Kuo H, Grant S, Muth N, Hengemihle J, Ingram D K
Molecular Physiology and Genetics Section, Nathan W. Shock Laboratories, National Institute on Aging, Baltimore, MD 21224.
Brain Res. 1994 Oct 10;660(1):57-65. doi: 10.1016/0006-8993(94)90838-9.
NADPH diaphorase (NADPH-d) histochemistry is a useful technique for examining select neuronal populations in both experimental studies and human neuropathology and also provides a simple method to localize nitric oxide synthase in the central nervous system. However, no established method exists for detecting quantitative changes of NADPH-d histochemistry under different experimental conditions. To develop a quantitative procedure, we systematically examined the properties of NADPH-d histochemistry and then investigated the correlation between the number of NADPH-d positive cells and the optical density of NADPH-d histochemistry in the rat striatum. NADPH-d activity was sensitive to specific experimental conditions, such as incubation time, fixation, and high temperature. In the striatum NADPH-d activity of neuropil was more sensitive to these conditions than were the somata. The different staining patterns of NADPH-d between the neuropil of the striatum and white matter, such as the optic tract suggest neuropil staining in the striatum is not just unspecific background staining. Increasing incubation time only increased the optical density of NADPH-d staining, in contrast, the number of NADPH-d positive cells counted was relatively consistent across incubation times. Therefore, little correlation existed between the optical density and cell number. These results indicate that when using NADPH-d histochemistry, the number of NADPH-d positive neurons is independent of the optical density of the staining, and these two parameters should be considered and treated separately when conducting quantitative analysis related to an experimental treatment.
NADPH 黄递酶(NADPH-d)组织化学是一种在实验研究和人类神经病理学中用于检查特定神经元群体的有用技术,同时也为在中枢神经系统中定位一氧化氮合酶提供了一种简单方法。然而,目前尚无既定方法来检测不同实验条件下NADPH-d组织化学的定量变化。为了开发一种定量方法,我们系统地研究了NADPH-d组织化学的特性,然后研究了大鼠纹状体中NADPH-d阳性细胞数量与NADPH-d组织化学光密度之间的相关性。NADPH-d活性对特定实验条件敏感,如孵育时间、固定和高温。在纹状体中,神经毡的NADPH-d活性比胞体对这些条件更敏感。纹状体神经毡与白质(如视束)之间NADPH-d的不同染色模式表明,纹状体中的神经毡染色不仅仅是非特异性背景染色。增加孵育时间仅增加了NADPH-d染色的光密度,相比之下,在不同孵育时间计数的NADPH-d阳性细胞数量相对一致。因此,光密度与细胞数量之间几乎没有相关性。这些结果表明,在使用NADPH-d组织化学时,NADPH-d阳性神经元的数量与染色的光密度无关,在进行与实验处理相关的定量分析时,应分别考虑和处理这两个参数。