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Limbic Alzheimer's co-pathology in multiple system atrophy is associated with cognitive impairment and diagnostic
Janna van Wetering1,2, Natasja A C Deshayes1,2, Joëlle Boone1,2
1Section Clinical Neuroanatomy and Biobanking, Department of Anatomy and Neurosciences, Amsterdam UMC, Vrije University, De Boelelaan 1117, 1081 HV, Amsterdam, The Netherlands.
Abstract:
The clinical heterogeneity of multiple system atrophy (MSA) may, along with the primary aggregation of alpha-synuclein (α-syn), partly be shaped by co-pathologies, such as amyloid-beta (Aβ), phosphorylated (p)-tau, and pTDP-43, though their relevance remains unclear. Here, we aimed to characterize the prevalence, morphology, regional patterns, and clinical relevance of co-pathologies in a well-characterized MSA autopsy cohort. Regional load (%area) and morphological characterization of α-syn (KM51), Aβ (6F/3D), p-tau (AT8), and pTDP-43 (pSer409) pathology were assessed in limbic regions of MSA (n = 70) donors from the Netherlands Brain Bank. APOE-ε4 genotyping and clinical parameters of the cohort were collected. Associations with clinical features were analyzed using ANCOVA and mixed linear models, adjusted for age and sex. Aβ, p-tau, and pTDP-43 pathology were detected in 31%, 91%, and 11% of all MSA cases, respectively, with the highest burdens in the entorhinal cortex and amygdala. Mixed MSA + AD cases had a higher age at death (75 ± 7 vs. 64 ± 7, p < 0.001), and more frequently APOE-ε4 alleles (p < 0.001) than pure MSA. Cognitive impairment (CDR scores) was associated with diffuse and compact Aβ plaques across all regions (r ≥ 0.24, p ≤ 0.015), p-tau pathology in CA1 and CA3 + 4 (r ≥ 0.32, p ≤ 0.020), and neuronal α-syn inclusions in the amygdala (r = 0.54, p < 0.001). No robust correlations were found between total α-syn burden and Aβ or p-tau. Misdiagnoses increased with co-pathology burden (Aβ: p = 0.040; p-tau: p = 0.020) and age at onset (80% in those with onset > 75 years). Our results demonstrate that limbic Aβ, p-tau, and neuronal α-syn pathologies occur in a substantial proportion of MSA donors and are independently associated with cognitive decline and diagnostic inaccuracy, particularly among those with older age at onset. By providing a systematic quantitative and morphological assessment of co-pathologies in limbic regions of MSA, our study advances beyond prior prevalence reports and highlights their direct clinical relevance. These findings highlight the need for refined diagnostic criteria and co-pathology-informed biomarker strategies for MSA.
Insights
Co-pathologies like amyloid-beta (Aβ) and phosphorylated tau (p-tau) are common in multiple system atrophy (MSA) and linked to cognitive decline and misdiagnosis, especially in older patients.
Area of Science:
- Neuroscience
- Neuropathology
- Clinical Neurology
Background:
- Multiple system atrophy (MSA) exhibits clinical heterogeneity, potentially influenced by alpha-synuclein (α-syn) co-pathologies.
- The roles of amyloid-beta (Aβ), phosphorylated tau (p-tau), and pTDP-43 in MSA's clinical presentation remain incompletely understood.
Purpose of the Study:
- To investigate the prevalence, morphology, regional distribution, and clinical significance of Aβ, p-tau, and pTDP-43 co-pathologies in a well-characterized MSA autopsy cohort.
- To correlate these co-pathologies with clinical features, including cognitive impairment and diagnostic accuracy.
Main Methods:
- Post-mortem limbic tissues from 70 MSA donors were analyzed for α-syn, Aβ, p-tau, and pTDP-43 pathology load and morphology.
- APOE-ε4 genotyping and clinical data were collected, with statistical analyses (ANCOVA, mixed linear models) performed to assess associations with clinical parameters.
Main Results:
- Aβ, p-tau, and pTDP-43 pathology were present in 31%, 91%, and 11% of MSA cases, respectively, predominantly in the entorhinal cortex and amygdala.
- Cognitive impairment correlated with Aβ plaques, p-tau pathology, and amygdalar α-syn inclusions.
- Increased co-pathology burden was associated with higher rates of misdiagnosis and older age at onset.
Conclusions:
- Limbic Aβ, p-tau, and α-syn pathologies are prevalent in MSA and independently associated with cognitive decline and diagnostic inaccuracy.
- These findings underscore the need for refined diagnostic criteria and co-pathology-informed biomarker strategies for MSA, particularly in older individuals.
- The study provides a systematic assessment of co-pathologies, advancing understanding beyond simple prevalence reports.
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