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Effects of NIK-247 on CO-induced impairment of passive avoidance in mice
S Yoshida1, T Nabeshima, K Kinbara
1Department of Chemical Pharmacology, Faculty of Pharmaceutical Sciences, Meijo University, Nagoya, Japan.
Abstract:
The effect of NIK-247 on carbon monoxide (CO)-induced amnesia were investigated. A step-down type passive avoidance task with mice was used to compare the effects of NIK-247 with those of tacrine. Two types of CO-induced amnesia model, acute and delayed models, were used. The acute amnesia model was developed using mice exposed to CO before memory consolidation, just after training, and a retention test carried out 24 h after training. The delayed amnesia model was prepared 7 days after CO exposure even when the animals were exposed to CO 4 h after training, after memory had consolidated. NIK-247 administered post-training at 0.03-0.3 and 3 mg/kg or pre-retention test (24 h after training) at 0.3 and 10 mg/kg attenuated the acute amnesia. In addition, NIK-247 (0.03, 0.1, 1 and 10 mg/kg) and tacrine (0.03, 0.1 and 1 mg/kg) administered before the retention test (7 days after CO exposure) improved retrieval in the delayed amnesia model. Tacrine (0.01-0.3 and 3 mg/kg), administered post-training, attenuated the acute amnesia but pre-retention test administration did not. The dose-response curves for NIK-247 and tacrine were biphasic bell-shaped. These results indicated that NIK-247 has an improving effect on hypoxia-induced acute and delayed cognitive dysfunction, and suggest that NIK-247 has promise as a nootropic drug for therapy of memory deficits in patients with cerebrovascular-type dementing disorders.
Insights
NIK-247 effectively improved memory in mice with carbon monoxide-induced amnesia. This nootropic drug shows promise for treating cognitive deficits in cerebrovascular dementia patients.
Area of Science:
- Neuroscience
- Pharmacology
Background:
- Carbon monoxide (CO) exposure can induce acute and delayed amnesia.
- Cognitive dysfunction is a significant challenge in cerebrovascular disorders.
Purpose of the Study:
- To investigate the effects of NIK-247 on CO-induced amnesia in mice.
- To compare NIK-247 with tacrine, a known cognitive enhancer.
Main Methods:
- A step-down passive avoidance task was used in acute and delayed CO-induced amnesia models in mice.
- NIK-247 and tacrine were administered at various doses post-training and pre-retention test.
Main Results:
- NIK-247 attenuated acute amnesia when given post-training or pre-retention test.
- Both NIK-247 and tacrine improved memory retrieval in the delayed amnesia model.
- Dose-response curves for both drugs exhibited a biphasic bell-shaped pattern.
Conclusions:
- NIK-247 demonstrates efficacy in improving both acute and delayed hypoxia-induced cognitive dysfunction.
- NIK-247 holds potential as a nootropic agent for memory deficits in cerebrovascular dementia.