| Literature DB >> 34289895 |
L E M Wisse1,2, S Ravikumar3, R Ittyerah3, S Lim3, J Lane4, M L Bedard5, L Xie3, S R Das4, T Schuck6, M Grossman4, E B Lee6, M D Tisdall3, K Prabhakaran4, J A Detre4, G Mizsei3, J Q Trojanowski6, E Artacho-Pérula7, M M de Iñiguez de Onzono Martin7, M M Arroyo-Jiménez7, M Muñoz Lopez7, F J Molina Romero7, M P Marcos Rabal7, S Cebada Sánchez7, J C Delgado González7, C de la Rosa Prieto7, M Córcoles Parada7, D A Wolk4, D J Irwin4,6, R Insausti7, P A Yushkevich3.
Abstract
The medial temporal lobe (MTL) is a nidus for neurodegenerative pathologies and therefore an important region in which to study polypathology. We investigated associations between neurodegenerative pathologies and the thickness of different MTL subregions measured using high-resolution post-mortem MRI. Tau, TAR DNA-binding protein 43 (TDP-43), amyloid-β and α-synuclein pathology were rated on a scale of 0 (absent)-3 (severe) in the hippocampus and entorhinal cortex (ERC) of 58 individuals with and without neurodegenerative diseases (median age 75.0 years, 60.3% male). Thickness measurements in ERC, Brodmann Area (BA) 35 and 36, parahippocampal cortex, subiculum, cornu ammonis (CA)1 and the stratum radiatum lacunosum moleculare (SRLM) were derived from 0.2 × 0.2 × 0.2 mm3 post-mortem MRI scans of excised MTL specimens from the contralateral hemisphere using a semi-automated approach. Spearman's rank correlations were performed between neurodegenerative pathologies and thickness, correcting for age, sex and hemisphere, including all four proteinopathies in the model. We found significant associations of (1) TDP-43 with thickness in all subregions (r = - 0.27 to r = - 0.46), and (2) tau with BA35 (r = - 0.31) and SRLM thickness (r = - 0.33). In amyloid-β and TDP-43 negative cases, we found strong significant associations of tau with ERC (r = - 0.40), BA35 (r = - 0.55), subiculum (r = - 0.42) and CA1 thickness (r = - 0.47). This unique dataset shows widespread MTL atrophy in relation to TDP-43 pathology and atrophy in regions affected early in Braak stageing and tau pathology. Moreover, the strong association of tau with thickness in early Braak regions in the absence of amyloid-β suggests a role of Primary Age-Related Tauopathy in neurodegeneration.Entities:
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Year: 2021 PMID: 34289895 PMCID: PMC8293481 DOI: 10.1186/s40478-021-01225-3
Source DB: PubMed Journal: Acta Neuropathol Commun ISSN: 2051-5960 Impact factor: 7.801
Fig. 1Method for obtaining thickness measures from high-resolution post-mortem MRI in medial temporal lobe subregions. For each anatomical location (indicated by a dot; first row), cortical thickness was measured by using semi-automated active contour segmentation in ITK-SNAP (with possible manual correction) to segment a portion of the surrounding gray matter extending ~ 5–10 mm from the dot in all directions (second and third row). Thickness at each location was measured as the diameter of the sphere overlapping the dot, fully contained in the gray matter segmentation, and having maximum possible radius (fourth row). Segmentations and fitted spheres were visually inspected for quality assurance. See supplementary Methods for details. Note that we only show three examples in this figure. For this study we performed thickness measurements for seven subregions and averaged thickness measurements over two locations for each subregion, see Additional file 1: Fig. 1. ERC = entorhinal cortex; SRLM = stratum radiatum lacunosum moleculare; PHC = parahippocampal cortex
Participant demographics
| Full dataset | A-subset | |
|---|---|---|
| Number of specimens | 58 | 35 |
| Sex (% male) | 60.3 | 57.1 |
| Age (years) Median (range) | 75.0 (44–97) years | 73.0 (44–93) years |
| Mean ± SD | 74.7 ± 11.3 years | 72.0 ± 10.7 years |
| Mean ± SD (range) | 1.64 ± 0.93 (0–3) | 1.34 ± 0.96 (0–3) |
| % score > 0 (N) | 96.6% (56) | 94.3% (33) |
| Mean ± SD (range) | 0.47 ± 0.91 (0–3) | 0.52 ± 0.99 (0–3) |
| % score > 0 (N) | 27.6% (16) | 25.7% (9) |
| Mean ± SD (range) | 0.92 ± 0.99 (0–3) | 0.31 ± 0.59 (0–3) |
| % score > 0 (N) | 63.8% (37) | 40.0% (14) |
| Mean ± SD (range) | 0.21 ± 0.54 (0–2.33) | 0.08 ± 0.30 (0–1.67) |
| % score > 0 (N) | 17.2% (10) | 8.6% (3) |
| None/limited pathologya | 20.7% (8) | 31.4% (7) |
| Intermediate-high ADNC | 25.9% (15) | 0% (0) |
| CBD | 5.2% (3) | 8.6% (3) |
| FTLD-TDP | 13.8% (8) | 20.0% (7) |
| LBD | 8.6% (5) | 2.9% (1) |
| Otherb | 13.8% (7) | 17.1% (6) |
| PART | 8.6% (5) | 14.3% (5) |
| Pick’s disease | 5.2% (3) | 8.6% (3) |
| PSP | 6.9% (4) | 8.6% (3) |
| Two or more neuropathological diagnoses | 70.7% (41) | 65.7% (23) |
| 0 | 25.9% (15) | 42.9% (15) |
| 1 | 34.5% (20) | 57.1% (20) |
| 2 | 8.6% (5) | 0.0% (0) |
| 3 | 31.0% (18) | 0.0% (0) |
| 0 | 22.4% (13) | 37.1% (13) |
| 1 | 29.0% (18) | 42.9% (15) |
| 2 | 20.0% (11) | 14.3% (5) |
| 3 | 21.0% (13) | 0.0% (0) |
| Missing | 11.3% (3)b | 5.7% (2)b |
| 0 | 55.% (32) | 82.9 (29) |
| 1 | 17.2% (10) | 17.1% (6) |
| 2 | 3.4% (2) | 0.0% (0) |
| 3 | 24.1% (14) | 0.0% (0) |
The MTL pathology scores shown in the table are the averages of the semi-quantitative ratings in the entorhinal cortex, cornu ammonis 1 and dentate gyrus from the hemisphere contralateral to the MRI scan
MTL medial temporal lobe, TDP TAR DNA-binding protein, ADNC Alzheimer’s disease neuropathological change, CBD corticobasal degeneration, FTLD frontotemporal lobar degeneration, LBD Lewy body disease, PART primary age-related tauopathy, PSP progressive supranuclear palsy. aAlso includes patients with low ADNC. bB score was difficult to establish for some cases because they had primary tauopathies. b”Other” includes the following primary neuropathological diagnoses: Amyotrophic Lateral Sclerosis (n = 1); Argyrophylic Grain Disease (n = 2); cerebrovascular disease (n = 1); multiple system atrophy (n = 1); other (n = 1); tauopathy unclassifiable (n = 1)
Partial Spearman correlations of semiquantitative MTL scores of neurodegenerative pathologies with MTL subregional thickness measures, including all pathologies in the same model
| ERC | BA35 | BA36 | PHC | SUB | CA1 | SRLM | |
|---|---|---|---|---|---|---|---|
| Sample size | 55 | 53 | 53 | 56 | 58 | 58 | 57 |
| Amyloid-β | 0.10 | 0.11 | − 0.02 | − 0.18 | 0.05 | 0.05 | 0.16 |
| Tau | − 0.26a | − | 0.08 | 0.06 | − 0.13 | − 0.16 | − |
| TDP-43 | − | − | − | − | − 0.27a | − | − |
| α-synuclein | 0.01 | − 0.01 | 0.02 | 0.12 | 0.16 | 0.17 | − 0.12 |
All models are corrected for age, sex and hemisphere
ap < 0.10; *p < 0.05; **p < 0.01; ***p < 0.001. Significant results are bolded. TDP TAR DNA-binding protein, ERC entorhinal cortex, BA Brodmann area, PHC parahippocampal cortex, SUB subiculum, CA cornu ammonis, SRLM stratum radiatum lacunosum moleculare
Partial Spearman correlations of semiquantitative MTL scores of neurodegenerative pathologies with MTL subregional thickness measures in different subgroups, including only tau in the model
| ERC | BA35 | BA36 | PHC | SUB | CA1 | SRLM | |
|---|---|---|---|---|---|---|---|
| Sample size | 55 | 53 | 53 | 56 | 58 | 58 | 57 |
| Tau in full dataset | − 0.27a | − | 0.04 | − 0.06 | − 0.13 | − 0.18 | − |
| Sample size | 33 | 31 | 32 | 34 | 35 | 35 | 34 |
| Tau in A-subset | − 0.31a | − | − 0.06 | 0.14 | − 0.22 | − 0.30a | − 0.15 |
| Sample size | 25 | 23 | 24 | 26 | 27 | 27 | 26 |
| Tau in A-/TDP-subset | − | − | − 0.08 | − 0.09 | − | − | − 0.38a |
All models are corrected for age, sex and hemisphere
ap < 0.10; *p < 0.05; **p < 0.01; ***p < 0.001. Significant results are bolded. ERC entorhinal cortex, BA Brodmann area, PHC parahippocampal cortex, SUB subiculum, CA cornu ammonis, SRLM stratum radiatum lacunosum moleculare