Higher CSF sTREM2 attenuates ApoE4-related risk for cognitive decline and neurodegeneration
Nicolai Franzmeier1, M Suárez-Calvet2,3,4, Lukas Frontzkowski5
1Institute for Stroke and Dementia Research (ISD), University Hospital, Ludwig Maximilian University (LMU), Munich, Germany. Nicolai.franzmeier@med.uni-muenchen.de.
Background:
The Apolipoprotein E ε4 allele (i.e. ApoE4) is the strongest genetic risk factor for sporadic Alzheimer's disease (AD). TREM2 (i.e. Triggering receptor expressed on myeloid cells 2) is a microglial transmembrane protein brain that plays a central role in microglia activation in response to AD brain pathologies. Whether higher TREM2-related microglia activity modulates the risk to develop clinical AD is an open question. Thus, the aim of the current study was to assess whether higher sTREM2 attenuates the effects of ApoE4-effects on future cognitive decline and neurodegeneration.
Methods:
We included 708 subjects ranging from cognitively normal (CN, n = 221) to mild cognitive impairment (MCI, n = 414) and AD dementia (n = 73) from the Alzheimer's disease Neuroimaging Initiative. We used linear regression to test the interaction between ApoE4-carriage by CSF-assessed sTREM2 levels as a predictor of longitudinally assessed cognitive decline and MRI-assessed changes in hippocampal volume changes (mean follow-up of 4 years, range of 1.7-7 years).
Results:
Across the entire sample, we found that higher CSF sTREM2 at baseline was associated with attenuated effects of ApoE4-carriage (i.e. sTREM2 x ApoE4 interaction) on longitudinal global cognitive (p = 0.001, Cohen's f2 = 0.137) and memory decline (p = 0.006, Cohen's f2 = 0.104) as well as longitudinally assessed hippocampal atrophy (p = 0.046, Cohen's f2 = 0.089), independent of CSF markers of primary AD pathology (i.e. Aβ1-42, p-tau181). While overall effects of sTREM2 were small, exploratory subanalyses stratified by diagnostic groups showed that beneficial effects of sTREM2 were pronounced in the MCI group.
Conclusion:
Our results suggest that a higher CSF sTREM2 levels are associated with attenuated ApoE4-related risk for future cognitive decline and AD-typical neurodegeneration. These findings provide further evidence that TREM2 may be protective against the development of AD.
Insights
Higher levels of soluble TREM2 (sTREM2) may protect against the cognitive decline and neurodegeneration associated with the ApoE4 gene variant, a significant risk factor for Alzheimer's disease (AD). This suggests TREM2 could play a protective role in AD development.
Area of Science:
- Neuroscience
- Genetics
- Biomarkers
Background:
- Apolipoprotein E ε4 (ApoE4) is the primary genetic risk factor for sporadic Alzheimer's disease (AD).
- Triggering receptor expressed on myeloid cells 2 (TREM2) is crucial for microglial activation in response to AD pathologies.
- The role of TREM2 activity in modulating AD risk remains unclear.
Purpose of the Study:
- To investigate whether elevated soluble TREM2 (sTREM2) levels can mitigate the detrimental effects of ApoE4 carriage on cognitive function and neurodegeneration.
- To assess the interaction between sTREM2 and ApoE4 in predicting future cognitive decline and brain changes.
Main Methods:
- Utilized data from 708 participants (cognitively normal, MCI, AD dementia) from the Alzheimer's Disease Neuroimaging Initiative.
- Employed linear regression to analyze the interaction between CSF-assessed sTREM2 levels and ApoE4 carriage.
- Assessed longitudinal cognitive decline and MRI-derived hippocampal volume changes over a mean follow-up of 4 years.
Main Results:
- Higher baseline CSF sTREM2 levels significantly attenuated the negative impact of ApoE4 carriage on global cognitive and memory decline.
- Elevated sTREM2 was associated with reduced longitudinal hippocampal atrophy, independent of core AD pathology markers (Aβ1-42, p-tau181).
- Exploratory analyses indicated that these beneficial effects of sTREM2 were most pronounced in individuals with Mild Cognitive Impairment (MCI).
Conclusions:
- Increased CSF sTREM2 levels are linked to a reduced risk of cognitive decline and neurodegeneration associated with ApoE4.
- These findings support a potential neuroprotective role for TREM2 in the context of Alzheimer's disease.
- TREM2 may represent a therapeutic target for mitigating ApoE4-driven AD risk.
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