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Analysis of Learning and Memory Ability in an Alzheimer's Disease Mouse Model using the Morris Water Maze
Published on: October 29, 2019
MMP9 modulation improves specific neurobehavioral deficits in a mouse model of Alzheimer's disease
Charis Ringland1,2, Jonas Elias Schweig1, Maxwell Eisenbaum1,2
1The Roskamp Institute, 2040 Whitfield Avenue, Sarasota, FL, 34243, USA.
Background:
Matrix metallopeptidase 9 (MMP9) has been implicated in a variety of neurological disorders, including Alzheimer's disease (AD), where MMP9 levels are elevated in the brain and cerebrovasculature. Previously our group demonstrated apolipoprotein E4 (apoE4) was less efficient in regulating MMP9 activity in the brain than other apoE isoforms, and that MMP9 inhibition facilitated beta-amyloid (Aβ) elimination across the blood-brain barrier (BBB) METHODS: In the current studies, we evaluated the impact of MMP9 modulation on Aβ disposition and neurobehavior in AD using two approaches, (1) pharmacological inhibition of MMP9 with SB-3CT in apoE4 x AD (E4FAD) mice, and (2) gene deletion of MMP9 in AD mice (MMP9KO/5xFAD) RESULTS: Treatment with the MMP9 inhibitor SB-3CT in E4FAD mice led to reduced anxiety compared to placebo using the elevated plus maze. Deletion of the MMP9 gene in 5xFAD mice also reduced anxiety using the open field test, in addition to improving sociability and social recognition memory, particularly in male mice, as assessed through the three-chamber task, indicating certain behavioral alterations in AD may be mediated by MMP9. However, neither pharmacological inhibition of MMP9 or gene deletion of MMP9 affected spatial learning or memory in the AD animals, as determined through the radial arm water maze. Moreover, the effect of MMP9 modulation on AD neurobehavior was not due to changes in Aβ disposition, as both brain and plasma Aβ levels were unchanged in the SB-3CT-treated E4FAD animals and MMP9KO/AD mice compared to their respective controls.
Conclusions:
In total, while MMP9 inhibition did improve specific neurobehavioral deficits associated with AD, such as anxiety and social recognition memory, modulation of MMP9 did not alter spatial learning and memory or Aβ tissue levels in AD animals. While targeting MMP9 may represent a therapeutic strategy to mitigate aspects of neurobehavioral decline in AD, further work is necessary to understand the nature of the relationship between MMP9 activity and neurological dysfunction.
Insights
Matrix metallopeptidase 9 (MMP9) inhibition improved anxiety and social memory in Alzheimer's disease (AD) mouse models. However, MMP9 modulation did not affect spatial learning or beta-amyloid levels, suggesting a targeted therapeutic potential for specific AD symptoms.
Area of Science:
- Neuroscience
- Pharmacology
- Genetics
Background:
- Matrix metallopeptidase 9 (MMP9) is implicated in neurological disorders like Alzheimer's disease (AD).
- Elevated MMP9 levels are observed in the AD brain and cerebrovasculature.
- Apolipoprotein E4 (apoE4) is less effective at regulating MMP9 activity compared to other apoE isoforms.
Purpose of the Study:
- To evaluate the impact of MMP9 modulation on beta-amyloid (Aβ) disposition and neurobehavior in AD mouse models.
- To investigate the effects of pharmacological MMP9 inhibition and gene deletion on AD-related pathology and behavior.
Main Methods:
- Pharmacological inhibition of MMP9 using SB-3CT in apoE4 x AD (E4FAD) mice.
- Gene deletion of MMP9 in AD mice (MMP9KO/5xFAD).
- Assessment of neurobehavior using elevated plus maze, open field test, three-chamber task, and radial arm water maze.
Main Results:
- MMP9 inhibition with SB-3CT reduced anxiety in E4FAD mice.
- MMP9 gene deletion reduced anxiety, improved sociability, and social recognition memory in 5xFAD mice, particularly in males.
- Neither MMP9 inhibition nor gene deletion affected spatial learning or memory in AD animals.
- Brain and plasma Aβ levels remained unchanged in both treatment groups.
Conclusions:
- MMP9 modulation can mitigate specific neurobehavioral deficits in AD, such as anxiety and social recognition memory.
- Targeting MMP9 may offer a therapeutic strategy for certain aspects of AD-related neurobehavioral decline.
- Further research is needed to fully understand the relationship between MMP9 activity and neurological dysfunction in AD.

