Parkinson's disease (PD) is a complex condition and the requirements for managing both motor and non-motor symptoms evolve during the disease course. General neurologists following up people with PD should provide information, support and lifestyle advice, such as on exercise, with support from a multidisciplinary team. Levodopa remains the most effective and well-tolerated symptomatic treatment, but dose adjustments and adjunctive dopaminergic therapies can help with motor fluctuations. Clinicians should pay close attention to non-motor symptoms, including neuropsychiatric complications such as impulse-control disorders. The evidence base for managing non-motor symptoms is evolving. Involving the patient in the multidisciplinary follow-up of PD can help in managing symptoms unlikely to respond simply to dopamine replacement, including gait problems, falls and swallowing impairment. Clinicians should be open-minded about the diagnosis during follow-up and consider referring appropriate patients to specialists for device-aided therapies.
BACKGROUND:Common and rare genetic variants in leucine-rich repeat kinase 2 (LRRK2) have been linked with sporadic and familial Parkinson's disease (PD). Recently, we discovered that common genetic variation near the LRRK2 locus determined survival in progressive supranuclear palsy (PSP). Our study aimed to explore biomarkers of LRRK2 and lysosomal dysfunction in PSP. METHODS:Immunoblotting was used to measure total LRRK2 and LRRK2-dependent Rab10 phosphorylation at the threonine 73 residue (pRab10Thr73) in neutrophil and monocyte samples from PSP and control participants. Urine samples were applied to a multiplexed assay to quantitate bis(monoacylglycerol)phosphate (BMP) species as markers of lysosomal dysfunction. Cerebrospinal fluid (CSF) samples from a wider cohort of PSP and control participants were applied to a stable isotope standards and capture by anti-peptide antibodies assay to measure total LRRK2 and pRab10Thr73 levels. LRRK2 genotypes (rs76904798 and rs2242367) and 1-year change in Progressive Supranuclear Palsy Rating Scale (PSPRS) scores were obtained. RESULTS:A total of 61 PSP and 34 control participants were included. Total urine 22:6-BMP levels were higher in PSP versus control samples (P = 0.04) and correlated with CSF total LRRK2 levels (r = 0.49, P = 0.04). There were no group-level differences in monocyte and CSF levels of total LRRK2 and pRab10Thr73. In PSP, carriers of the alternate allele (CT and TT genotypes) at the LRRK2 PD risk variant, rs76904798, had higher levels of CSF total LRRK2 versus CC genotype (P = 0.02). Baseline monocyte total LRRK2 levels predicted 1-year change in the PSPRS score (P = 0.008). CONCLUSIONS:Biochemically defined lysosomal dysfunction is evident in PSP. Genetic and biochemical stratification may identify PSP patients that would benefit from LRRK2-targeting therapies. © 2026 The Author(s). Movement Disorders published by Wiley Periodicals LLC on behalf of International Parkinson and Movement Disorder Society.
Multiple system atrophy (MSA) is a neurodegenerative condition causing parkinsonism, cerebellar ataxia and/or dysautonomia. Typical survival is between 6-10 years, but some people die before five or after 15 years. This heterogeneity complicates advanced planning and clinical trial stratification. MSA prognostication studies have shown conflicting results, possibly due to diagnostic accuracy or study size. We report results from a study of survival prognostic factors in a cohort of 555 MSA patients (including the largest post-mortem confirmed cohort to date of 254 people) gathered through the Queen Square Brain Bank and the PROSPECT-M-UK multi-centre prospective cohort study. Through PROSPECT-M-UK, 318 clinically diagnosed MSA patients (17 overlapped with the QSBB cohort) were followed up annually over 5 years. The QSBB cohort clinical data was collected through retrospective review of primary and secondary care documentation. Survival analysis was performed using counting process Cox proportionate hazards modelling, Kaplan-Meier log-rank testing and landmark survival analysis to account for guarantee-time bias. Mean onset age in the combined cohort was 58.7±9.0y with median survival of 8.25y (95% CI:7.88-8.63). 28.8% were clinically diagnosed in-life with MSA-P, 23.8% MSA-C, 40.2% mixed and the rest as non-MSA diagnoses. Later disease onset was associated with shorter survival (HR=1.04, P<0.001). The commonest cause of death was respiratory infection (67%) followed by disease related decline (20%). Median survival from indoor wheelchair use, gastrostomy insertion or development of unintelligible speech was consistently <1.5 years (95% CI upper limits<2.4 years), making these reliable late-stage disease markers. Using landmark analysis, at 3 years from onset, negative prognostic factors included recurrent falls, unintelligible speech, use of catheters and of medication for orthostatic hypotension (HR = 1.57, 3.29, 1.76, 3.29;all P<0.05). At 5 years from onset, mobility milestones including walking aid use, outdoor and indoor wheelchair use (HR = 1.70, 1.93, 2.62;all P<0.01) became significant, whilst dysautonomia milestones (catheter and orthostatic support medication use) were no longer significant. Median individual Unified Multiple System Atrophy Rating Scale (UMSARS) progression rate (n=91) was 10.27 (IQR:5.31-14.30) points/year and did not correlate with symptom duration. Higher baseline UMSARS and faster UMSARS progression were negative prognostic factors of survival from baseline review (HR=1.03 and 1.07 respectively, both P<0.001). We show that in-clinic rating scales and clinical milestone assessment can aid MSA prognostication. Importantly, prognostic factors demonstrate time-dependent variability, which may contribute to previous heterogeneity observed in smaller studies. This knowledge is important for patient care and should inform future clinical trial stratification.
The right-temporal variant of frontotemporal dementia (FTD) is well characterised. Whether it should be considered a distinct clinical entity, separate from other syndromes of FTD, remains an open question. The study addressed the issue through a retrospective comparison of clinical characteristics of patients with predominant atrophy in right or left anterior temporal lobe (R-ATL vs. L-ATL). Patients were identified from a clinical database, diagnosed with FTD, and reported to show temporal lobe atrophy on imaging. Fifty-one patients were selected in whom independent ratings of atrophy were greatest in right or left anterior temporal lobe. Presenting symptoms, cognitive and behavioural characteristics, neuropsychological findings, and diagnostic classification were recorded. Difficulty recognising people, impaired decision-making, perseverative preoccupations, disinhibition, and loss of empathy characterised the R-ATL group, in keeping with the previous reports. There was, however, overlap in cognitive and behavioural symptomatology in R-ATL and L-ATL, and sensitivity and specificity values were modest. Group differences diminished with disease progression. The most common clinical classification at first assessment in both groups was semantic dementia (SD), with other patients being classified as behavioural-variant FTD (bvFTD), FTD with amyotrophic lateral sclerosis or mixed FTD/SD. Not all patients with L-ATL met criteria for semantic variant primary progressive aphasia (svPPA). The data question the notion that R-ATL and L-ATL presentations are separate entities. We argue that a common diagnostic framework for the two is warranted, with classification being based on cognitive/behavioural characteristics rather than neuroradiological grounds.
Corticobasal degeneration (CBD) is a late onset progressive neurodegenerative condition of the 4-repeat-tauopathy-type, classically presenting with asymmetrical rigidity, dystonia and myoclonus. In the most recent diagnostic criteria, Armstrong and colleagues (2013) described four clinical phenotypes associated with this pathology, including corticobasal syndrome (CBS), through a large retrospective analysis of published cases and confirmed brain bank cases of CBD. However, predicting CBD pathology remains challenging. With the advent of disease-modifying therapies, it has become particularly important to distinguish Alzheimer's disease pathology from other underlying pathologies. We therefore combined two prospectively recruited cohorts of patients with CBS and analysed their key demographic, clinical and biomarker features. We included a separate cohort from UK brain banks who were diagnosed with CBS in life. We divided patients into three groups: CBS-Alzheimer's (CBS-AD), CBS-non-Alzheimer's (CBS-non-AD) and CBS-indeterminate (CBS-IDT) based on biomarkers and pathology, comparing clinical features, regional volumetric MRI measures and Nucleic Acid-Linked Immuno-Sandwich Assay with detection by next generation sequencing (NULISAseq) blood protein levels between groups. We performed additional analyses of pathologically verified cases. We included 397 participants, of which 57.7% were female. The mean age at symptom onset was 65.9 years. AD biomarkers and pathology permitted classifying 47 (11.8%) of the cases as CBS-AD, 134 (33.8%) as CBS-non-AD and 216 (54.4%) as CBS-IDT. Patients with CBS-AD had a younger age at onset (61.8 years vs 66.1 years, P < 0.01 and less severe motor deficits (non-significantly lower scores on MDS-UPDRS and PSPRS) and more severe cognitive impairment (non-significantly lower scores on MoCA). Patients with CBS-AD had higher rates of cortical sensory impairment (P = 0.087) and lower rates of limb dystonia (P < 0.01) and falls (P < 0.01) compared to the CBS-non-AD group. Volumetric MRI analysis revealed smaller parietal lobe volumes in CBS-AD (P = 0.01). The most common pathological diagnoses were PSP, CBD and AD. Limb dystonia was more common in people with CBD and PSP pathology (P = 0.077). Falls, impaired verbal fluency and impaired vertical saccades were confirmed as more common in PSP (P = 0.046, P = 0.040, P = 0.012, respectively). In summary, younger onset, less parkinsonism and more cognitive and cortical sensory impairment, along with reduced MRI parietal volumes point to CBS-AD, while limb dystonia, falls and worse verbal fluency relate to CBS-non-AD. Clinical, imaging and blood-biomarkers in can augment the Armstrong criteria in predicting the underlying pathology of corticobasal syndromes.
Although the corticobasal syndrome was originally most closely linked with the pathology of corticobasal degeneration, the 2013 Armstrong clinical diagnostic criteria, without the addition of aetiology-specific biomarkers, have limited positive predictive value for identifying corticobasal degeneration pathology in life. Autopsy studies demonstrate considerable pathological heterogeneity in corticobasal syndrome, with corticobasal degeneration pathology accounting for only ∼50% of clinically diagnosed individuals. Individualized disease stage and progression modelling of brain changes in corticobasal syndrome may have utility in predicting this underlying pathological heterogeneity, and in turn improve the design of clinical trials for emerging disease-modifying therapies. The aim of this study was to jointly model the phenotypic and temporal heterogeneity of corticobasal syndrome, to identify unique imaging subtypes based solely on a data-driven assessment of MRI atrophy patterns and then investigate whether these subtypes provide information on the underlying pathology. We applied Subtype and Stage Inference, a machine learning algorithm that identifies groups of individuals with distinct biomarker progression patterns, to a large cohort of 135 individuals with corticobasal syndrome (52 had a pathological or biomarker defined diagnosis) and 252 controls. The model was fit using volumetric features extracted from baseline T1-weighted MRI scans and then used to subtype and stage follow-up scans. The subtypes and stages at follow-up were used to validate the longitudinal consistency of the baseline subtype and stage assignments. We then investigated whether there were differences in associated pathology and clinical phenotype between the subtypes. Subtype and Stage Inference identified at least two distinct and longitudinally stable spatiotemporal subtypes of atrophy progression in corticobasal syndrome; four-repeat-tauopathy confirmed cases were most commonly assigned to the Subcortical subtype (83% of individuals with progressive supranuclear palsy pathology and 75% of individuals with corticobasal-degeneration pathology), whilst those with Alzheimer's pathology were most commonly assigned to the Fronto-parieto-occipital subtype (81% of individuals). Subtype assignment was stable at follow-up (98% of cases), and individuals consistently progressed to higher stages (100% stayed at the same stage or progressed), supporting the model's ability to stage progression. By jointly modelling disease stage and subtype, we provide data-driven evidence for at least two distinct and longitudinally stable spatiotemporal subtypes of atrophy in corticobasal syndrome that are associated with different underlying pathologies. In the absence of sensitive and specific biomarkers, accurately subtyping and staging individuals with corticobasal syndrome at baseline has important implications for screening on entry into clinical trials, as well as for tracking disease progression.
Introduction Progressive supranuclear palsy (PSP) is a devastating neurodegenerative disease characterised by cognitive, behavioural and motor problems. Motor symptoms are highly disabling, while cognitive and behavioural changes have a major impact on carer burden, quality of life and prognosis. Apathy and impulsivity are very common, often coexistent in PSP, and negatively predict survival. In preclinical models and other diseases, apathy and impulsivity are associated with noradrenergic deficits, which can be severe in PSP.Methods and analysis Noradrenaline for Progressive Supranuclear Palsy Syndromes trial is a randomised, double-blind, placebo-controlled, crossover design, Phase IIb clinical trial to evaluate the efficacy and safety of oral atomoxetine for the treatment of cognitive and behavioural changes in PSP. Participants receive atomoxetine 40 mg (10 mg/mL oral solution) once daily or a matched placebo solution, in random order, each for 8 weeks. An ‘informant’, who knows the patient with PSP well, is co-recruited to complete some of the trial outcome measures. Participants remain in the trial for 22 weeks after randomisation. The primary objectives are to assess (1) safety and tolerability and (2) efficacy versus placebo on challenging behaviours as reported in a subscale of the Cambridge Behavioural Inventory. Secondary and exploratory measures relate to cognition, the PSP Rating Scale, mood and potential baseline predictors of individual response to atomoxetine computed from imaging, genetic and cognitive measures at baseline.Ethics and dissemination The trial was approved by the South Central-Oxford B Research Ethics Committee (REC) and the Medicines and Healthcare products Regulatory Agency (REC reference: 20/SC/0416). Dissemination will include publication in peer-reviewed journals, presentations at academic and public conferences and engagement with patients, the public, policymakers and practitioners.Trial registration number ISRCTN99462035; DOI: https://doi.org/10.1186/ISRCTN99462035; EudraCT (European Union Drug Regulating Authorities Clinical Trials Database)/CTIS (Clinical Trial Information System) number: 2019-004472-19; IRAS (Integrated Research Application System) number: 272063; Secondary identifying numbers: CPMS (Central Portfolio Management System) 44441.
OBJECTIVE:Exenatide, a glucagon-like peptide-1 (GLP-1) receptor agonist, has neuroprotective effects in preclinical models of multiple system atrophy (MSA). We investigated these effects in a proof-of-concept clinical trial. METHODS:In this single-center, randomized, open label trial, participants with MSA were randomly assigned (1:1) to receive subcutaneous injections of exenatide 2 mg weekly for 48 weeks, or as controls, followed by a 48-week washout period. The primary outcome was the Unified Multiple System Atrophy Rating Scale (UMSARS) parts I + II combined score at 48 weeks. Objective secondary outcome measures included the numbers of participants losing ambulation; scoring ≥ 3 on UMSARS part I items for falls, speech, swallowing, as well as timed walking and measures of quality of life and cognition. RESULTS:Between September 23, 2020, and May 6, 2022, 50 participants were recruited (25 in each group). At 48 weeks, UMSARS parts I + II scores had worsened by 6.1 points (95% confidence interval [CI] = 3.0 to 9.3, SD = 6.9) in the exenatide group and by 13 3 points (95% CI = 9.2 to 17.3, SD = 9.4) in the control group, an adjusted mean difference of -7.4 points (-11.3 to -3.6, p = 0.0003). There were no statistically significant differences at either 48 or 96 weeks in the secondary outcome measures. Biomarker analysis of neurofilament light chain and cerebral spinal fluid (CSF) alpha-synuclein oligomer load, sensor-derived gait measures, and imaging findings were also similar between groups. INTERPRETATION:Exenatide was associated with positive effects on participant-reported symptoms and clinician-rated MSA severity. In contrast, none of the objective comparisons differed according to randomization. Given the open label trial design, the discrepancy between the primary outcome and the objective measures may be explicable as placebo effects/observer bias. ANN NEUROL 2025;98:991-1003.
Frontotemporal dementia (FTD) with right anterior temporal lobe (RATL) predominant atrophy is an emerging area of interest. Recent findings by the International Working Group (IWG) have identified this subtype as having a distinct clinical profile within the FTD spectrum (Ulugut et al., 2024, A&D). However, its genetic and pathological underpinnings remain unexplored in large, multicultural cohorts. Retrospective analyses encompassing clinical, genetic, pathological, and neuroimaging data from 23 IWG sites across 13 countries in Asia, Middle East, Europe, North and South America were conducted. The study included 444 patients with FTD exhibiting predominant RATL atrophy. Genetic screening was performed on 51% ( n = 225) of the cohort for at least the major frontotemporal lobar degeneration (FTLD) mutations including microtubule-associated protein tau ( MAPT ), progranulin ( GRN ), and chromosome 9 open reading frame 72 ( C9orf72 ), or dementia panels encompassing extended sets of genes. Of these, 81% were sporadic, showing negative results for the screened genes and a modified Goldman Score of ≥ 3, indicating a negative family history for dementia. The MAPT mutation was the most common genetic variant, identified in 7% of the screened cases (Figure 1). Pathological confirmation was available for 63 patients. Among the sporadic cases, transactive response DNA-binding protein 43 type C (TDP-C) pathology was most prevalent (60%, n = 32), while tau-MAPT pathology was most common in the genetic cases (38%, n = 16). Fifteen cases did not fit neatly into genetic or sporadic categories, displaying heterogeneous pathologies (Figure 2). At the initial visit, compared to genetic cases, patients with TDP-C pathology were older, and more frequently exhibited semantic deficits, with less frequent attention difficulties and executive dysfunction. No differences were observed in sex distribution, symptom duration or disease severity between genetic and sporadic TDP-C cases. However, left handedness was more common in TDP-C cases (14%) compared to genetic cases (5%). While FTD with RATL atrophy primarily appears sporadic, a significant proportion of cases exhibit genetic variants. These sporadic and genetic subtypes display distinct neuropathological features and clinical manifestations. Given the implications for therapeutic strategies, precise clinical and molecular subtyping is critical for enhancing patient management and ensuring appropriate enrollment in clinical trials.
Continuous subcutaneous apomorphine infusion (CSAI) is an important treatment for motor fluctuations in the complex phase of Parkinson's disease (PD). Several barriers to accessing CSAI exist, including perceptions of how treatment initiation should occur. The majority of published work on CSAI initiation reports inpatient admission for this treatment, but restrictions on access to inpatient hospital beds may limit availability. We review here the evidence for different approaches, including published work on outpatient/daycase or home CSAI treatment initiation. Whereas inpatient initiation allows faster titration of CSAI treatment, home initiation has been found to allow effective and safe treatment initiation and offers potential cost savings. Complication rates in all approaches appear comparable, although the overall clinical profile and comorbitidities of patients should be taken into account when deciding on the best method of initiation. A flexible approach to CSAI initiation has potential benefits to people with PD in terms of better access.
Inhibition of Return (IOR) is the phenomenon of being slower to re-attend to previously attended locations, and is thought to improve the efficiency of attention. Previous studies of dopaminergic disorders indicate that excessive or insufficient dopamine signaling in the striatum of the brain reduces IOR. However, there have been no studies of the direct effects of dopamine depletion on IOR in healthy individuals, or that have compared the effect of dopamine increases and decreases within the same population. Therefore, in the present study, we administered a selective dopamine-2 receptor agonist and antagonist to the same healthy participants (cabergoline and amisulpride, respectively) and measured IOR. We further investigated the effects of dopamine manipulation on the underlying cognitive processes of IOR using event-related potentials. Both increased and decreased striatal dopamine reduced the IOR effect relative to placebo. These results provide evidence for an ‘inverted-U’ relationship between striatal dopamine levels and IOR. This can be explained by the dopamine manipulations altering frontostriatal connections, producing extremes in attentional flexibility and stability to interfere with IOR.
Background: Common and rare genetic variants in LRRK2 have been linked with sporadic and familial Parkinson disease (PD). Recently, we discovered that common genetic variation near the LRRK2 locus determined survival in progressive supranuclear palsy (PSP). Our study aimed to explore biomarkers of LRRK2 and lysosomal dysfunction in PSP. Methods: Immunoblotting was used to measure total LRRK2 and LRRK2-dependent Rab10 phosphorylation at Threonine73 (pRab10Thr73) in neutrophil and monocyte samples from PSP and control participants. Urine samples were applied to a multiplexed assay to quantitate bis(monoacylglycerol)phosphate (BMP) species as markers of lysosomal dysfunction. CSF samples from a wider cohort of PSP and control participants were applied to a stable isotope standards and capture by anti-peptide antibodies assay to measure total LRRK2 and pRab10Thr73 levels. LRRK2 genotypes (rs76904798 and rs2242367) and 1-year change in PSP rating scale scores were obtained. Results: 61 PSP and 34 control participants were included. Total urine 22:6-BMP levels were higher in PSP vs. control samples (p=0.04) and correlated with CSF total LRRK2 levels (r=0.49, p=0.04). In PSP, carriers of the alternate allele (CT and TT genotypes) at the LRRK2 PD risk variant, rs76904798, had higher levels of CSF total LRRK2 vs. CC genotype (p=0.02). A similar but non-significant trend was observed for the LRRK2 PSP survival variant, rs2242367 (p=0.08). Baseline monocyte total LRRK2 levels predicted 1-year change in the PSP rating scale score (p=0.008). Conclusions: Biochemically defined lysosomal dysfunction is evident in PSP. Genetic and biochemical stratification may identify PSP patients that would benefit from LRRK2-targetting therapies. ### Competing Interest Statement The authors have declared no competing interest. ### Funding Statement This work was funded by CurePSP, PSP Association, the Medical Research Council, and the National Institute for Health and Care Research. ### Author Declarations I confirm all relevant ethical guidelines have been followed, and any necessary IRB and/or ethics committee approvals have been obtained. Yes The details of the IRB/oversight body that provided approval or exemption for the research described are given below: The Queen Square Research Ethics Committee gave ethical approval for this work (14/LO/1575). I confirm that all necessary patient/participant consent has been obtained and the appropriate institutional forms have been archived, and that any patient/participant/sample identifiers included were not known to anyone (e.g., hospital staff, patients or participants themselves) outside the research group so cannot be used to identify individuals. Yes I understand that all clinical trials and any other prospective interventional studies must be registered with an ICMJE-approved registry, such as ClinicalTrials.gov. I confirm that any such study reported in the manuscript has been registered and the trial registration ID is provided (note: if posting a prospective study registered retrospectively, please provide a statement in the trial ID field explaining why the study was not registered in advance). Yes I have followed all appropriate research reporting guidelines, such as any relevant EQUATOR Network research reporting checklist(s) and other pertinent material, if applicable. Yes The raw data used for analyses in this study will be considered for sharing in anonymised format by request of a qualified investigator to the corresponding author for purposes of replicating procedures and results.
Pick's disease (PiD) is a rare cause of sporadic frontotemporal dementia, neuropathologically defined by the presence of Pick bodies consisting of aggregates of 3-repeat tau. Given the genetic aetiology of PiD remains unresolved, we assembled the Pick's disease International Consortium (PIC) to identify susceptibility loci through a genome-wide association study (GWAS). A GWAS was conducted in 294 autopsy confirmed PiD cases and 1,055 controls. Lead variants were annotated using the Functional Mapping and Annotation of GWAS (FUMA) platform, followed by co-localisation analyses using the METABRAIN dataset and statistical finemapping using FINEMAP and SuSiE. After exclusion of 3 cases of MAPT mutations, no variants were associated with risk of PiD at genome-wide significance (p < 5 × 10-8). The strongest association was on chromosome 4 (4p13, lead SNP rs112161979, OR = 7.53, 95% Confidence Interval (CI) = 3.62-15.65, p = 6.37 × 10-8) followed by chromosome 11 (11p15.4, lead SNP rs66481907, OR = 2.10, 95% CI = 1.54-2.84, p = 1.83 × 10-6). rs112161979 is an intronic SNP in the KCDT8 gene, encoding a potassium channel tetramerization domain that acts as an auxiliary subunit for GABAB receptors, whilst rs66481907 is an intronic SNP in TRIM22, encoding an E3 ubiquitin-protein ligase. Our GWAS provides the first evidence of possible genetic risk for PiD that implicate the modulation of GABAB receptor signalling and inflammation, in disease pathogenesis. Replication of these findings will be important, but our results suggest that, if present, the genetic risk of PiD beyond MAPT mutations is low.
Atypical parkinsonian syndromes are distinguished from Parkinson's disease (PD) by additional neurological signs and characteristic underlying neuropathology. However, they can be diagnostically challenging, rapidly progressive and are often diagnosed late in disease course. Their different demographic features and prognoses are well studied, but the accompanying cognitive and psychiatric features may also facilitate diagnosis. Progressive supranuclear palsy (PSP) and corticobasal syndrome (CBS) may cause cognitive and behavioural manifestations that overlap with frontotemporal dementia, including non-fluent aphasia, apathy and impulsivity. Clinical diagnostic criteria have limited sensitivity, with pathologically confirmed PSP often having presented an initial clinical syndrome other than PSP-Richardson's syndrome. Here, we integrate cross-sectional multicentre baseline data from the PROSPECT-M-UK and Oxford Discovery cohorts. This allowed us to compare cognitive and psychiatric features across a total of 1138 people with PSP, CBS, multiple-system atrophy (MSA) and idiopathic PD. Data from the different cohorts were harmonized and compared using multiple linear regression. There were five key results: (i) different syndromes showed distinctive cognitive profiles, using readily applicable 'bedside' screening tools. Frontal executive dysfunction was most evident in PSP, visuospatial deficits in CBS, with milder deficits in memory and executive function in MSA, as compared with PD; (ii) the most prevalent neuropsychiatric features were depression and anxiety in CBS, apathy in PSP, with sleep disturbances common in PD. As expected, apathy correlated positively with impulsivity across all disorders. Neuropsychiatric features were generally better at discriminating between atypical parkinsonian syndromes than were the cognitive domains; (iii) both cognitive function and motor severity declined with disease duration, and motor function predicted cognition in PSP, CBS and PD but not in MSA, suggesting that in MSA cognitive and motor dysfunction are decoupled; (iv) plasma neurofilament light chain (NFL) levels, measured in a subset of patients, correlated with cognitive deficits in PSP, but not motor deficits; (v) cognitive deficits contributed to the impairment in activities of daily living after controlling for motor severity, with every two points on the Montreal Cognitive Assessment worsening the Schwab and England score by one point. In anticipation of future neuroprotective therapies, we present a classifier to improve diagnostic accuracy for atypical parkinsonian syndromes in vivo. Longitudinal cohort studies with resources for neuropathological gold standard diagnosis remain important to validate better diagnostic tools for people with PSP, CBD, MSA and atypical parkinsonism.
Background:Seed amplification assay (SAA) testing has become an important biomarker in the diagnosis of alpha-synuclein related neurodegenerative disorders. Objectives:To assess the rate of alpha-synuclein SAA positivity in progressive supranuclear palsy (PSP) and corticobasal syndrome (CBS), and analyse the clinical and pathological features of SAA positive and negative cases. Methods:106 CSF samples from clinically diagnosed PSP (n=59), CBS (n=37) and indeterminate parkinsonism cases (n=10) were analysed using alpha-synuclein SAA. Results:Three cases (1 PSP, 2 CBS) were Multiple System Atrophy (MSA)-type SAA positive. 5/59 (8.5%) PSP cases were Parkinson's disease (PD)-type SAA positive, and these cases were older and had a shorter disease duration compared with SAA negative cases. In contrast, 9/35 (25.7%) CBS cases were PD-type SAA positive. Conclusions:Our results suggest that PD-type seeds can be detected in PSP and CBS using a CSF alpha-synuclein SAA, and in PSP this may impact on clinical course.
Background and ObjectivesASPEN-1 was a phase 3, randomized, double-blind, placebo-controlled study to evaluate the efficacy, duration of response, and safety of 2 doses of DaxibotulinumtoxinA for Injection (DAXI), a novel botulinum toxin type A formulation in participants with cervical dystonia (CD).MethodsAdults (aged 18–80 years) with moderate-to-severe CD (Toronto Western Spasmodic Torticollis Rating Scale [TWSTRS] total score ≥20) were enrolled at 60 sites across 9 countries in Europe and North America. Participants were randomized (3:3:1) to single-dose intramuscular DAXI 125U, 250U, or placebo and followed for up to 36 weeks after injection. The primary end point was change from baseline in TWSTRS total score averaged across weeks 4 and 6. Key secondary end points included duration of effect, Clinical and Patient Global Impression of Change (CGIC, PGIC), TWSTRS subscale scores, and safety. Multiplicity-adjusted intent-to-treat hypothesis tests with multiple imputation were performed using ANCOVA and Cochran-Mantel-Haenszel analyses.ResultsOf 444 individuals screened, 301 were randomized to DAXI 125U (n = 125) or 250U (n = 130) or placebo (n = 46). DAXI 125U and 250U significantly improved the mean TWSTRS total score vs placebo (least squares mean [standard error] difference vs placebo: DAXI 125U, −8.5 [1.93], p < 0.0001; DAXI 250U, −6.6 [1.92], p = 0.0006). The median duration of effect (time from treatment until loss of ≥80% of the peak improvement in average TWSTRS total score achieved at weeks 4 and 6) was 24.0 (95% confidence interval 20.3–29.1) weeks with DAXI 125U and 20.3 (16.7–24.0) weeks with DAXI 250U. Significant improvements were also observed with DAXI in CGIC and PGIC responder rates and TWSTRS subscales. Treatment-related treatment-emergent adverse events (TEAEs) were reported by 29.6% of participants with DAXI 125U, 23.8% with DAXI 250U, and 17.4% with placebo, with injection site pain being the most common overall. The most frequently reported treatment-related TEAEs of interest in DAXI 125U, DAXI 250U, and placebo, respectively, were muscular weakness (4.8%, 2.3%, 0%), musculoskeletal pain (2.4%, 3.1%, 0%), and dysphagia (1.6%, 3.8%, 0%).DiscussionThis study demonstrated that DAXI, at doses of 125U and 250U, is an effective, safe, long-acting, and well-tolerated treatment for CD.Trial Registration InformationClinicalTrials.gov identifier (NCT03608397, submitted July 11, 2018) and EU Clinical Trials Register (ClinicalTrialsRegister.eu EudraCT identifier 2018-000446-19, submitted September 13, 2018). First participant enrolled on June 11, 2018. Trial registration was performed in accordance with the Food and Drug Administration Amendments Act (FDAAA 801), which stipulates that the responsible party register an applicable clinical trial not later than 21 calendar days after enrolling the first human participant (42 CFR 11.24).Classification of EvidenceThis study provides Class I evidence that in adults with moderate-to-severe idiopathic cervical dystonia, DAXI reduces dystonia more effectively than placebo.
A 70-year-old man presented to the clinic with impairment of visual memory and marked predominantly right sided mesial temporal lobe atrophy on imaging. He died 6 years following symptom onset and neuropathological examination showed concomitant progressive supranuclear palsy and Lewy body pathology. Although he did not fulfil clinical criteria for either condition at presentation, we propose that interactions between the two pathologies in mesial temporal regions could result in this atypical clinical phenotype.
A 41-year-old man developed rapidly progressive cranial neuropathies and muscle weakness followed by respiratory failure, requiring ventilation support. On examination, there was marked bilateral ptosis and ophthalmoplegia with bulbar, neck and proximal upper limb weakness. He had a recent open left humeral fracture that eventually required amputation. Despite immunoglobulin therapy, his progressive weakness continued. Multiple investigation results were inconclusive. Eventually, botulinum type A toxin was found positive, by which time the therapeutic window for antitoxin had passed. He continued on supportive management and was treated for concomitant infections and nosocomial illnesses. He was subsequently weaned from respiratory support and has made a good neurological recovery.