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Fardin Nabizadeh1,2, Homa Seyedmirzaei3,4, Shaghayegh Karami3
1School of Medicine, Iran University of Medical Sciences, Tehran, Iran. fardinnabizade1378@gmail.com.
Abstract:
Understanding the exact pathophysiological mechanisms underlying the involvement of triggering receptor expressed on myeloid cells 2 (TREM2) related microglia activation is crucial for the development of clinical trials targeting microglia activation at different stages of Alzheimer's disease (AD). Given the contradictory findings in the literature, it is imperative to investigate the longitudinal alterations in cerebrospinal fluid (CSF) soluble TREM2 (sTREM2) levels as a marker for microglia activation, and its potential association with AD biomarkers, in order to address the current knowledge gap. In this study, we aimed to assess the longitudinal changes in CSF sTREM2 levels within the framework of the A/T/N classification system for AD biomarkers and to explore potential associations with AD pathological features, including the presence of amyloid-beta (Aβ) plaques and tau aggregates. The baseline and longitudinal (any available follow-up visit) CSF sTREM2 levels and processed tau-PET and Aβ-PET data of 1001 subjects were recruited from the ADNI database. The participants were classified into four groups based on the A/T/N framework: A+ /TN+ , A+ /TN- , A- /TN+ , and A- /TN- . Linear regression analyses were conducted to assess the relationship between CSF sTREM2 with cognitive performance, tau and Aβ-PET adjusting for age, gender, education, and APOE ε4 status. Based on our analysis there was a significant difference in baseline and rate of change of CSF sTREM2 between ATN groups. While there was no association between baseline CSF sTREM2 and cognitive performance (ADNI-mem), we found that the rate of change of CSF sTREM2 is significantly associated with cognitive performance in the entire cohort but not the ATN groups. We found that the baseline CSF sTREM2 is significantly associated with baseline tau-PET and Aβ-PET rate of change only in the A+ /TN+ group. A significant association was found between the rate of change of CSF sTREM2 and the tau- and Aβ-PET rate of change only in the A+ /TN- group. Our study suggests that the TREM2-related microglia activation and their relations with AD markers and cognitive performance vary the in presence or absence of Aβ and tau pathology. Furthermore, our findings revealed that a faster increase in the level of CSF sTREM2 might attenuate future Aβ plaque formation and tau aggregate accumulation only in the presence of Aβ pathology.
Insights
Longitudinal changes in cerebrospinal fluid soluble TREM2 (sTREM2) reveal its association with Alzheimer's disease (AD) biomarkers and cognitive performance. Faster increases in sTREM2 may slow amyloid-beta plaque and tau aggregate accumulation in AD.
Area of Science:
- Neuroscience
- Immunology
- Biochemistry
Background:
- Triggering receptor expressed on myeloid cells 2 (TREM2) and its soluble form (sTREM2) are key markers of microglia activation in Alzheimer's disease (AD).
- Contradictory findings necessitate longitudinal studies on CSF sTREM2 to understand its role in AD progression and its relationship with AD biomarkers.
Purpose of the Study:
- To assess longitudinal changes in CSF sTREM2 levels using the A/T/N classification system.
- To explore associations between CSF sTREM2 and AD pathological features (amyloid-beta plaques, tau aggregates) and cognitive performance.
Main Methods:
- Analysis of baseline and longitudinal CSF sTREM2, tau-PET, and Aβ-PET data from 1001 subjects in the ADNI database.
- Classification of participants into four groups based on the A/T/N framework (A+/TN+, A+/TN-, A-/TN+, A-/TN-).
- Linear regression analyses to evaluate relationships between CSF sTREM2, PET data, and cognitive performance, adjusting for covariates.
Main Results:
- Significant differences in baseline and rate of change of CSF sTREM2 were observed across ATN groups.
- While baseline CSF sTREM2 did not correlate with cognitive performance, its rate of change was associated with cognition in the overall cohort.
- Baseline CSF sTREM2 correlated with tau-PET and Aβ-PET changes in the A+/TN+ group; rate of change correlated in the A+/TN- group.
Conclusions:
- TREM2-related microglia activation dynamics and their association with AD markers and cognition differ based on the presence or absence of Aβ and tau pathology.
- A faster increase in CSF sTREM2 may attenuate future Aβ plaque and tau aggregate accumulation, particularly in the presence of existing Aβ pathology.
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