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Dihui Hong

Publications and source records attributed to Dihui Hong.

2 recordsLinked to original sources

Nitric oxide imaging in neurons using confocal microscopy.

The instability and low concentration of nitric oxide (NO) in specimens make it difficult to be detected directly. In this chapter, a method for imaging nitric oxide using laser scanning confocal microscopy (LSCM) is presented. A cultured hippocampal neuron is dyed with DAF-2 and observed under a Zeiss LSM 510 laser scanning confocal microscope. A 488-nm laser power is applied as excitation and the emission light from the labeled nitric oxide in the neuron is detected. In this way, nitric oxide is imaged and its intracellular kinetic change is monitored. Furthermore, image processing and visualization techniques are employed to help analyze the image data.

Animals↗

Inhibitory effect of jujuboside A on glutamate-mediated excitatory signal pathway in hippocampus.

Jujuboside A (JuA) is a main component of jujubogenin extracted from the seed of Ziziphus jujuba Mill var spinosa (Bunge) Hu ex H F Chou (Ziziphus), which is widely used in Chinese traditional medicine for the treatment of insomnia and anxiety. Previously, we reported the inhibitory effects of JuA on hippocampal formation in vivo and in vitro, the present study was carried out to examine the effects of JuA on glutamate (Glu)-mediated excitatory signal pathway in hippocampus. Microdialysis coupled with high-performance liquid chromatography (HPLC) was used to monitor the changes of Glu levels in the hippocampus induced by penicillin sodium, or a mixture of penicillin sodium and JuA. The results showed that penicillin increased the hippocampal Glu concentration (p < 0.01) and a high dose of JuA (0.1 g/L) significantly blocked penicillin-induced Glu release (p < 0.05). Moreover, the effect of JuA on intracellular Ca2+ changes after the stimulation by Glu was studied in cultured hippocampal neurons with confocal laser scanning microscope (CLSM). It was found that Glu (0.5 mM) induced an intracellular [Ca2+]i increase (p < 0.01), and JuA significantly inhibited the Glu-induced Ca2+ increase. The calmodulin (CaM) antagonist trifluoperazine (TFP) showed a similar inhibitory effect as JuA. These observations suggested that JuA has inhibitory effects on Glu-mediated excitatory signal pathway in hippocampus and probably acts through its anti-calmodulin action.

Animals↗