Alzheimer's disease (AD) is the most common neurodegenerative disease. The accumulation of amyloid beta (A) is the main pathology of AD. Metformin, a well-known antidiabetic drug, has been reported to have AD-protective effect. However, the mechanism is still unclear. In this study, we tried to figure out whether metformin could activate insulin-degrading enzyme (IDE) to ameliorate A-induced pathology. Morris water maze and Y-maze results indicated that metformin could improve the learning and memory ability in APP/PS1 (APP/PS1) transgenic mice. F-FDG PET-CT result showed that metformin could ameliorate the neural dysfunction in APP/PS1 transgenic mice. PCR analysis showed that metformin could effectively improve the mRNA expression level of nerve and synapse-related genes (, , and ) in the brain. Metformin decreased oxidative stress (malondialdehyde and superoxide dismutase) and neuroinflammation (IL-1 and IL-6) in APP/PS1 mice. In addition, metformin obviously reduced the A level in the brain of APP/PS1 mice. Metformin did not affect the enzyme activities and mRNA expression levels of A-related secretases (, , and ). Meanwhile, metformin also did not affect the mRNA expression levels of A-related transporters ( and ). Metformin increased the protein levels of p-AMPK and IDE in the brain of APP/PS1 mice, which might be the key mechanism of metformin on AD. In conclusion, the well-known antidiabetic drug, metformin, could be a promising drug for AD treatment.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7191377PMC
http://dx.doi.org/10.1155/2020/2315106DOI Listing

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