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Updated: Nov 18, 2025

Cell-based Assay to Study Antibody-mediated Tau Clearance by Microglia
Published on: November 9, 2018
Metformin attenuates plaque-associated tau pathology and reduces amyloid-β burden in APP/PS1 mice
Yanxing Chen1, Shuai Zhao1, Ziqi Fan1
1Department of Neurology, The Second Affiliated Hospital, School of Medicine, Zhejiang University, Hangzhou, People's Republic of China.
Background:
The neuropathological hallmarks of Alzheimer's disease (AD) are amyloid-β (Aβ) plaques and neurofibrillary tangles (NFTs). The amyloid cascade theory is the leading hypothesis of AD pathology. Aβ deposition precedes the aggregation of tau pathology and Aβ pathology precipitates tau pathology. Evidence also indicates the reciprocal interactions between amyloid and tau pathology. However, the detailed relationship between amyloid and tau pathology in AD remains elusive. Metformin might have a positive effect on cognitive impairments. However, whether metformin can reduce AD-related pathologies is still unconclusive.
Methods:
Brain extracts containing tau aggregates were unilaterally injected into the hippocampus and the overlying cerebral cortex of 9-month-old APPswe/PS1DE9 (APP/PS1) mice and age-matched wild-type (WT) mice. Metformin was administrated in the drinking water for 2 months. Aβ pathology, tau pathology, plaque-associated microgliosis, and autophagy marker were analyzed by immunohistochemical staining and immunofluorescence analysis 2 months after injection of proteopathic tau seeds. The effects of metformin on both pathologies were explored.
Results:
We observed tau aggregates in dystrophic neurites surrounding Aβ plaques (NP tau) in the bilateral hippocampi and cortices of tau-injected APP/PS1 mice but not WT mice. Aβ plaques promoted the aggregation of NP tau pathology. Injection of proteopathic tau seeds exacerbated Aβ deposits and decreased the number of microglia around Aβ plaques in the hippocampus and cortex of APP/PS1 mice. Metformin ameliorated the microglial autophagy impairment, increased the number of microglia around Aβ plaques, promoted the phagocytosis of NP tau, and reduced Aβ load and NP tau pathology in APP/PS1 mice.
Conclusion:
These findings indicate the existence of the crosstalk between amyloid and NP tau pathology. Metformin promoted the phagocytosis of pathological Aβ and tau proteins by enhancing microglial autophagy capability. It reduced Aβ deposits and limited the spreading of NP tau pathology in APP/PS1 mice, which exerts a beneficial effect on both pathologies.
Insights
Metformin treatment reduced amyloid-beta plaques and neurofibrillary tangles in Alzheimer's disease mouse models. This study shows metformin enhances microglial autophagy, clearing toxic proteins and benefiting both amyloid and tau pathologies.
Area of Science:
- Neuroscience
- Pathology
- Pharmacology
Background:
- Alzheimer's disease (AD) is characterized by amyloid-beta (Aβ) plaques and neurofibrillary tangles (NFTs).
- The amyloid cascade hypothesis suggests Aβ pathology precedes and influences tau pathology.
- The precise interplay between Aβ and tau, and metformin's effect on AD pathologies, requires further elucidation.
Purpose of the Study:
- To investigate the relationship between amyloid and tau pathology in a mouse model of Alzheimer's disease.
- To determine the efficacy of metformin in mitigating Aβ and tau pathologies.
- To explore the impact of metformin on microglial function and autophagy in the context of AD.
Main Methods:
- Administered tau aggregates to APPswe/PS1DE9 (APP/PS1) mice and wild-type (WT) controls.
- Treated APP/PS1 mice with metformin in drinking water for two months.
- Analyzed Aβ pathology, tau pathology, microgliosis, and autophagy markers using immunohistochemistry and immunofluorescence.
Main Results:
- Aβ plaques were observed to promote the aggregation of neuritic plaque tau (NP tau).
- Proteopathic tau seeds exacerbated Aβ deposits and reduced microglia around plaques in APP/PS1 mice.
- Metformin treatment ameliorated microglial autophagy impairment, enhanced NP tau phagocytosis, reduced Aβ load, and decreased NP tau pathology.
Conclusions:
- Amyloid and NP tau pathologies exhibit crosstalk, influencing each other.
- Metformin enhances microglial autophagy, promoting the clearance of pathological Aβ and tau proteins.
- Metformin demonstrates a beneficial effect on both amyloid and tau pathologies in the APP/PS1 mouse model.
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