of six metal compounds (including osmium tetroxide) to increase the electron density associated with DAB deposits has been undertaken. Ultra-thin sections of unosmicated rat pituitary gland, embedded in L. R. White resin, were immunostained by a hapten sandwich immunoperoxidase method, using antibodies to ACTH and TSH. The unintensified electron density of the DAB polymer reaction product on the specific endocrine granules was compared with the electron density resulting from the use of each of the six metal compounds. Lead and silver nitrate gave unsatisfactory results, while phosphotungstic acid and uranyl acetate produced a limited increase in specific electron density under the conditions used. Gold chloride was found to give the highest electron density to the specific endocrine granules, followed closely by osmium tetroxide. Background staining was greater when osmium was used. We conclude that several metal compounds may be used to intensify the electron density of DAB, but of the ones tested, gold chloride, which is safer, more stable, and cheaper than osmium tetroxide, was clearly the best. This approach not only increases the electron density of the DAB reaction product, but allows of the possibility of quantitation using energy dispersive X-ray analysis.
二氨基联苯胺(DAB)在免疫细胞化学中常用作过氧化物酶的底物,其电子密度较低。已知DAB对某些金属盐具有亲和力,因此研究了六种金属化合物(包括四氧化锇)增强与DAB沉积物相关电子密度的能力。将包埋在LR White树脂中的未用锇处理的大鼠垂体超薄切片,采用半抗原夹心免疫过氧化物酶法,使用抗促肾上腺皮质激素(ACTH)和促甲状腺激素(TSH)的抗体进行免疫染色。将特异性内分泌颗粒上DAB聚合物反应产物未增强的电子密度与使用六种金属化合物中每种化合物所产生的电子密度进行比较。硝酸铅和硝酸银的效果不理想,而在所用条件下,磷钨酸和醋酸铀酰使特异性电子密度有有限的增加。发现氯化金能使特异性内分泌颗粒具有最高的电子密度,紧随其后的是四氧化锇。使用锇时背景染色更明显。我们得出结论,几种金属化合物可用于增强DAB的电子密度,但在所测试的化合物中,氯化金比四氧化锇更安全、更稳定且更便宜,显然是最佳选择。这种方法不仅增加了DAB反应产物的电子密度,还使得利用能量色散X射线分析进行定量成为可能。