Kojima H, Nakatsubo N, Kikuchi K, Urano Y, Higuchi T, Tanaka J, Kudo Y, Nagano T
Graduate School of Pharmaceutical Sciences, the University of Tokyo, Japan.
Neuroreport. 1998 Oct 26;9(15):3345-8. doi: 10.1097/00001756-199810260-00001.
The biological functions of nitric oxide in the neuronal system remain controversial. Using a novel fluorescence indicator, DAF-2 DA, for direct detection of NO, we examined both acute rat brain slices and organotypic culture of brain slices to ascertain NO production sites. The fluorescence intensity in the CA1 region of the hippocampus was augmented, especially after stimulation with NMDA, in acute brain slices. This NO production in the CA1 region was also confirmed in cultured hippocampus. This is the first direct evidence of NO production in the CA1 region. There were also fluorescent cells in the cerebral cortex after stimulation with NMDA. Imaging techniques using DAF-2 DA should be very useful for the clarification of neuronal NO functions.
一氧化氮在神经系统中的生物学功能仍存在争议。我们使用一种新型荧光指示剂DAF-2 DA直接检测一氧化氮,对急性大鼠脑片和脑片的器官型培养物进行了研究,以确定一氧化氮的产生部位。在急性脑片中,海马体CA1区的荧光强度增强,尤其是在用N-甲基-D-天冬氨酸刺激后。在培养的海马体中也证实了CA1区的这种一氧化氮产生。这是CA1区产生一氧化氮的首个直接证据。在用N-甲基-D-天冬氨酸刺激后,大脑皮层中也存在荧光细胞。使用DAF-2 DA的成像技术对于阐明神经元一氧化氮的功能应该非常有用。