Rhynchophylline Downregulates Phosphorylated cAMP Response Element Binding Protein, Nuclear Receptor-related-1, and Brain-derived Neurotrophic Factor Expression in the Hippocampus of Ketamine-induced Conditioned Place Preference Rats
Youli Guo1,2, Chaohua Luo1, Genghong Tu3, Chan Li1, Yi Liu1, Wei Liu1, Ken Kin Lam Yung4★, Zhixian Mo1★★ Corresponding author
- 1School of Traditional Chinese Medicine, Southern Medical University, Guangzhou, China.
- 2Department of Pharmacy, Guangdong Provincial Corps Hospital of Chinese People’s Armed Police Forces, Guangzhou, China.
- 3Department of Pathophysiology, Guangdong Province Key Laboratory of Functional Proteomics, Southern Medical University, Guangzhou, China.
- 4Department of Biology, Hong Kong Baptist University, Kowloon Tong, Hong Kong, China.
CORRESPONDENCE
Ken Kin Lam Yung
Department of Biology, Hong Kong Baptist University, Kowloon Tong, Hong Kong, China.
Received: 05-03-2017; Revised: 31-03-2017; Accepted: 20-02-2018.
Volume 14, Issue 53 · pp. 81–6 · PUBLISHED 20 February 2018 · DOI: 10.4103/pm.pm_90_17
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ABSTRACT
Background: Addiction to ketamine is becoming a serious public health issues, for which there exists no effective treatment. Rhynchophylline (Rhy) is an alkaloid extracted from certain Uncaria species that is well known for both its potent anti-addictive and neuroprotective properties. Increasing evidence supports the contributions of cAMP response element binding protein (CREB), nuclear receptor-related-1 (Nurr1), and brain-derived neurotrophic factor (BDNF) in modulating neural and behavioral plasticity which was induced by addictive drugs. Objective: To investigate the effects of Rhy on the behavior and the levels of phosphorylated CREB (p-CREB), Nurr1, and BDNF in the hippocampus of ketamine-induced conditioned place preference (CPP) rats. Materials and Methods: CPP paradigm was used to establish the model of ketamine-dependent rats and to evaluate the effect of Rhy on ketamine dependence. The expressions of p-CREB, Nurr1, and BDNF were tested by Western blotting and immunohistochemistry. Results: We observed that Rhy can reverse the behavior preference induced by ketamine CPP training. At the same time, expression of p-CREB, Nurr1, and BDNF, which was significantly increased by ketamine, was restored in the Rhy-treated group. Conclusion: This study indicates that Rhy can reverse the reward effect induced by ketamine in rats and the mechanism can probably be related to regulate the hippocampal protein expression of p-CREB, Nurr1, and BDNF.
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Guo, Y., Luo, C., Tu, G., Li, C., Liu, Y., Liu, W., Yung, K. K. L., & Mo, Z. (2018). Rhynchophylline Downregulates Phosphorylated cAMP Response Element Binding Protein, Nuclear Receptor-related-1, and Brain-derived Neurotrophic Factor Expression in the Hippocampus of Ketamine-induced Conditioned Place Preference Rats. Pharmacognosy Magazine, 14(53), 81–6. https://doi.org/10.4103/pm.pm_90_17
