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1.
Ann Neurol ; 95(3): 518-529, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38069571

ABSTRACT

OBJECTIVE: This study was undertaken to evaluate the frequency of modifiable dementia risk factors and their association with cognitive impairment and rate of decline in diverse participants engaged in studies of memory and aging. METHODS: Modifiable dementia risk factors and their associations with cognitive impairment and cognitive decline were determined in community-dwelling African American (AA; n = 261) and non-Hispanic White (nHW; n = 193) participants who completed ≥2 visits at the Mayo Clinic Alzheimer Disease Research Center in Jacksonville, Florida. Risk factors and their associations with cognitive impairment (global Clinical Dementia Rating [CDR] ≥ 0.5) and rates of decline (CDR Sum of Boxes) in impaired participants were compared in AA and nHW participants, controlling for demographics, APOE ɛ4 status, and Area Deprivation Index. RESULTS: Hypertension, hypercholesterolemia, obesity, and diabetes were overrepresented in AA participants, but were not associated with cognitive impairment. Depression was associated with increased odds of cognitive impairment in AA (odds ratio [OR] = 4.30, 95% confidence interval [CI] = 2.13-8.67) and nHW participants (OR = 2.79, 95% CI = 1.21-6.44) but uniquely associated with faster decline in AA participants (ß = 1.71, 95% CI = 0.69-2.73, p = 0.001). Fewer AA participants reported antidepressant use (9/49, 18%) than nHW counterparts (57/78, 73%, p < 0.001). Vitamin B12 deficiency was also associated with an increased rate of cognitive decline in AA participants (ß = 2.65, 95% CI = 0.38-4.91, p = 0.023). INTERPRETATION: Modifiable dementia risk factors are common in AA and nHW participants, representing important risk mitigation targets. Depression was associated with dementia in AA and nHW participants, and with accelerated declines in cognitive function in AA participants. Optimizing depression screening and treatment may improve cognitive trajectories and outcomes in AA participants. ANN NEUROL 2024;95:518-529.


Subject(s)
Alzheimer Disease , Cognition Disorders , Cognitive Dysfunction , Humans , Alzheimer Disease/complications , Black or African American , Cognition Disorders/etiology , Cognitive Dysfunction/epidemiology , Cognitive Dysfunction/complications , Risk Factors , White
2.
Acta Neuropathol ; 147(1): 54, 2024 03 12.
Article in English | MEDLINE | ID: mdl-38472443

ABSTRACT

Rare and common GBA variants are risk factors for both Parkinson's disease (PD) and dementia with Lewy bodies (DLB). However, the degree to which GBA variants are associated with neuropathological features in Lewy body disease (LBD) is unknown. Herein, we assessed 943 LBD cases and examined associations of 15 different neuropathological outcomes with common and rare GBA variants. Neuropathological outcomes included LBD subtype, presence of a high likelihood of clinical DLB (per consensus guidelines), LB counts in five cortical regions, tyrosine hydroxylase immunoreactivity in the dorsolateral and ventromedial putamen, ventrolateral substantia nigra neuronal loss, Braak neurofibrillary tangle (NFT) stage, Thal amyloid phase, phospho-ubiquitin (pS65-Ub) level, TDP-43 pathology, and vascular disease. Sequencing of GBA exons revealed a total of 42 different variants (4 common [MAF > 0.5%], 38 rare [MAF < 0.5%]) in our series, and 165 cases (17.5%) had a copy of the minor allele for ≥ 1 variant. In analysis of common variants, p.L483P was associated with a lower Braak NFT stage (OR = 0.10, P < 0.001). In gene-burden analysis, presence of the minor allele for any GBA variant was associated with increased odds of a high likelihood of DLB (OR = 2.00, P < 0.001), a lower Braak NFT stage (OR = 0.48, P < 0.001), a lower Thal amyloid phase (OR = 0.55, P < 0.001), and a lower pS65-Ub level (ß: -0.37, P < 0.001). Subgroup analysis revealed that GBA variants were most common in LBD cases with a combination of transitional/diffuse LBD and Braak NFT stage 0-II or Thal amyloid phase 0-1, and correspondingly that the aforementioned associations of GBA gene-burden with a decreased Braak NFT stage and Thal amyloid phase were observed only in transitional or diffuse LBD cases. Our results indicate that in LBD, GBA variants occur most frequently in cases with greater LB pathology and low AD pathology, further informing disease-risk associations of GBA in PD, PD dementia, and DLB.


Subject(s)
Alzheimer Disease , Lewy Body Disease , Parkinson Disease , Humans , Lewy Body Disease/pathology , Parkinson Disease/pathology , Alzheimer Disease/pathology , Substantia Nigra/pathology , Neurofibrillary Tangles/pathology
3.
Mov Disord ; 39(5): 836-846, 2024 May.
Article in English | MEDLINE | ID: mdl-38477399

ABSTRACT

BACKGROUND: Diffusion-weighted magnetic resonance imaging (dMRI) examines tissue microstructure integrity in vivo. Prior dementia with Lewy bodies (DLB) diffusion tensor imaging studies yielded mixed results. OBJECTIVE: We employed free-water (FW) imaging to assess DLB progression and correlate with clinical decline in DLB. METHODS: Baseline and follow-up MRIs were obtained at 12 and/or 24 months for 27 individuals with DLB or mild cognitive impairment with Lewy bodies (MCI-LB). FW was analyzed using the Mayo Clinic Adult Lifespan Template. Primary outcomes were FW differences between baseline and 12 or 24 months. To compare FW change longitudinally, we included 20 cognitively unimpaired individuals from the Alzheimer's Disease Neuroimaging Initiative. RESULTS: We followed 23 participants to 12 months and 16 participants to 24 months. Both groups had worsening in Montreal Cognitive Assessment (MoCA) and Movement Disorder Society-Unified Parkinson's Disease Rating Scale (MDS-UPDRS) scores. We found significant FW increases at both time points compared to baseline in the insula, amygdala, posterior cingulum, parahippocampal, entorhinal, supramarginal, fusiform, retrosplenial, and Rolandic operculum regions. At 24 months, we found more widespread microstructural changes in regions implicated in visuospatial processing, motor, and cholinergic functions. Between-group analyses (DLB vs. controls) confirmed significant FW changes over 24 months in most of these regions. FW changes were associated with longitudinal worsening of MDS-UPDRS and MoCA scores. CONCLUSIONS: FW increased in gray and white matter regions in DLB, likely due to neurodegenerative pathology associated with disease progression. FW change was associated with clinical decline. The findings support dMRI as a promising tool to track disease progression in DLB. © 2024 International Parkinson and Movement Disorder Society.


Subject(s)
Cognitive Dysfunction , Disease Progression , Lewy Body Disease , Humans , Lewy Body Disease/diagnostic imaging , Lewy Body Disease/pathology , Female , Male , Aged , Aged, 80 and over , Longitudinal Studies , Cognitive Dysfunction/etiology , Cognitive Dysfunction/diagnostic imaging , Cognitive Dysfunction/physiopathology , Cognitive Dysfunction/pathology , Diffusion Magnetic Resonance Imaging/methods , Brain/diagnostic imaging , Brain/pathology , Water , Diffusion Tensor Imaging/methods , Middle Aged , White Matter/diagnostic imaging , White Matter/pathology
4.
Alzheimers Dement ; 20(3): 2298-2308, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38265159

ABSTRACT

Despite its high prevalence among dementias, Lewy body dementia (LBD) remains poorly understood with a limited, albeit growing, evidence base. The public-health burden that LBD imposes is worsened by overlapping pathologies, which contribute to misdiagnosis, and lack of treatments. For this report, we gathered and analyzed public-domain information on advocacy, funding, research outputs, and the therapeutic pipeline to identify gaps in each of these key elements. To further understand the current gaps, we also conducted interviews with leading experts in regulatory/governmental agencies, LBD advocacy, academic research, and biopharmaceutical research, as well as with funding sources. We identified wide gaps across the entire landscape, the most critical being in research. Many of the experts participated in a workshop to discuss the prioritization of research areas with a view to accelerating therapeutic development and improving patient care. This white paper outlines the opportunities for bridging the major LBD gaps and creates the framework for collaboration in that endeavor. HIGHLIGHTS: A group representing academia, government, industry, and consulting expertise was convened to discuss current progress in Dementia with Lewy Body care and research. Consideration of expert opinion,natural language processing of the literature as well as publicly available data bases, and Delphi inspired discussion led to a proposed consensus document of priorities for the field.


Subject(s)
Lewy Body Disease , Humans , Lewy Body Disease/diagnosis , Lewy Body Disease/therapy
5.
Alzheimers Dement ; 20(4): 2485-2496, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38329197

ABSTRACT

INTRODUCTION: Patients with dementia with Lewy bodies (DLB) may have Alzheimers disease (AD) pathology that can be detected by plasma biomarkers. Our objective was to evaluate plasma biomarkers of AD and their association with positron emission tomography (PET) biomarkers of amyloid and tau deposition in the continuum of DLB, starting from prodromal stages of the disease. METHODS: The cohort included patients with isolated rapid eye movement (REM) sleep behavior disorder (iRBD), mild cognitive impairment with Lewy bodies (MCI-LB), or DLB, with a concurrent blood draw and PET scans. RESULTS: Abnormal levels of plasma glial fibrillary acidic protein (GFAP) were found at the prodromal stage of MCI-LB in association with increased amyloid PET. Abnormal levels of plasma phosphorylated tau (p-tau)-181 and neurofilament light (NfL) were found at the DLB stage. Plasma p-tau-181 showed the highest accuracy in detecting abnormal amyloid and tau PET in patients with DLB. DISCUSSION: The range of AD co-pathology can be detected with plasma biomarkers in the DLB continuum, particularly with plasma p-tau-181 and GFAP.


Subject(s)
Alzheimer Disease , Cognitive Dysfunction , Lewy Body Disease , REM Sleep Behavior Disorder , Humans , Alzheimer Disease/diagnosis , Lewy Body Disease/diagnosis , Amyloid beta-Peptides , tau Proteins , Biomarkers/metabolism , Cognitive Dysfunction/diagnosis
6.
Mov Disord ; 37(6): 1256-1264, 2022 06.
Article in English | MEDLINE | ID: mdl-35261094

ABSTRACT

BACKGROUND AND OBJECTIVE: Patients with dementia with Lewy bodies (DLB) may have overlapping Alzheimer's disease pathology. We investigated the longitudinal rate of tau accumulation and its association with neurodegeneration and clinical disease progression in DLB. METHODS: Consecutive patients with probable DLB (n = 22) from the Mayo Clinic Alzheimer's Disease Research Center and age-matched and sex-matched cognitively unimpaired controls (CU; n = 22) with serial magnetic resonance imaging and flortaucipir positron emission tomography scans within an average of 1.6 years were included. Regional annualized rates of flortaucipir uptake standardized uptake value ratios (SUVr) were calculated. Regional annualized rates of cortical volume change were measured with the Tensor Based Morphometry-Syn algorithm. RESULTS: The annual increase of flortaucipir SUVr was greater in the middle and superior occipital, fusiform, and inferior parietal cortices in DLB (mean: 0.017, 0.019, 0.019, and 0.015, respectively) compared with the CU (mean: -0.006, -0.009, -0.003, and - 0.005, respectively; P < 0.05). In patients with DLB (but not the CU), a longitudinal increase in flortaucipir SUVr was associated with longitudinal cortical atrophy rates in the lateral occipital and inferior temporoparietal cortices, hippocampus, and the temporal pole as well as a concurrent decline on Mini-Mental State Examination and Clinical Dementia Rating-Sum of Boxes in the lateral occipital and the fusiform cortices. CONCLUSIONS: Tau accumulation was faster in DLB compared with the CU, with increased accumulation rates in the lateral occipital and temporoparietal cortices. These increased rates of tau accumulation were associated with neurodegeneration and faster disease progression in DLB. Tau may be a potential treatment target in a subset of patients with DLB. © 2022 The Authors. Movement Disorders published by Wiley Periodicals LLC on behalf of International Parkinson and Movement Disorder Society.


Subject(s)
Alzheimer Disease , Lewy Body Disease , Alzheimer Disease/pathology , Disease Progression , Humans , Lewy Body Disease/pathology , Positron-Emission Tomography , tau Proteins
7.
Brain ; 144(10): 3212-3225, 2021 11 29.
Article in English | MEDLINE | ID: mdl-34114602

ABSTRACT

Dementia with Lewy bodies (DLB) is neuropathologically defined by the presence of α-synuclein aggregates, but many DLB cases show concurrent Alzheimer's disease pathology in the form of amyloid-ß plaques and tau neurofibrillary tangles. The first objective of this study was to investigate the effect of Alzheimer's disease co-pathology on functional network changes within the default mode network (DMN) in DLB. Second, we studied how the distribution of tau pathology measured with PET relates to functional connectivity in DLB. Twenty-seven DLB, 26 Alzheimer's disease and 99 cognitively unimpaired participants (balanced on age and sex to the DLB group) underwent tau-PET with AV-1451 (flortaucipir), amyloid-ß-PET with Pittsburgh compound-B (PiB) and resting-state functional MRI scans. The resing-state functional MRI data were used to assess functional connectivity within the posterior DMN. This was then correlated with overall cortical flortaucipir PET and PiB PET standardized uptake value ratio (SUVr). The strength of interregional functional connectivity was assessed using the Schaefer atlas. Tau-PET covariance was measured as the correlation in flortaucipir SUVr between any two regions across participants. The association between region-to-region functional connectivity and tau-PET covariance was assessed using linear regression. Additionally, we identified the region with highest and the region with lowest tau SUVrs (tau hot- and cold spots) and tested whether tau SUVr in all other brain regions was associated with the strength of functional connectivity to these tau hot and cold spots. A reduction in posterior DMN connectivity correlated with overall higher cortical tau- (r = -0.39, P = 0.04) and amyloid-PET uptake (r = -0.41, P = 0.03) in the DLB group, i.e. patients with DLB who have more concurrent Alzheimer's disease pathology showed a more severe loss of DMN connectivity. Higher functional connectivity between regions was associated with higher tau covariance in cognitively unimpaired, Alzheimer's disease and DLB. Furthermore, higher functional connectivity of a target region to the tau hotspot (i.e. inferior/medial temporal cortex) was related to higher flortaucipir SUVrs in the target region, whereas higher functional connectivity to the tau cold spot (i.e. sensory-motor cortex) was related to lower flortaucipir SUVr in the target region. Our findings suggest that a higher burden of Alzheimer's disease co-pathology in patients with DLB is associated with more Alzheimer's disease-like changes in functional connectivity. Furthermore, we found an association between the brain's functional network architecture and the distribution of tau pathology that has recently been described in Alzheimer's disease. We show that this relationship also exists in patients with DLB, indicating that similar mechanisms of connectivity-dependent occurrence of tau pathology might be at work in both diseases.


Subject(s)
Alzheimer Disease/metabolism , Brain/metabolism , Lewy Body Disease/metabolism , Nerve Net/metabolism , Aged , Alzheimer Disease/pathology , Brain/pathology , Carbolines/metabolism , Contrast Media/metabolism , Female , Humans , Lewy Body Disease/pathology , Magnetic Resonance Imaging/methods , Male , Middle Aged , Nerve Net/pathology , Positron-Emission Tomography/methods
8.
Alzheimers Dement ; 18(4): 591-601, 2022 04.
Article in English | MEDLINE | ID: mdl-34761850

ABSTRACT

INTRODUCTION: We examined the temporal sequence of the core features in probable dementia with Lewy bodies (DLB). METHODS: In 488 patients with probable DLB, the onset of each core feature and time to diagnosis was determined for men and women, and a pathologic subgroup (n = 209). RESULTS: REM sleep behavior disorder (RBD) developed before the other core features in men and women. Men were more likely to have RBD and were diagnosed with probable DLB earlier than women. Visual hallucinations developed after the other core features in men, but in women, they appeared earlier and concurrently with fluctuations and parkinsonism. Women were older and more cognitively impaired at first visit, were less likely to have RBD, more likely to be diagnosed with probable DLB later than men, and more likely to have neocortical tangles. DISCUSSION: An earlier latency to probable DLB was associated with men, RBD, and Lewy body disease without neocortical tangles.


Subject(s)
Lewy Body Disease , Parkinsonian Disorders , REM Sleep Behavior Disorder , Female , Humans , Lewy Body Disease/pathology , Male , REM Sleep Behavior Disorder/complications , REM Sleep Behavior Disorder/diagnosis
9.
Brain ; 143(10): 3136-3150, 2020 10 01.
Article in English | MEDLINE | ID: mdl-33094327

ABSTRACT

Clinical trials with anti-tau drugs will need to target individuals at risk of accumulating tau. Our objective was to identify variables available in a research setting that predict future rates of tau PET accumulation separately among individuals who were either cognitively unimpaired or cognitively impaired. All 337 participants had: a baseline study visit with MRI, amyloid PET, and tau PET exams, at least one follow-up tau PET exam; and met clinical criteria for membership in one of two clinical diagnostic groups: cognitively unimpaired (n = 203); or cognitively impaired (n = 134, a combined group of participants with either mild cognitive impairment or dementia with Alzheimer's clinical syndrome). Our primary analyses were in these two clinical groups; however, we also evaluated subgroups dividing the unimpaired group by normal/abnormal amyloid PET and the impaired group by clinical phenotype (mild cognitive impairment, amnestic dementia, and non-amnestic dementia). Linear mixed effects models were used to estimate associations between age, sex, education, APOE genotype, amyloid and tau PET standardized uptake value ratio (SUVR), cognitive performance, cortical thickness, and white matter hyperintensity volume at baseline, and the rate of subsequent tau PET accumulation. Log-transformed tau PET SUVR was used as the response and rates were summarized as annual per cent change. A temporal lobe tau PET meta-region of interest was used. In the cognitively unimpaired group, only higher baseline amyloid PET was a significant independent predictor of higher tau accumulation rates (P < 0.001). Higher rates of tau accumulation were associated with faster rates of cognitive decline in the cognitively unimpaired subgroup with abnormal amyloid PET (P = 0.03), but among the subgroup with normal amyloid PET. In the cognitively impaired group, younger age (P = 0.02), higher baseline amyloid PET (P = 0.05), APOE ε4 (P = 0.05), and better cognitive performance (P = 0.05) were significant independent predictors of higher tau accumulation rates. Among impaired individuals, faster cognitive decline was associated with faster rates of tau accumulation (P = 0.01). While we examined many possible predictor variables, our results indicate that screening of unimpaired individuals for potential inclusion in anti-tau trials may be straightforward because the only independent predictor of high tau rates was amyloidosis. In cognitively impaired individuals, imaging and clinical variables consistent with early onset Alzheimer's disease phenotype were associated with higher rates of tau PET accumulation suggesting this may be a highly advantageous group in which to conduct proof-of-concept clinical trials that target tau-related mechanisms. The nature of the dementia phenotype (amnestic versus non-amnestic) did not affect this conclusion.


Subject(s)
Cognitive Dysfunction/diagnostic imaging , Cognitive Dysfunction/metabolism , Positron-Emission Tomography/trends , tau Proteins/metabolism , Aged , Aged, 80 and over , Cohort Studies , Female , Forecasting , Humans , Longitudinal Studies , Male , Middle Aged , Predictive Value of Tests
10.
Brain ; 142(10): 3230-3242, 2019 10 01.
Article in English | MEDLINE | ID: mdl-31501889

ABSTRACT

Large phenotypically diverse research cohorts with both amyloid and tau PET have only recently come into existence. Our objective was to determine relationships between the bivariate distribution of amyloid-ß and tau on PET and established clinical syndromes that are relevant to cognitive ageing and dementia. All individuals in this study were enrolled in the Mayo Clinic Study of Aging, a longitudinal population-based study of cognitive ageing, or the Mayo Alzheimer Disease Research Center, a longitudinal study of individuals recruited from clinical practice. We studied 1343 participants who had amyloid PET and tau PET from 2 April 2015 to 3 May 2019, and met criteria for membership in one of five clinical diagnostic groups: cognitively unimpaired, mild cognitive impairment, frontotemporal dementia, probable dementia with Lewy bodies, and Alzheimer clinical syndrome. We examined these clinical groups in relation to the bivariate distribution of amyloid and tau PET values. Individuals were grouped into amyloid (A)/tau (T) quadrants based on previously established abnormality cut points of standardized uptake value ratio 1.48 (A) and 1.33 (T). Individual participants largely fell into one of three amyloid/tau quadrants: low amyloid and low tau (A-T-), high amyloid and low tau (A+T-), or high amyloid and high tau (A+T+). Seventy per cent of cognitively unimpaired and 74% of FTD participants fell into the A-T- quadrant. Participants with mild cognitive impairment spanned the A-T- (42%), A+T- (28%), and A+T+ (27%) quadrants. Probable dementia with Lewy body participants spanned the A-T- (38%) and A+T- (44%) quadrants. Most (89%) participants with Alzheimer clinical syndrome fell into the A+T+ quadrant. These data support several conclusions. First, among 1343 participants, abnormal tau PET rarely occurred in the absence of abnormal amyloid PET, but the reverse was common. Thus, with rare exceptions, amyloidosis appears to be required for high levels of 3R/4R tau deposition. Second, abnormal amyloid PET is compatible with normal cognition but highly abnormal tau PET is not. These two conclusions support a dynamic biomarker model in which Alzheimer's disease is characterized first by the appearance of amyloidosis and later by tauopathy, with tauopathy being the proteinopathy associated with clinical symptoms. Third, bivariate amyloid and tau PET relationships differed across clinical groups and thus have a role for clarifying the aetiologies underlying neurocognitive clinical syndromes.


Subject(s)
Amyloid beta-Peptides/metabolism , Neurocognitive Disorders/diagnostic imaging , tau Proteins/metabolism , Aged , Aged, 80 and over , Aging , Alzheimer Disease/complications , Amyloid/metabolism , Amyloidosis , Biomarkers , Brain/metabolism , Cognition/physiology , Cognitive Dysfunction/complications , Female , Frontotemporal Dementia/complications , Humans , Longitudinal Studies , Male , Middle Aged , Neurocognitive Disorders/metabolism , Neurocognitive Disorders/physiopathology , Neuropsychological Tests , Positron-Emission Tomography/methods , Tauopathies/metabolism
11.
Psychosomatics ; 60(5): 488-498, 2019.
Article in English | MEDLINE | ID: mdl-30772017

ABSTRACT

BACKGROUND: Increasing numbers of patients over the age of 60 are undergoing liver transplantation. OBJECTIVE: We sought to determine whether age or clinical morbidities were associated with pre- and post-transplant executive and memory performance using the Brief Test of Adult Cognition by Telephone (BTACT). METHODS: Participants included 36 recipients with n = 20 in the older group (>60 y) and n = 16 in the younger group (≤60 years). The BTACT was administered an average of 3 months before transplant, and at follow-up post-transplant intervals of 3, 6, and 9 months. BTACT composite scores for memory and executive function with age and education norms were obtained. RESULTS: Older recipients were more likely to have hepatocellular carcinoma, a lower biological MELD score at transplant, less cellular rejection, and fewer post-operative hospital days. Older and younger recipients showed comparable pre-transplant executive and memory function and comparable post-transplant improvement. Both older and younger patients showed statistically significant improvement in executive function scores at 3 months post-transplant and maintained improvement at 6 and 9 months. Memory function improved significantly in older patients by 6 months post-transplant but did not improve significantly in the younger group. CONCLUSION: Older liver transplant recipients were more likely to have hepatocellular carcinoma and a lower biological MELD score than younger recipients, but both age groups showed comparable pre-transplant cognitive performance and post-transplant cognitive improvement. Additionally, a normed telephone test can be used to effectively screen and track executive and memory function post-transplant.


Subject(s)
Cognition Disorders/epidemiology , Executive Function/physiology , Liver Transplantation/statistics & numerical data , Memory/physiology , Postoperative Complications/epidemiology , Adult , Age Factors , Aged , Cognition Disorders/physiopathology , Female , Florida/epidemiology , Follow-Up Studies , Humans , Liver Transplantation/adverse effects , Male , Middle Aged , Neuropsychological Tests/statistics & numerical data , Postoperative Complications/physiopathology
12.
Ann Neurol ; 81(1): 58-67, 2017 Jan.
Article in English | MEDLINE | ID: mdl-27863444

ABSTRACT

OBJECTIVE: Patients with probable dementia with Lewy bodies (DLB) often have Alzheimer's disease (AD)-related pathology. Our objective was to determine the pattern of positron emission tomography (PET) tau tracer AV-1451 uptake in patients with probable DLB, compared to AD, and its relationship to ß-amyloid deposition on PET. METHODS: Consecutive patients with clinically probable DLB (n = 19) from the Mayo Clinic Alzheimer's Disease Research Center underwent magnetic resonance imaging, AV-1451, and Pittsburgh compound-B (PiB) PET examinations. Age- and sex-matched groups of AD dementia (n = 19) patients and clinically normal controls (n = 95) from an epidemiological cohort served as a comparison groups. Atlas- and voxel-based analyses were performed. RESULTS: The AD dementia group had significantly higher AV-1451 uptake than the probable DLB group, and medial temporal uptake completely distinguished AD dementia from probable DLB. Patients with probable DLB had greater AV-1451 uptake in the posterior temporoparietal and occipital cortex compared to clinically normal controls, and in probable DLB, the uptake in these regions correlated with global cortical PiB uptake (Spearman rho = 0.63; p = 0.006). INTERPRETATION: Medial temporal lobe AV-1451 uptake distinguishes AD dementia from probable DLB, which may be useful for differential diagnosis. Elevated posterior temporoparietal and occipital AV-1451 uptake in probable DLB and its association with global cortical PiB uptake suggest an atypical pattern of tau deposition in DLB. ANN NEUROL 2017;81:58-67.


Subject(s)
Alzheimer Disease/metabolism , Amyloid/metabolism , Lewy Body Disease/metabolism , tau Proteins/metabolism , Aged , Aged, 80 and over , Alzheimer Disease/diagnostic imaging , Aniline Compounds/metabolism , Carbolines/metabolism , Case-Control Studies , Cerebral Cortex/metabolism , Female , Humans , Lewy Body Disease/diagnostic imaging , Magnetic Resonance Imaging , Male , Middle Aged , Neuroimaging , Positron-Emission Tomography , Thiazoles/metabolism
13.
Mov Disord ; 33(6): 1016-1020, 2018 Jul.
Article in English | MEDLINE | ID: mdl-29756641

ABSTRACT

BACKGROUND: MAPT haplotypes are associated with PD, but their association with rapid eye movement sleep behavior disorder is unclear. OBJECTIVE: To study the role of MAPT variants in rapid eye movement sleep behavior disorder. METHODS: Two cohorts were included: (A) PD (n = 600), rapid eye movement sleep behavior disorder (n = 613) patients, and controls (n = 981); (B) dementia with Lewy bodies patients with rapid eye movement sleep behavior disorder (n = 271) and controls (n = 950). MAPT-associated variants and the entire coding sequence of MAPT were analyzed. Age-, sex-, and ethnicity-adjusted analyses were performed to examine the association between MAPT, PD, and rapid eye movement sleep behavior disorder. RESULTS: MAPT-H2 variants were associated with PD (odds ratios: 0.62-0.65; P = 0.010-0.019), but not with rapid eye movement sleep behavior disorder. In PD, the H1 haplotype odds ratio was 1.60 (95% confidence interval: 1.12-2.28; P = 0.009), and the H2 odds ratio was 0.68 (95% confidence interval: 0.48-0.96; P = 0.03). The H2/H1 haplotypes were not associated with rapid eye movement sleep behavior disorder. CONCLUSIONS: Our results confirm the protective effect of the MAPT-H2 haplotype in PD, and define its components. Furthermore, our results suggest that MAPT does not play a major role in rapid eye movement sleep behavior disorder, emphasizing different genetic background than in PD in this locus. © 2018 International Parkinson and Movement Disorder Society.


Subject(s)
Genetic Predisposition to Disease , Parkinson Disease/genetics , Polymorphism, Single Nucleotide/genetics , REM Sleep Behavior Disorder/genetics , tau Proteins/genetics , Aged , Cohort Studies , Female , Gene Frequency , Genotype , Humans , Lewy Body Disease/complications , Lewy Body Disease/genetics , Male , Middle Aged , Principal Component Analysis
14.
Alzheimers Dement ; 14(3): 330-339, 2018 03.
Article in English | MEDLINE | ID: mdl-29100980

ABSTRACT

INTRODUCTION: We sought to assess the individual and combined contribution of limbic and neocortical α-synuclein, tau, and amyloid ß (Aß) to duration of illness in dementia with Lewy bodies (DLB). METHODS: Quantitative digital pathology of limbic and neocortical α-synuclein, tau, and Aß was assessed in 49 patients with clinically probable DLB. Regression modeling examined the unique and shared contribution of each pathology to the variance of illness duration. RESULTS: Patients with diffuse Lewy body disease had more severe pathology of each type and a shorter duration of illness than individuals with transitional Lewy body disease. The three pathologies accounted for 25% of the total variance of duration of illness, with 19% accounted for by α-synuclein alone or in combination with tau and Aß. When the diffuse Lewy body disease group was examined separately, α-synuclein deposition significantly exceeded that of tau and Aß. In this model, 20% of 24% total variance in the model for duration of illness was accounted for independently by α-synuclein. DISCUSSION: In DLB, α-synuclein is an important predictor of disease duration, both independently and synergistically with tau and Aß.


Subject(s)
Amyloid beta-Peptides/metabolism , Lewy Body Disease/metabolism , Limbic System/metabolism , Neocortex/metabolism , alpha-Synuclein/metabolism , tau Proteins/metabolism , Aged , Disease Progression , Female , Humans , Lewy Body Disease/pathology , Limbic System/pathology , Male , Neocortex/pathology , Prospective Studies , Time Factors
15.
Brain ; 139(Pt 10): 2740-2750, 2016 10.
Article in English | MEDLINE | ID: mdl-27452602

ABSTRACT

Alzheimer's disease pathology frequently coexists with Lewy body disease at autopsy in patients with probable dementia with Lewy bodies. More than half of patients with probable dementia with Lewy bodies have high amyloid-ß deposition as measured with 11C-Pittsburgh compound B binding on positron emission tomography. Biomarkers of amyloid-ß deposition precede neurodegeneration on magnetic resonance imaging during the progression of Alzheimer's disease, but little is known about how amyloid-ß deposition relates to longitudinal progression of atrophy in patients with probable dementia with Lewy bodies. We investigated the associations between baseline 11C-Pittsburgh compound B binding on positron emission tomography and the longitudinal rates of grey matter atrophy in a cohort of clinically diagnosed patients with dementia with Lewy bodies (n = 20), who were consecutively recruited to the Mayo Clinic Alzheimer's Disease Research Centre. All patients underwent 11C-Pittsburgh compound B positron emission tomography and magnetic resonance imaging examinations at baseline. Follow-up magnetic resonance imaging was performed after a mean (standard deviation) interval of 2.5 (1.1) years. Regional grey matter loss was determined on three-dimensional T1-weighted magnetic resonance imaging with the tensor-based morphometry-symmetric normalization technique. Linear regression was performed between baseline 11C-Pittsburgh compound B standard unit value ratio and longitudinal change in regional grey matter volumes from an in-house modified atlas. We identified significant associations between greater baseline 11C-Pittsburgh compound B standard unit value ratio and greater grey matter loss over time in the posterior cingulate gyrus, lateral and medial temporal lobe, and occipital lobe as well as caudate and putamen nuclei, after adjusting for age (P < 0.05). Greater baseline 11C-Pittsburgh compound B standard unit value ratio was also associated with greater ventricular expansion rates (P < 0.01) and greater worsening over time in Clinical Dementia Rating Scale, sum of boxes (P = 0.02). In conclusion, in patients with probable dementia with Lewy bodies, higher amyloid-ß deposition at baseline is predictive of faster neurodegeneration in the cortex and also in the striatum. This distribution is suggestive of possible interactions among amyloid-ß, tau and α-synuclein aggregates, which needs further investigation. Furthermore, higher amyloid-ß deposition at baseline predicts a faster clinical decline over time in patients with probable dementia with Lewy bodies.


Subject(s)
Amyloid beta-Peptides/metabolism , Gray Matter/diagnostic imaging , Gray Matter/metabolism , Lewy Body Disease/diagnostic imaging , Lewy Body Disease/metabolism , Aged , Cohort Studies , Female , Follow-Up Studies , Humans , Magnetic Resonance Imaging/trends , Male , Middle Aged , Positron Emission Tomography Computed Tomography/trends
16.
Alzheimers Dement ; 13(3): 257-266, 2017 Mar.
Article in English | MEDLINE | ID: mdl-27521790

ABSTRACT

INTRODUCTION: Cerebrovascular lesions on MRI are common in Alzheimer's disease (AD) dementia, but less is known about their frequency and impact on dementia with Lewy bodies (DLB). METHODS: White-matter hyperintensities (WMHs) and infarcts on MRI were assessed in consecutive DLB (n = 81) and AD dementia (n = 240) patients and compared to age-matched and sex-matched cognitively normal subjects (CN) from a population-based cohort. RESULTS: DLB had higher WMH volume compared to CN, and WMH volume was higher in the occipital and posterior periventricular regions in DLB compared to AD. Higher WMH volume was associated with history of cardiovascular disease and diabetes but not with clinical disease severity in DLB. Frequency of infarcts in DLB was not different from CN and AD dementia. DISCUSSION: In DLB, WMH volume is higher than AD and CN and appears to be primarily associated with history of vascular disease.


Subject(s)
Alzheimer Disease/complications , Cerebrovascular Disorders/etiology , Cerebrovascular Disorders/pathology , Lewy Body Disease/complications , White Matter/pathology , Aged , Aged, 80 and over , Alzheimer Disease/diagnostic imaging , Alzheimer Disease/pathology , Brain Infarction/etiology , Case-Control Studies , Cohort Studies , Female , Humans , Lewy Body Disease/diagnostic imaging , Lewy Body Disease/pathology , Magnetic Resonance Imaging , Male , Middle Aged , White Matter/diagnostic imaging
17.
Hum Mol Genet ; 23(23): 6139-46, 2014 Dec 01.
Article in English | MEDLINE | ID: mdl-24973356

ABSTRACT

Clinical and neuropathological similarities between dementia with Lewy bodies (DLB), Parkinson's and Alzheimer's diseases (PD and AD, respectively) suggest that these disorders may share etiology. To test this hypothesis, we have performed an association study of 54 genomic regions, previously implicated in PD or AD, in a large cohort of DLB cases and controls. The cohort comprised 788 DLB cases and 2624 controls. To minimize the issue of potential misdiagnosis, we have also performed the analysis including only neuropathologically proven DLB cases (667 cases). The results show that the APOE is a strong genetic risk factor for DLB, confirming previous findings, and that the SNCA and SCARB2 loci are also associated after a study-wise Bonferroni correction, although these have a different association profile than the associations reported for the same loci in PD. We have previously shown that the p.N370S variant in GBA is associated with DLB, which, together with the findings at the SCARB2 locus, suggests a role for lysosomal dysfunction in this disease. These results indicate that DLB has a unique genetic risk profile when compared with the two most common neurodegenerative diseases and that the lysosome may play an important role in the etiology of this disorder. We make all these data available.


Subject(s)
Apolipoproteins E/genetics , Lewy Body Disease/etiology , Lysosomal Membrane Proteins/genetics , Lysosomes/pathology , Receptors, Scavenger/genetics , alpha-Synuclein/genetics , Alzheimer Disease/etiology , Alzheimer Disease/genetics , Alzheimer Disease/pathology , Case-Control Studies , Cohort Studies , Female , Genetic Association Studies , Genetic Loci , Humans , Lewy Body Disease/genetics , Lewy Body Disease/pathology , Male , Parkinson Disease/etiology , Parkinson Disease/genetics , Parkinson Disease/pathology , Risk Factors
18.
Mov Disord ; 31(7): 989-94, 2016 07.
Article in English | MEDLINE | ID: mdl-27214825

ABSTRACT

BACKGROUND: The clinical course of dementia with Lewy bodies patients is heterogeneous. The ability to more accurately prognosticate survival is important. OBJECTIVE: The objective of this study was to investigate hippocampal volume as a predictor of survival in dementia with Lewy bodies patients. METHODS: Survival analysis for time from onset of cognitive symptoms to death was carried out using Cox proportional hazards models. Given their age and total intracranial volume, patients were dichotomized into low/medium (0%-66.7%) and high (66. 7%-100%) hippocampal volume categories. The models using these categories to predict survival were adjusted for field strength, APOE ε4 status, and estimated onset age of cognitive problems. RESULTS: We investigated 167 consecutive patients with dementia with Lewy bodies. The median age at MRI was 72 years (interquartile range 67-76), and 80% were male. The median time from estimated first cognitive symptom to death was 7.4 years (interquartile range:5.7-10.2). Lower hippocampal volumes were significantly associated with higher risk of death (hazard ratio 1.28; 95% confidence interval 1.04-1.58; P = .024). The predicted median survival for participants with onset of cognitive symptoms at age 68 was 10.63 years (95% confidence interval 8.66-14.54) for APOE ε4 negative, high hippocampal volume participants; 8.89 years (95% confidence interval 7.56-12.36) for APOE ε4 positive, high hippocampal volume participants; 8.10 years (95% confidence interval 7.34-11.08) for APOE ε4 negative, low/medium hippocampal volume participants; and 7.38 (95% confidence interval 6.74-9.29) years for APOE ε4 positive, low/medium hippocampal volume participants. CONCLUSIONS: Among patients with clinically diagnosed dementia with Lewy bodies, those with neuroimaging evidence of hippocampal atrophy have shorter survival times. © 2016 International Parkinson and Movement Disorder Society.


Subject(s)
Hippocampus/pathology , Lewy Body Disease/mortality , Lewy Body Disease/pathology , Lewy Body Disease/physiopathology , Aged , Female , Hippocampus/diagnostic imaging , Humans , Lewy Body Disease/diagnostic imaging , Magnetic Resonance Imaging , Male , Survival Analysis
19.
Mov Disord ; 31(11): 1619-1622, 2016 11.
Article in English | MEDLINE | ID: mdl-27492190

ABSTRACT

As members of the Lewy Body Dementia Association Scientific Advisory Council, we aim to address some of the issues raised in the article titled "Time to Redefine PD? Introductory Statement of the MDS Task Force on the Definition of Parkinson's Disease." In particular, we suggest that the 1-year rule distinguishing Parkinson's disease dementia from dementia with Lewy bodies is worth maintaining because it serves an important purpose in clinical practice and clinical and basic science research and when helping the lay community understand the complexity of these different clinical phenotypes. Furthermore, we believe that adding an additional diagnostic label, "PD (dementia with Lewy bodies subtype)," will confuse rather than clarify the distinction between dementia with Lewy bodies and PD or PD dementia, and will not improve management or expedite therapeutic development. We present arguments supporting our contentions. © 2016 The Authors. Movement Disorders published by Wiley Periodicals, Inc. on behalf of International Parkinson and Movement Disorder Society.


Subject(s)
Dementia , Lewy Body Disease , Parkinson Disease , Advisory Committees , Humans , Phenotype
20.
Alzheimers Dement ; 12(12): 1297-1304, 2016 Dec.
Article in English | MEDLINE | ID: mdl-27287057

ABSTRACT

INTRODUCTION: The MAPT H1 haplotype has been associated with several neurodegenerative diseases. We were interested in exploring the role of MAPT haplotypic variation in risk of dementia with Lewy bodies (DLB). METHOD: We genotyped six MAPT haplotype tagging SNPs and screened 431 clinical DLB cases, 347 pathologically defined high-likelihood DLB cases, and 1049 controls. RESULT: We performed haplotypic association tests and detected an association with the protective H2 haplotype in our combined series (odds ratio [OR] = 0.75). We fine-mapped the locus and identified a relatively rare haplotype, H1G, that is associated with an increased risk of DLB (OR = 3.30, P = .0017). This association was replicated in our pathologically defined series (OR = 2.26, P = .035). DISCUSSION: These results support a role for H1 and specifically H1G in susceptibility to DLB. However, the exact functional variant at the locus is still unknown, and additional studies are warranted to fully explain genetic risk of DLB at the MAPT locus.


Subject(s)
Genetic Association Studies , Haplotypes/genetics , Lewy Body Disease/genetics , tau Proteins/genetics , Brain/metabolism , Genetic Predisposition to Disease , Genotype , Humans , Polymorphism, Single Nucleotide
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