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CSF glial markers are elevated in a subset of patients with genetic frontotemporal dementia
Ione O C Woollacott1, Imogen J Swift1,2, Aitana Sogorb-Esteve1,2
1Department of Neurodegenerative Disease, Dementia Research Centre, UCL Institute of Neurology, Queen Square, London, United Kingdom.
Background:
Neuroinflammation has been shown to be an important pathophysiological disease mechanism in frontotemporal dementia (FTD). This includes activation of microglia, a process that can be measured in life through assaying different glia-derived biomarkers in cerebrospinal fluid. However, only a few studies so far have taken place in FTD, and even fewer focusing on the genetic forms of FTD.
Methods:
We investigated the cerebrospinal fluid concentrations of TREM2, YKL-40 and chitotriosidase using immunoassays in 183 participants from the Genetic FTD Initiative (GENFI) study: 49 C9orf72 (36 presymptomatic, 13 symptomatic), 49 GRN (37 presymptomatic, 12 symptomatic) and 23 MAPT (16 presymptomatic, 7 symptomatic) mutation carriers and 62 mutation-negative controls. Concentrations were compared between groups using a linear regression model adjusting for age and sex, with 95% bias-corrected bootstrapped confidence intervals. Concentrations in each group were correlated with the Mini-Mental State Examination (MMSE) score using non-parametric partial correlations adjusting for age. Age-adjusted z-scores were also created for the concentration of markers in each participant, investigating how many had a value above the 95th percentile of controls.
Results:
Only chitotriosidase in symptomatic GRN mutation carriers had a concentration significantly higher than controls. No group had higher TREM2 or YKL-40 concentrations than controls after adjusting for age and sex. There was a significant negative correlation of chitotriosidase concentration with MMSE in presymptomatic GRN mutation carriers. In the symptomatic groups, for TREM2 31% of C9orf72, 25% of GRN, and 14% of MAPT mutation carriers had a concentration above the 95th percentile of controls. For YKL-40 this was 8% C9orf72, 8% GRN and 0% MAPT mutation carriers, whilst for chitotriosidase it was 23% C9orf72, 50% GRN, and 29% MAPT mutation carriers.
Conclusions:
Although chitotriosidase concentrations in GRN mutation carriers were the only significantly raised glia-derived biomarker as a group, a subset of mutation carriers in all three groups, particularly for chitotriosidase and TREM2, had elevated concentrations. Further work is required to understand the variability in concentrations and the extent of neuroinflammation across the genetic forms of FTD. However, the current findings suggest limited utility of these measures in forthcoming trials.
Insights
Neuroinflammation markers in genetic frontotemporal dementia (FTD) showed limited utility. Only chitotriosidase was elevated in symptomatic GRN mutation carriers, suggesting these biomarkers may not be useful in future FTD trials.
Area of Science:
- Neuroscience
- Genetics
- Biomarker Research
Background:
- Neuroinflammation is a key mechanism in frontotemporal dementia (FTD).
- Microglial activation, a marker of neuroinflammation, can be assessed via cerebrospinal fluid (CSF) biomarkers.
- Few studies have investigated these biomarkers in genetic FTD.
Purpose of the Study:
- To investigate CSF concentrations of TREM2, YKL-40, and chitotriosidase in genetic FTD.
- To correlate biomarker levels with cognitive function (MMSE) and compare them to controls.
- To assess the potential utility of these biomarkers in FTD clinical trials.
Main Methods:
- CSF samples from 183 participants (C9orf72, GRN, MAPT mutation carriers, and controls) were analyzed using immunoassays.
- Linear regression adjusted for age and sex was used to compare biomarker concentrations between groups.
- Correlations with Mini-Mental State Examination (MMSE) scores and analysis of biomarker levels above the 95th percentile of controls were performed.
Main Results:
- Only chitotriosidase was significantly higher in symptomatic GRN mutation carriers compared to controls.
- TREM2 and YKL-40 levels did not differ significantly between groups.
- A negative correlation was observed between chitotriosidase and MMSE in presymptomatic GRN carriers.
- A subset of mutation carriers across all groups showed elevated TREM2 and chitotriosidase levels.
Conclusions:
- Chitotriosidase is a potential biomarker for neuroinflammation in GRN-related FTD, but overall utility of these markers in trials is limited.
- Significant variability exists in biomarker concentrations among genetic FTD mutation carriers.
- Further research is needed to understand neuroinflammation heterogeneity in genetic FTD.
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