Claiborne B J, Rea M A, Terrian D M
Division of Life Sciences, University of Texas, San Antonio 78285.
J Neurosci Methods. 1989 Oct;30(1):17-22. doi: 10.1016/0165-0270(89)90069-1.
An ultrastructural method for detecting the presence of zinc in isolated nerve terminals from the mammalian brain is described. This method is based on the well-known Timm's sulfide-silver technique that has been used by many investigators to detect and localize zinc-containing pathways in sections of intact brain tissue. We report here a modification of this technique that we have used to assess the homogeneity, at the electron microscopic level, of a zinc-enriched synaptosomal fraction from the rat hippocampus. This technique allows biochemical assays to be performed on samples of the same tissue if desired, and also provides the large amounts of tissue needed for synaptosomal isolation. Results indicated that all of the mossy fiber synaptosomes, identified on the basis of their large size and characteristic morphology, stained for zinc using this method, as did about one-third of the smaller synaptic profiles present in the same fraction. The method described here should be useful for determining zinc retention and localization in isolated synaptosomes from other regions of the mammalian central nervous system.
本文描述了一种用于检测哺乳动物大脑中分离出的神经末梢中锌存在情况的超微结构方法。该方法基于著名的蒂默硫化银技术,许多研究人员已使用该技术在完整脑组织切片中检测和定位含锌通路。我们在此报告了对该技术的一种改进,我们已使用此改进方法在电子显微镜水平评估来自大鼠海马体的富含锌的突触体组分的同质性。如果需要,该技术允许对同一组织的样本进行生化分析,并且还提供了突触体分离所需的大量组织。结果表明,所有基于其大尺寸和特征形态鉴定出的苔藓纤维突触体,使用该方法对锌呈阳性染色,同一组分中存在的约三分之一较小的突触轮廓也是如此。本文所述方法对于确定来自哺乳动物中枢神经系统其他区域的分离突触体中的锌保留和定位应该是有用的。