Carson K A, Mesulam M M
J Histochem Cytochem. 1982 May;30(5):425-35. doi: 10.1177/30.5.6176614.
Eight methods for the electron microscopic demonstration of horseradish peroxidase (HRP) labeling have been compared in adjacent series of vibratome sections of mouse lumbar spinal cord. The tracer, a HRP-wheat germ agglutinin (WGA) conjugate, was injected into the gastrocnemius muscle complex. Following retrograde axonal transport to the lumbar motor neurons and transganglionic anterograde transport of the tracer to the dorsal horn, the HRP activity was demonstrated in eight series of adjacent sections of lumbar spinal cord using eight methods. These included procedures using tetramethylbenzidine (TMB), benzidine dihydrochloride (BDHC), o-tolidine, paraphenylenediamine-pyrocatechol (PPD-PC), and 4 methods using 3,3'-diaminobenzidine (DAB). All eight methods were able to demonstrate both retrograde labeling of motor neurons and transganglionic anterograde transport into the dorsal horn. However, there were differences in the appearance of the various reaction products under the electron microscope. In addition, differences in the distribution of the reaction products were observed by both light and electron microscopy. The largest distribution of reaction product was observed with TMB. BDHC and o-tolidine were next, followed by the DAB procedures and PPD-PC. The TMB, BDHC, and o-tolidine reaction products were all found to be suitable for electron microscopy. The TMB reaction product was electron dense and had a very distinctive crystalloid appearance that made identification of HRP-labeled neuronal profiles easy and unequivocal.
在小鼠腰段脊髓振动切片的相邻系列中,对辣根过氧化物酶(HRP)标记的8种电子显微镜显示方法进行了比较。将示踪剂辣根过氧化物酶-小麦胚凝集素(HRP-WGA)复合物注入腓肠肌复合体。示踪剂经逆行轴突运输至腰段运动神经元,并经跨神经节顺行运输至背角后,使用8种方法在八组相邻的腰段脊髓切片中显示HRP活性。这些方法包括使用四甲基联苯胺(TMB)、盐酸联苯胺(BDHC)、邻联甲苯胺、对苯二胺-邻苯二酚(PPD-PC)的方法,以及4种使用3,3'-二氨基联苯胺(DAB)的方法。所有8种方法均能显示运动神经元的逆行标记以及跨神经节顺行运输至背角的情况。然而,在电子显微镜下,各种反应产物的外观存在差异。此外,通过光学显微镜和电子显微镜均观察到反应产物分布的差异。TMB显示的反应产物分布范围最大。其次是BDHC和邻联甲苯胺,然后是DAB法和PPD-PC。发现TMB、BDHC和邻联甲苯胺的反应产物均适用于电子显微镜观察。TMB反应产物电子密度高,具有非常独特的晶体外观,使得HRP标记的神经元轮廓易于识别且明确无误。