4.3 Article

Memantine improves cognitive deficits via KATP channel inhibition in olfactory bulbectomized mice

期刊

MOLECULAR AND CELLULAR NEUROSCIENCE
卷 117, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.mcn.2021.103680

关键词

OBX mice; KATP channel; Memantine; Cognitive deficits; CaMKII; CaMKIV

资金

  1. Ministry of Education, Culture, Sports, Science and Technology
  2. Ministry of Health and Welfare of Japan [18K06887]
  3. Project of Translational and Clinical Research Core Centers from AMED of Japan
  4. Grants-in-Aid for Scientific Research [18K06887] Funding Source: KAKEN

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The study confirmed that memantine rescues cognitive deficits in OBX mice via KATP channel inhibition, restoring LTP and CaMKII/CaMKIV activities in the hippocampus.
Patients with Alzheimer's disease (AD) demonstrate severely impaired olfactory systems, which occur in the early stages of the disease. Olfactory bulbectomy (OBX) in mice elicits cognitive deficits, and reduces cholinergic activity in the hippocampus. Here, we confirmed that the novel AD drug memantine rescues cognitive deficits via ATP-sensitive potassium (KATP) channel inhibition in OBX mice. Repeated memantine administration at 1-3 mg/ kg p.o. for 14 days starting at 10 days after OBX surgery significantly rescued cognitive deficits in OBX mice, as assessed using Y-maze, novel object recognition, and passive avoidance tasks. Consistent with the rescued cognitive deficits in OBX mice, long-term potentiation (LTP) in the hippocampal cornu ammonis (CA) 1 region was markedly restored with memantine administration. As demonstrated by immunoblotting, the reductions of calcium/calmodulin-dependent protein kinase II (CaMKII) alpha (Thr-286) autophosphorylation and calcium/ calmodulin-dependent protein kinase IV (CaMKIV; Thr-196) phosphorylation in the CA1 region of OBX mice were significantly restored with memantine. Conversely, pre-treatment with pinacidil, a KATP channel opener, failed to reinstate hippocampal LTP and CaMKII/CaMKIV activities in the CA1 region. Finally, improvement of cognitive deficits by memantine treatments was observed in OBX-operated Kir6.1 heterozygous (+/-) mice but not in OBX-operated Kir6.2 heterozygous (+/-) mice. Overall, our study demonstrates that memantine rescues OBX-induced cognitive deficits via Kir6.2 channel inhibition in the CA1 region.

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