OBJECTIVE:Subjective cognitive complaints (SCC) can precede cognitive decline and are associated with demographic, exposure, lifestyle, and psychological factors. Prevalences of SCC and their correlates in individuals with repetitive head impacts (RHI) are poorly understood. This study characterized SCC in former elite American football players by frequency, mood and behavioral correlates, concordance with informant reports, and associations with neuropsychological test performance, cerebrospinal fluid (CSF), and magnetic resonance imaging (MRI) markers of neurodegeneration. METHOD:Former American football players (n = 180) completed measures of global and domain-specific SCC, neuropsychiatric symptom questionnaires, neuropsychological testing, lumbar puncture, and MRI. Elastic net regression evaluated the relative importance of potential SCC correlates. Intraclass correlation coefficients measured concordance between self and informant reports. Multiple linear regressions tested associations between SCC and verbal memory and executive functioning scores. CSF Aβ1-42, p-tau181, t-tau, neurofilament light (NfL), hippocampal volume, and regional cortical thickness were examined for their potential associations with SCC. RESULTS:Rates of SCC ranged from 43 to 77% depending on the domain. Symptoms of depression, impulsivity, and anxiety were strongly associated with SCC. Self- and informant-reported SCC showed moderate inter-rater agreement. Adjusting for age, race, education, APOE ϵ4 carrier status, and depressive symptoms, SCC were associated with lower objective verbal memory and executive functioning performance. SCC were associated with lower parahippocampal cortical thickness but not with hippocampal volume or any of the measured CSF tests. CONCLUSIONS:SCC are strongly associated with neuropsychiatric factors in former American football players. SCC may also be a marker of cognitive decline and neurodegeneration.
INTRODUCTION:Chronic traumatic encephalopathy (CTE) is a tauopathy linked to repetitive head impacts. Factors influencing brain regional susceptibility to tau deposition and spreading remain unclear. METHODS:We used three datasets: [18F]flortaucipir positron emission tomography (PET) in 157 former professional American football players and 53 controls (DIAGNOSE CTE); cortical myelin water fractions (MWF) in 50 healthy individuals (Myelin Water Atlas); and white matter (WM) tract MWF and functional connectivity (FC) in 100 healthy individuals (Human Connectome Project). We tested associations between tau-PET uptake and covariance in football players and typical cortical gray matter (GM) MWF, WM tract MWF, and FC. RESULTS:Cortical regions with lower typical GM MWF showed higher tau-PET uptake (β = -0.399, p = 0.001). WM tracts with lower typical MWF were associated with higher tau-PET covariance (β = -0.238, p < 0.001). Higher typical FC was associated with higher tau-PET covariance (β = 0.447, p < 0.001). DISCUSSION:In former football players at risk for CTE, regional susceptibility to tau deposition may be driven by low myelin and high FC.
INTRODUCTION:Repetitive head impacts (RHIs) have been linked to later life neurodegeneration, yet the in vivo structural correlates of cumulative biomechanical loading remain unclear. We examined whether regional ventricular morphology in former American football players reflects exposure burden and traumatic encephalopathy syndrome (TES) classification. METHODS:Participants included 170 male former football players and 54 age-matched asymptomatic male controls from the Diagnostics, Imaging, and Genetics Network for the Objective Study and Evaluation of Chronic Traumatic Encephalopathy Research Project. Subject-specific manual segmentation quantified lateral ventricle, inferior horn, third ventricle, and fourth ventricle volumes. Group and exposure associations were tested using generalized least squares models. RESULTS:Former players showed larger left inferior lateral ventricle volume than controls, with the largest effects among professional players. Greater cumulative linear and rotational acceleration exposure was associated with enlargement across lateral ventricular and inferior horn regions. DISCUSSION:Regional ventricular enlargement may represent an in vivo marker of cumulative biomechanical loading after RHI exposure.
Objective To investigate sex differences in Alzheimer's disease (AD) related pathology among autopsy-confirmed Parkinson's disease (PD) cases. Background AD and PD frequently co-occur in older adults, yet the influence of sex on AD pathology in the context of PD remains unexplored. Methods All subjects were enrolled in the Arizona Study of Aging and Neurodegenerative Disorders (AZSAND) and Brain and Body Donation Program (BBDP) and had annual standardized research clinical assessments by neuropsychologists, subspecialty behavioral and movement disorders neurologists, as well as comprehensive neuropathological examinations after death. Results Among 230 autopsy-confirmed PD cases, females exhibited greater amyloid plaque pathology burden than males, regardless of a co-occurring AD diagnosis. Specifically, females with PD had significantly higher mean cortical total plaque scores (mean 6.5/15 vs. 4.9/15, p = 0.045) and greater CERAD neuritic plaque density (mean 1.7/3 vs. 1.3/3, p = 0.035). Females were also more likely to have a higher cortical plaque burden (plaque total ≥ 5: 56.8% vs. 39.7%, p = 0.015). In multivariable logistic regression models, female subjects showed greater than twice the odds of having an amyloid plaque burden ≥5 compared to males (OR = 2.18; 95% CI = 1.17–4.06; p = 0.014), when controlling for ApoE ε4 status, Lewy body density score, and age at death. Conclusions Female sex is associated with increased amyloid plaque pathology in PD, independent of ApoE ε4 status. These findings highlight a sex-specific vulnerability to AD pathology in PD patients and support the need for sex-informed approaches to reseach in mixed neurodegenerative disease.
BACKGROUND AND OBJECTIVES:Using RT-QuIC seeding assays determine the presence of pathogenic alpha-synuclein (aSyn) aggregates in the submandibular gland (SMG), skin, and CSF from autopsy-confirmed cases of incidental Lewy body disease (ILBD), Parkinson disease (PD), and controls. METHODS:Submandibular gland, skin, and CSF samples from autopsied cases in the Arizona Study of Aging and Neurodegenerative Disorders (AZSAND) were assayed using RT-QuIC methods. Correlations with the Unified Staging System for Lewy Body Disorders (USSLB) was performed. RESULTS:A total of 19 controls, 40 ILBD, and 15 PD cases were studied. While aSyn seeding assays were positive in all 3 tissues from ILBD cases, the sensitivity was much lower in the SMG (13/37, 35.1%) and skin (6/16, 37.5%) than in CSF (25/33, 75.8%). In PD sensitivity was good in all tissues: SMG (7/8, 87.5%), skin (7/8, 87.5%), and CSF (10/10, 100%), as was specificity in CSF (9/12, 75%), skin (8/9, 88.9%), and SMG (7/9, 77.8%). USSLB stage correlated with aSyn SAA positivity in all 3 tissues with CSF most sensitive to stages I and II (IIa and IIb) cases. In the 20 cases that had all 3 tissues tested only 2 were positive in the SMG but not CSF and one in skin but not CSF. There were 6 ILBD cases that had positive CSF but not SMG or skin, and one of these ILBD cases was USSLB stage I (olfactory bulb only). DISCUSSION:In this small study of autopsy-confirmed ILBD, aSyn seeding assays had moderately high sensitivity (75.8%) in the CSF but not in skin or SMG. In PD, the skin, SMG, and CSF showed high sensitivity, with specificity being similar in all tissues, although sample sizes were small. These results, although preliminary, suggest that detecting aSyn using seeding assays of CSF, but not the skin or SMG, may be valuable for identifying individuals with prodromal Lewy body disease. This is especially true for ILBD cases that often had Lewy bodies in the olfactory bulb only (USSLB Stage I) or in brainstem regions (Stage IIa), suggesting that detecting these cases may require CSF and not biopsies of the skin or SMG.
Skin biopsies analyzed with α-synuclein seed amplification assays (SAAs) are a simple way to clinically interrogate the presence of α-synuclein aggregates. We determined the accuracy of skin biopsy SAA in predicting the clinical diagnoses of Parkinson disease (PD), PD with dementia (PDD) and dementia with Lewy bodies (DLB). Blinded SAAs were performed in 3 independent laboratories. Subjects diagnosed with PD, PDD and DLB were analyzed together as group 1, clinically unaffected subjects as group 2 and those with risk factors for LBD as group 3. Punch biopsies were taken from the posterior neck and analyzed by the 3 labs in 6 separate SAAs. Pairwise agreement between labs and assays ranged from excellent (kappa 0.82) to moderate (kappa 0.40-0.68). Sensitivity across assays ranged between 50.0% and 61.3%; specificity ranged between 68.6% and 100%. Comparisons of group 1 vs group 2 produced the greatest specificities, between 77.3% and 100%. In 17 cases that subsequently came to autopsy, 93% of SAAs were positive in those at the neocortical LBD stage but in only <10% of those at lower stages. Skin biopsy α-synuclein SAA may be useful as a diagnostic and progression biomarker in Lewy body dementia clinical trials.
OBJECTIVE:Positive α-synuclein seed amplification assay (SAA) is a biomarker found in most people with Parkinson's disease (PD). We explored if free-water (FW) imaging detects microstructural differences in the brains of patients with early PD with SAA+ or SAA- status. METHODS:We studied patients with PD with baseline diffusion imaging and α-synuclein SAA data from the Parkinson's Progression Markers Initiative (PPMI). We compared FW, FW corrected fractional anisotropy (FAT), and clinical characteristics between SAA+ and SAA- groups. We also applied the Automated Imaging Differentiation for Parkinsonism (AIDP) at baseline to classify PD versus atypical parkinsonism, stratified by SAA status. RESULTS:Among 462 participants (41 SAA- and 421 SAA+), individuals with SAA+ had hyposmia and shorter motor symptom duration before baseline magnetic resonance imaging (MRI). AIDP identified PD in 92.4% (n = 427, 91.6% had SAA+) and classified 7.6% as atypical parkinsonism (n = 35, 85.7% had SAA+). At baseline, SAA+ individuals had lower FW in the superior cerebellar peduncle, compared to SAA- (pFDR < 0.05). No significant differences in FAT were found between groups. INTERPRETATION:Positive α-synuclein SAA was associated with focal microstructural differences but did not distinguish broader diffusion MRI (dMRI) changes across FW and FAT metrics. These findings indicate that molecular confirmation of synuclein aggregation (via SAA) provides limited stratification of neurodegeneration detected by FW imaging in early PD. ANN NEUROL 2026;100:295-304.
Importance:In vivo biomarkers for detecting neuropathologies from repetitive head impacts (RHI), including chronic traumatic encephalopathy (CTE), are needed. Objective:To evaluate the utility of plasma phosphorylated tau 217 (p-tau217), assess its performance as a beta-amyloid (Aβ) biomarker in participants with RHI exposure at risk for CTE, and explore concordance with CTE neuropathology in a postmortem subsample. Design, Setting, and Participants:This longitudinal, multicenter, case-control study used data from the Diagnostics, Imaging, and Genetics Network for the Objective Study and Evaluation of CTE (DIAGNOSE CTE) Research Project, collected from September 2016 to October 2023. Participants were former American football players (case participants) and asymptomatic men unexposed to RHI (control participants). A subsample had available neuropathologic data. Exposures:RHI, traumatic encephalopathy syndrome (TES) diagnoses, and levels of CTE certainty. Main Outcomes and Measures:Plasma p-tau217 (classified as positive [≥0.63 pg/mL], intermediate [0.40-0.62 pg/mL], and negative [<0.40 pg/mL]), Aβ-positron emission tomography (PET; 18F-florbetapir; with Aβ-positive defined as a standardized uptake value ratio [SUVR] ≥1.10), and tau-PET (18F-flortaucipir). TES diagnoses were assigned by multidisciplinary consensus conference. Analyses of postmortem brains controlled for age, race, and APOE ε4 status. Results:Among 231 participants (mean [SD] age, 57.75 [8.25] years), 177 were former football players (117 professional and 60 college) and 54 were unexposed participants. Former football players had higher baseline mean (SD) p-tau217 concentrations than unexposed participants (0.35 [0.26] pg/mL vs 0.27 [0.14] pg/mL; P = .008), although this was driven by a higher proportion of Aβ-PET-positive participants among former players. Plasma p-tau217 increased over time across the sample (B = 0.207 [95% CI, 0.117-0.298]; P < .001), with no significant time × exposure group interactions. Among football players, p-tau217 showed no time × group interactions with TES diagnosis, TES-CTE certainty, or RHI metrics. Higher p-tau217 concentration correlated with higher global Aβ-PET SUVR (B = 0.058 [95% CI, 0.053-3.501; P = .01), with a few discordant cases (5 participants were p-tau217-negative and Aβ-PET-positive; 7 participants were p-tau217-positive and Aβ-PET-negative). P-tau217 had similar areas under the curve for projecting Aβ-PET positivity as cerebrospinal fluid (CSF) p-tau181/Aβ42 and CSF Aβ40/42 measures (p-tau217: AUC, 0.88 [95% CI, 0.80-0.96]; CSF p-tau181/Aβ42: AUC, 0.89 [95% CI, 0.79-1.00]; CSF Aβ40/42: AUC, 0.85 [95% CI, 0.72-0.98]). Among 9 brain donors, 6 had CTE (stages II-IV; none with Alzheimer disease). Seven had negative or intermediate p-tau217, concordant with Aβ-PET. Two p-tau217 outliers with stage III CTE had normal concentrations upon additional testing. Conclusions and Relevance:The findings of this study suggest that plasma p-tau217 concentration is unlikely to be useful for the detection of CTE, but it does show utility for ruling out Aβ pathology in participants at risk for CTE.
Background:Traumatic encephalopathy syndrome (TES) is a clinical research construct used to identify individuals at risk for chronic traumatic encephalopathy (CTE) following exposure to repetitive head impacts (RHI). Adjudication of TES relies on clinical features such as progressive cognitive impairment and neurobehavioral dysregulation. Blood-based biomarkers and structural neuroimaging abnormalities have been associated with TES but are not part of the criteria. This study evaluated whether TES identification was associated with the combined contribution of cognitive performance, blood biomarkers, and structural neuroimaging measures across two well-characterized cohorts. Methods:Participants included 158 professional fighters from the Professional Athletes Brain Health Study and 149 former American football players from The DIAGNOSE CTE Research Project. Three indices were constructed representing complementary domains: a cognitive index reflecting cohort-specific cognitive features, a blood biomarker index including plasma neurofilament light chain, glial fibrillary acidic protein, total tau, tau phosphorylated at amino acid 231, and APOE-ε4 carrier status, and an imaging index comprising volumetric MRI measures of subcortical structures, ventricles, and corpus callosum subregions. Grouped weighted quantile sum regression models were estimated within each cohort to evaluate associations between these indices and TES while adjusting for age, race, competition status, and RHI exposure. Results:Multidomain models demonstrated improved model performance compared with single-domain models in both cohorts (PABHS: AUC=0.91, PPV=0.80; DIAGNOSE CTE: AUC=0.84, PPV=0.85). Biomarker and imaging indices contributed additional information across cohorts, although imaging contributions were more prominent in fighters whereas blood biomarker associations were stronger in football players. Conclusion:TES in RHI-exposed athletes was associated with a convergent clinicobiological profile observed across two independent cohorts with distinct exposure patterns. These findings support multidomain analytic frameworks for evaluating correlated biological signals in RHI-exposed populations and may inform future studies of TES and CTE.
BACKGROUND:Cumulative head trauma, encompassing repetitive head impacts (RHI) and traumatic brain injury (TBI), has been associated with later-life neurodegenerative disease. Studies on parkinsonism/Parkinson's disease (PD) have evaluated RHI and TBI in isolation, yielding mixed results. Cumulative head trauma may better predict PD risk. OBJECTIVE:To examine independent and cumulative effects of RHI through soccer participation and TBI history on PD diagnosis and age at diagnosis. METHODS:We used a cross-sectional cohort design with data from the Fox Insight study. Participants completed self-report questionnaires on PD diagnosis, TBI (no TBI, TBI with loss of consciousness [LOC], TBI without LOC), and sport participation. Multivariable logistic regressions examined the effects of soccer, TBI group, and their interaction on PD diagnosis. Cox proportional hazards examined associations with time to PD diagnosis. Covariates included age, sex, race, education, income, body mass index, heart disease/diabetes, and family PD history. RESULTS:Among 1231 participants (mean[SD] age = 66.12[10.60]), 278 played soccer (953 non-contact and collision sport [CCS] athletes). Participants reported no TBI (390[33%]), TBI without LOC (495[43%]), or TBI with LOC (258[23%]). Overall, 768(62%) reported a PD diagnosis (mean[SD] age at diagnosis = 59.02[9.86]). A significant soccer × TBI interaction indicated that soccer players with TBI with LOC had 2.6× higher odds of PD compared to non-CCS athletes without TBI (OR [95% CI] = 2.600[1.085-6.305], P = 0.033). Former soccer players with TBI with LOC had a 15.6% higher hazard of early PD diagnosis (HR = 1.469, P = 0.027) compared to non-CCS athletes with no TBI. CONCLUSION:Cumulative head trauma (RHI + TBI) increased PD risk and lowered age at onset. © 2026 The Author(s). Movement Disorders published by Wiley Periodicals LLC on behalf of International Parkinson and Movement Disorder Society.
BACKGROUND:Cervical dystonia (CD) motor severity is typically quantified with the Toronto Western Spasmodic Torticollis Rating Scale (TWSTRS). An expanded version of the Motor Severity section of the TWSTRS ("TWSTRS-Delphi") has been previously evaluated for its clinimetric properties but not for inter- and intrarater reliability. OBJECTIVE:In this study we quantified inter- and intrarater reliability of the Motor Severity section of the TWSTRS-Delphi for CD. METHODS:Ten raters familiar with the TWSTRS-Delphi and ten raters unfamiliar with it independently scored standardized videos from 90 patients with CD. We computed one-way random intraclass correlation coefficient (ICC, absolute agreement) for total and item scores. We repeated assessments and calculations with a subset of raters to assess intrarater reliability. RESULTS:Interrater reliability for the Total score was good for Familiar raters (ICC = 0.697) and fair for Unfamiliar raters (ICC = 0.566). Most individual items achieved fair-excellent interrater agreement in both groups (Familiar 0.415-0.763; Unfamiliar 0.416-0.769). Sagittal Shift, Duration, and Sensory Tricks showed poor agreement. Intrarater reliability was fair-excellent for most items in both groups (Familiar 0.494-0.927; Unfamiliar 0.413-0.877), but poor for Sagittal Shift and Duration among Familiar raters. CONCLUSIONS:The TWSTRS-Delphi yields reproducible Total and item scores across movement disorder raters. The data pinpoint Sagittal Shift, Duration, and Sensory Tricks as the principal sources of between-rater variability, defining immediate priorities for scale modification and focused training.
Importance:Decline in olfactory function may be used as a predictor of cognitive decline, to enhance early detection models, improve risk stratification, and enable early intervention. Objective:To assess the longitudinal association between olfactory decline, cognitive decline, and postmortem neuropathology. Design setting and participants:Retrospective longitudinal analysis with clinicopathological correlations of a prospective population-based cohort study using data from the Arizona Study of Aging and Neurodegenerative Disorders (AZSAND) and its Brain and Body Donation Program. Participants included cognitively unimpaired individuals without parkinsonism that converted to mild cognitive impairment (MCI) and/or dementia or remained cognitively stable. Main Outcomes and Measures:longitudinal change in olfaction, neuropsychiatric symptoms, motor function and memory, conversion to MCI/dementia, postmortem neuropathology. Results:Over a mean follow-up period of 7.7 ± 5.4 years, out of 922 participants who were cognitively unimpaired at the first cognitive conference, 643 remained cognitively unimpaired, 279 converted to MCI, and 82 developed dementia. Of these, 633 individuals had at least 2 olfactory tests.Converters showed reduced olfactory function (t=-12.6, p <0.0001), faster progression in neuropsychiatric symptom burden (t=3.42, p < 0.001), and faster decline in memory (t= -7.33, p <0.0001) prior to conversion while no significant differences were observed in motor scores between converters and non-converters. Using ROC analysis, olfactory decline, increased neuropsychiatric symptom burden, as well as motor and memory decline predicted conversion to MCI with a consistent accuracy of ~ 70% up to 5 years before conversion, while UPSIT alone had an accuracy of ~ 60%. Longitudinal decline in olfaction was associated with a higher burden of a-synuclein (t= -8.21, p <0.0005), tau tangle (t= -2.66, p < 0.01) and amyloid plaque burden (t= -2.85, p < 0.005) and a faster decline over time was associated with a higher burden of tau (t=5.66, p<0.0001). Conclusions and Relevance:A reduction in olfactory identification ability is observed up to a decade prior to conversion to MCI and is associated with underlying burden of neuropathology markers, underscoring the value of incorporating olfactory testing in cognitively unimpaired individuals to identify those at-risk of future cognitive decline.
Genome-wide association studies (GWAS) have linked more than a hundred non-coding genomic loci to Parkinson's disease (PD) risk. Deciphering their functional impact on gene regulation requires cell type-aware modeling approaches to assess the effects of sequence variation on enhancer function and target gene expression. To address this challenge, we generated a comprehensive matched dataset from 190 human donors (115 controls and 75 PD), comprising long-read whole-genome sequencing alongside single nucleus multiome atlases (snATAC-seq and snRNA-seq for 3.1 and 1.1 million nuclei respectively) of the anterior cingulate cortex and substantia nigra. By integrating chromatin accessibility quantitative trait loci (caQTL), DNA methylation QTL (meQTL), and allele-specific chromatin accessibility (ASCA), we identified 53,841 high-confidence cis-acting genetic variants that modulate cell type-specific enhancer accessibility in one or both brain regions. We further demonstrate that sequence-to-function models can accurately predict the impact of these variants directly from the genomic sequence. Novel explainability approaches allowed stratifying these variants according to their regulatory function, with the majority disrupting specific transcription factor binding sites in a cell type specific manner. Integrating these "enhancer variants" (EV) with eQTL mapping and gene locus modeling linked a subset of EVs to their target genes. Finally, we applied these models to prioritize regulatory variants at known PD GWAS loci, bypassing statistical limitations in rare disease-relevant populations like dopaminergic neurons. All together, we establish a unique resource and new sequence modeling strategies to interpret functional non-coding variation in the human brain.
Braak and others have proposed that Lewy body pathology (LBP) in Parkinson's disease (PD) may arise not only in the brain but alternatively from an initial site in the gastrointestinal (GI) tract with subsequent passage to the central nervous system CNS through the vagus nerve or other routes. We tested this hypothesis by using both immunohistochemistry (IHC) and RT QuIC a form of alpha synuclein seed amplification assay (SAA) to detect alpha synuclein LBP in samples from selected brain regions and 10 GI tract sites taken from autopsies of 50 PD subjects and 128 elderly subjects without parkinsonism or dementia including 34 with IHC identified CNS incidental Lewy body disease (ILBD) and 94 with no Lewy body IHC pathology detected (NLB). A positive SAA or IHC result was restricted to the GI tract in only 2 subjects while LBP by either SAA or IHC was restricted to the brain in 11 subjects. To fairly compare GI-only with brain-only synucleinopathy, however, we would have to do SAA on brain samples from all ILBD and NLB cases in at least 4 critical brain regions: olfactory bulb, medulla, pons, and amygdala. Further SAA of brain regions is estimated, based on the proportional results to date, to potentially identify 21 additional brain-only LBP subjects, for a total of 32, if it were done on all of the NLB subjects. From this brain-only LBP is estimated to be 16 times more common than GI-only LBP. To assess the clinical impact of SAA-positive GI sites we found that the number of positive sites per subject is significantly correlated with UPDRS motor score and SCOPA-AUT GI related scores including those for salivation, straining, constipation, and bowel movement.
BACKGROUND AND OBJECTIVES:The link between repetitive head impact (RHI) exposure, later-life cognitive decline, and neurobehavioral dysregulation (NBD) is not well understood. Recent work has implicated inflammation and limbic dysfunction as relevant RHI correlates. Our goal was to integrate plasma and CSF inflammatory biomarkers, structural brain imaging, and clinical measures in former elite American football players to better understand reasons for RHI-related cognitive and neurobehavioral changes. METHODS:Participants were from the Diagnostics, Imaging, and Genetics Network for the Objective Study and Evaluation of Chronic Traumatic Encephalopathy Research Project, which recruited male former college/professional football players with RHI and asymptomatic unexposed (UE) controls with no history of contact sports, military combat, or traumatic brain injury/concussion. Our study focused on plasma/CSF inflammatory biomarkers (interleukin [IL]-6, tumor necrosis factor [TNF]-α, glial fibrillary acidic protein), limbic white matter (WM) microstructure (diffusion tensor imaging: fractional anisotropy [FA], mean diffusivity [MD]), and clinical measures (memory, executive function, NBD). Hierarchical linear regressions assessed change in variance explained (ΔR2) among inflammation, WM, and clinical outcomes in former football players. Post hoc analyses tested whether associations differed by group (football vs UE; group interactions) or were stronger in football players considered at highest risk of CTE. RESULTS:Our sample included 223 men (n = 170 football players: age 57.2 ± 8.1 years, 33% non-Hispanic/Black; n = 53 UE participants: age 59.4 ± 8.6 years, 34% non-Hispanic/Black). In football players, higher inflammation was associated with lower limbic FA (plasma IL-6: ΔR2 = 0.03 [0.001-0.09], p = 0.03; CSF IL-6: ΔR2 = 0.03 [-0.01 to 0.11], p = 0.03; plasma TNF-α: ΔR2 = 0.05 [0.01-0.11], p = 0.003) and higher limbic MD (CSF IL-6: ΔR2 = 0.06 [0.007-0.15], p = 0.01). Inflammation was more strongly related to limbic WM microstructure in football players than in UE participants. Worse WM microstructure was associated with worse memory in football players (FA: ΔR2 = 0.05 [0.003-0.14], p = 0.007; MD: ΔR2 = 0.07, p = 0.003 [0.008-0.16]). Most of the observed associations were stronger in the CTE probable subgroup. There were no direct associations between plasma or CSF markers of inflammation and cognition. DISCUSSION:In former elite football players, elevated plasma and CSF inflammatory markers were associated with poorer limbic WM microstructure, which in turn related to worse cognition. Given the limbic system's role in cognition and behavior, inflammation may be a modifiable target for RHI-related neurodegeneration. Limitations include the cross-sectional design and limited generalizability to other contact sports, lower levels of play, female athletes, or other RHI sources.
Repetitive head impacts sustained during American football have been associated with neuropathological changes such as white matter shear injuries. However, the impact of specific factors, such as age of first exposure and cumulative head impact burden, on white matter integrity remains unclear. This study investigated in vivo white matter microstructural changes using diffusion tensor imaging and tract-based spatial statistics in 165 male former American football players (mean age 57.3 years, range 45-74) and 52 unexposed asymptomatic male controls (mean age 59.4 years, range 45-74) in the DIAGNOSE CTE Research Project. Compared to controls, former football players exhibited significantly higher fractional anisotropy (FA) in 1.97% of the white matter skeleton (1552 voxels; Cohen's d = 0.587) and higher tissue-corrected FA (FAt) in 1.48% of the white matter skeleton (1004 voxels; Cohen's d = 0.616). No significant differences were observed for mean diffusivity, axial diffusivity, radial diffusivity, or free water between football players and controls. Among football players, there were no significant differences in the white matter microstructure between players diagnosed with traumatic encephalopathy syndrome and those without the diagnosis. Lower FA was significantly associated with older age (P < 0.00001) and an earlier age of first exposure to tackle football (P < 0.01), while lower FAt was associated with greater cumulative head impact burden, specifically higher linear acceleration (P < 0.04) and rotational force (P < 0.02). This study highlights the influential role of exposure factors on white matter microstructure in former American football players, as well as the utility of diffusion tensor imaging to aid in characterizing the long-term effects of repetitive head impacts in contact sport athletes.
The development of biomarkers capable of reliably detecting pathologic forms of α-synuclein (aSyn) in vivo marks a significant step forward in the field of neurodegeneration. Over the recent years, CSF aSyn seed amplification assays (aSyn-SAA) and skin biopsy phospho-aSyn immunofluorescence (skin aSyn-IF) testing were developed that detect pathologic aSyn seeds and phosphorylated aSyn aggregates, respectively, in patients with synucleinopathies, which include Parkinson disease, dementia with Lewy bodies, and also multiple system atrophy. High rates of positivity have also been documented in research participants at a risk of developing future aSyn-related disease (e.g., hyposmia and REM sleep behavior disorder), as well as other contexts. These assays have numerous potential applications in research settings and clinical care. Here, we review the currently published evidence supporting CSF aSyn-SAA and skin aSyn-IF testing and discuss their potential research applications in clinical trials. As CSF aSyn-SAA and skin aSyn-IF testing is now commercially available to clinicians in nonresearch settings, we also explore their current utility and limitations as diagnostic tools and call for the development of a formal clinical use guidelines. We also highlight where critical knowledge gaps remain and explore emerging developments related to these assays.
BACKGROUND AND OBJECTIVES:Former American football players exposed to repetitive head impacts (RHI) are at a risk of chronic traumatic encephalopathy (CTE), but chronic pain, polypharmacy, and extensive orthopedic surgeries may also contribute to cognitive and behavioral symptoms. This study evaluated associations between chronic pain, centrally acting medications (CAMs), and orthopedic surgeries with cognitive and behavioral symptoms among former American football players. METHODS:The sample included former professional (PRO) and collegiate (COL) football players and unexposed, asymptomatic men (UE) from DIAGNOSE CTE. Number of CAMs, orthopedic surgeries, and average pain scores were compared between the groups. Among former football players, logistic regression tested associations between CAMs, average pain score, and orthopedic surgeries with diagnoses of cognitive impairment and neurobehavioral dysregulation (NBD) using traumatic encephalopathy syndrome (TES) research criteria. Linear regression tested associations between CAMs, average pain score, and orthopedic surgeries with the Montreal Cognitive Assessment (MoCA) and behavioral and mood symptom scales. Covariates included age, education, race, and total years of football. RESULTS:The study included 236 men (120 PRO, 60 COL, 56 UE). The mean ages were 59.1 (PRO), 53.5 (COL) and 59.6 (UE) years. PRO and COL used more CAMs (mean PRO = 0.76, COL = 1.14, UE = 0.14), had higher average pain scores (PRO = 4.22, COL = 3.21, UE = 1.05), and more orthopedic surgeries than the UE (mean PRO = 2.76, COL = 1.22, UE = 0.34). CAMs and average pain scores were associated with increased odds of consensus diagnosed NBD (CAMs OR = 2.15, 95% CI 1.53 to 3.26; average pain score OR = 1.55, 95% CI 1.32 to 1.85). CAMs and average pain scores were associated with increased measures of impulsivity, depression, anxiety, behavioral regulation, and aggression. CAMs and average pain scores were not associated with consensus diagnosed cognitive impairment, but CAMs were negatively associated with MoCA score (estimate = -0.47, 95% CI -0.81 to -0.13). There was no association between number of orthopedic surgeries and cognition or NBD. DISCUSSION:CAMs and chronic pain are associated with NBD and CAMs are associated with reduced MoCA scores in former American football players.
INTRODUCTION:Repetitive head impacts (RHI) from contact sports may cause a unique pattern of white matter hyperintensities (WMH) on T2-weighted fluid-attenuated inversion recovery (FLAIR) magnetic resonance imaging (MRI), termed RHI-associated WMH (RHI-WMH). These lesions are punctate, circular, and located at the gray-white matter boundary, an area vulnerable to trauma-related damage. METHODS:We investigated the association of RHI with these lesions in two aging cohorts: (1) former American football players versus asymptomatic unexposed men and (2) individuals with RHI from various contact sports versus non-RHI participants. RHI-WMH were assessed using visual ratings and a novel automated quantification pipeline. RESULTS:Individuals with RHI had greater RHI-WMH by both detection methods in both cohorts. RHI-WMH were associated with plasma neurofilament light and p-tau231, and flortaucipir positron emission tomography (PET) uptake. DISCUSSION:RHI-WMH may represent a new supportive biomarker for the detection of RHI-related neuropathologies later in life.