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1.
Proc Natl Acad Sci U S A ; 118(12)2021 03 23.
Article in English | MEDLINE | ID: mdl-33737391

ABSTRACT

Kleine-Levin syndrome (KLS) is a rare disorder characterized by severe episodic hypersomnia, with cognitive impairment accompanied by apathy or disinhibition. Pathophysiology is unknown, although imaging studies indicate decreased activity in hypothalamic/thalamic areas during episodes. Familial occurrence is increased, and risk is associated with reports of a difficult birth. We conducted a worldwide case-control genome-wide association study in 673 KLS cases collected over 14 y, and ethnically matched 15,341 control individuals. We found a strong genome-wide significant association (rs71947865, Odds Ratio [OR] = 1.48, P = 8.6 × 10-9) within the 3'region of TRANK1 gene locus, previously associated with bipolar disorder and schizophrenia. Strikingly, KLS cases with rs71947865 variant had significantly increased reports of a difficult birth. As perinatal outcomes have dramatically improved over the last 40 y, we further stratified our sample by birth years and found that recent cases had a significantly reduced rs71947865 association. While the rs71947865 association did not replicate in the entire follow-up sample of 171 KLS cases, rs71947865 was significantly associated with KLS in the subset follow-up sample of 59 KLS cases who reported birth difficulties (OR = 1.54, P = 0.01). Genetic liability of KLS as explained by polygenic risk scores was increased (pseudo R2 = 0.15; P < 2.0 × 10-22 at P = 0.5 threshold) in the follow-up sample. Pathway analysis of genetic associations identified enrichment of circadian regulation pathway genes in KLS cases. Our results suggest links between KLS, circadian regulation, and bipolar disorder, and indicate that the TRANK1 polymorphisms in conjunction with reported birth difficulties may predispose to KLS.


Subject(s)
Cytokines/genetics , Disease Susceptibility , Genetic Variation , Kleine-Levin Syndrome/complications , Kleine-Levin Syndrome/genetics , Obstetric Labor Complications/epidemiology , Obstetric Labor Complications/etiology , Bipolar Disorder/etiology , Disorders of Excessive Somnolence/etiology , Female , Genetic Association Studies , Genetic Predisposition to Disease , Humans , Kleine-Levin Syndrome/epidemiology , Male , Odds Ratio , Polymorphism, Genetic , Pregnancy , Risk Assessment , Risk Factors
2.
Sleep Breath ; 25(2): 849-860, 2021 06.
Article in English | MEDLINE | ID: mdl-33907966

ABSTRACT

PURPOSE: Obstructive sleep apnea (OSA) may increase the risk of severe COVID-19; however, the level of potential modulation has not yet been established. The objective of the study was to determine the association between high risk of OSA, comorbidities, and increased risk for COVID-19, hospitalization, and intensive care unit (ICU) treatment. METHODS: We conducted a cross-sectional population-based web survey in adults in 14 countries/regions. The survey included sociodemographic variables and comorbidities. Participants were asked questions about COVID-19, hospitalization, and ICU treatment. Standardized questionnaire (STOP questionnaire for high risk of OSA) was included. Multivariable logistic regression was conducted adjusting for various factors. RESULTS: Out of 26,539 respondents, 20,598 (35.4% male) completed the survey. Mean age and BMI of participants were 41.5 ± 16.0 years and 24.0 ± 5.0 kg/m2, respectively. The prevalence of physician-diagnosed OSA was 4.1% and high risk of OSA was 9.5%. We found that high risk of OSA (adjusted odds ratio (aOR) 1.72, 95% confidence interval (CI): 1.20, 2.47) and diabetes (aOR 2.07, 95% CI: 1.23, 3.48) were associated with reporting of a COVID-19 diagnosis. High risk for OSA (aOR 2.11, 95% CI: 1.10-4.01), being male (aOR: 2.82, 95% CI: 1.55-5.12), having diabetes (aOR: 3.93, 95% CI: 1.70-9.12), and having depression (aOR: 2.33, 95% CI: 1.15-4.77) were associated with increased risk of hospitalization or ICU treatment. CONCLUSIONS: Participants at high risk of OSA had increased odds of having COVID-19 and were two times more likely to be hospitalized or treated in ICU.


Subject(s)
COVID-19 Testing/statistics & numerical data , COVID-19/epidemiology , Health Status , Sleep Apnea, Obstructive/epidemiology , Adult , COVID-19/diagnosis , Comorbidity , Cross-Sectional Studies , Depression/epidemiology , Diabetes Mellitus, Type 2/epidemiology , Female , Humans , Male , Middle Aged , Prevalence , Risk Factors , Sex Factors , Sleep Apnea, Obstructive/diagnosis , Snoring/epidemiology
3.
Brain ; 142(3): 744-759, 2019 03 01.
Article in English | MEDLINE | ID: mdl-30789229

ABSTRACT

Idiopathic REM sleep behaviour disorder (iRBD) is a powerful early sign of Parkinson's disease, dementia with Lewy bodies, and multiple system atrophy. This provides an unprecedented opportunity to directly observe prodromal neurodegenerative states, and potentially intervene with neuroprotective therapy. For future neuroprotective trials, it is essential to accurately estimate phenoconversion rate and identify potential predictors of phenoconversion. This study assessed the neurodegenerative disease risk and predictors of neurodegeneration in a large multicentre cohort of iRBD. We combined prospective follow-up data from 24 centres of the International RBD Study Group. At baseline, patients with polysomnographically-confirmed iRBD without parkinsonism or dementia underwent sleep, motor, cognitive, autonomic and special sensory testing. Patients were then prospectively followed, during which risk of dementia and parkinsonsim were assessed. The risk of dementia and parkinsonism was estimated with Kaplan-Meier analysis. Predictors of phenoconversion were assessed with Cox proportional hazards analysis, adjusting for age, sex, and centre. Sample size estimates for disease-modifying trials were calculated using a time-to-event analysis. Overall, 1280 patients were recruited. The average age was 66.3 ± 8.4 and 82.5% were male. Average follow-up was 4.6 years (range = 1-19 years). The overall conversion rate from iRBD to an overt neurodegenerative syndrome was 6.3% per year, with 73.5% converting after 12-year follow-up. The rate of phenoconversion was significantly increased with abnormal quantitative motor testing [hazard ratio (HR) = 3.16], objective motor examination (HR = 3.03), olfactory deficit (HR = 2.62), mild cognitive impairment (HR = 1.91-2.37), erectile dysfunction (HR = 2.13), motor symptoms (HR = 2.11), an abnormal DAT scan (HR = 1.98), colour vision abnormalities (HR = 1.69), constipation (HR = 1.67), REM atonia loss (HR = 1.54), and age (HR = 1.54). There was no significant predictive value of sex, daytime somnolence, insomnia, restless legs syndrome, sleep apnoea, urinary dysfunction, orthostatic symptoms, depression, anxiety, or hyperechogenicity on substantia nigra ultrasound. Among predictive markers, only cognitive variables were different at baseline between those converting to primary dementia versus parkinsonism. Sample size estimates for definitive neuroprotective trials ranged from 142 to 366 patients per arm. This large multicentre study documents the high phenoconversion rate from iRBD to an overt neurodegenerative syndrome. Our findings provide estimates of the relative predictive value of prodromal markers, which can be used to stratify patients for neuroprotective trials.


Subject(s)
Dementia/physiopathology , Parkinson Disease/physiopathology , REM Sleep Behavior Disorder/physiopathology , Aged , Cohort Studies , Disease Progression , Female , Forecasting/methods , Humans , Kaplan-Meier Estimate , Lewy Body Disease/physiopathology , Male , Middle Aged , Parkinsonian Disorders/diagnosis , Polysomnography , Prodromal Symptoms , Prognosis , Proportional Hazards Models , Prospective Studies , Risk Factors
4.
J Sleep Res ; 25(3): 356-64, 2016 06.
Article in English | MEDLINE | ID: mdl-26809504

ABSTRACT

Narcolepsy with cataplexy is a rare disease with an estimated prevalence of 0.02% in European populations. Narcolepsy shares many features of rare disorders, in particular the lack of awareness of the disease with serious consequences for healthcare supply. Similar to other rare diseases, only a few European countries have registered narcolepsy cases in databases of the International Classification of Diseases or in registries of the European health authorities. A promising approach to identify disease-specific adverse health effects and needs in healthcare delivery in the field of rare diseases is to establish a distributed expert network. A first and important step is to create a database that allows collection, storage and dissemination of data on narcolepsy in a comprehensive and systematic way. Here, the first prospective web-based European narcolepsy database hosted by the European Narcolepsy Network is introduced. The database structure, standardization of data acquisition and quality control procedures are described, and an overview provided of the first 1079 patients from 18 European specialized centres. Due to its standardization this continuously increasing data pool is most promising to provide a better insight into many unsolved aspects of narcolepsy and related disorders, including clear phenotype characterization of subtypes of narcolepsy, more precise epidemiological data and knowledge on the natural history of narcolepsy, expectations about treatment effects, identification of post-marketing medication side-effects, and will contribute to improve clinical trial designs and provide facilities to further develop phase III trials.


Subject(s)
Databases, Factual , Narcolepsy , Registries , Adolescent , Adult , Aged , Aged, 80 and over , Cataplexy/drug therapy , Cataplexy/epidemiology , Databases, Factual/standards , Europe/epidemiology , Female , Humans , Information Dissemination , Internet , Male , Middle Aged , Narcolepsy/drug therapy , Narcolepsy/epidemiology , Phenotype , Product Surveillance, Postmarketing , Prospective Studies , Quality Control , Rare Diseases/drug therapy , Rare Diseases/epidemiology , Registries/standards , Young Adult
5.
Sleep ; 33(11): 1457-64, 2010 Nov.
Article in English | MEDLINE | ID: mdl-21102987

ABSTRACT

STUDY OBJECTIVE: to report on symptoms and therapies used in childhood narcolepsy-cataplexy. DESIGN, PATIENTS, AND SETTING: retrospective series of 51 children who completed the Stanford Sleep Inventory. HLA-DQB1*0602 typing (all tested, and 100% positive), polysomnography or Multiple Sleep Latency Test (76%), and cerebrospinal fluid hypocretin-1 measurements (26%, all with low levels) were also conducted. Prospective data on medication response was collected in 78% using a specially designed questionnaire. MEASUREMENTS AND RESULTS: patients were separated into children with onset of narcolepsy prior to (53%), around (29%), and after (18%) puberty. None of the children had secondary narcolepsy. Clinical features were similar across puberty groups, except for sleep paralysis, which increased in frequency with age. Common features included excessive weight gain (84% ≥ 4 kg within 6 months of onset of narcolepsy) and earlier puberty (when compared with family members), notably in subjects who gained the most weight. Streptococcus-positive throat infections were reported in 20% of cases within 6 months of onset of narcolepsy. Polysomnographic features were similar across groups, but 3 prepubertal children did not meet Multiple Sleep Latency Test diagnostic criteria. Regarding treatment, the most used and continued medications were modafinil (84% continued), sodium oxybate (79%), and venlafaxine (68%). Drugs such as methylphenidate, tricyclic antidepressants, or selective serotonin reuptake inhibitors were often tried but rarely continued. Modafinil was reported to be effective for treating sleepiness, venlafaxine for cataplexy, and sodium oxybate for all symptoms, across all puberty groups. At the conclusion of the study, half of children with prepubertal onset of narcolepsy were treated "off label" with sodium oxybate alone or with the addition of one other compound. In older children, however, most patients needed more than 2 drugs. CONCLUSION: this study reports on the clinical features of childhood narcolepsy and documents the safe use of treatments commonly used in adults in young children.


Subject(s)
Narcolepsy/diagnosis , Narcolepsy/drug therapy , Adjuvants, Anesthesia/therapeutic use , Adolescent , Age Distribution , Age of Onset , Antidepressive Agents, Second-Generation/therapeutic use , Benzhydryl Compounds/therapeutic use , Central Nervous System Stimulants/therapeutic use , Child , Cyclohexanols/therapeutic use , Drosophila Proteins , Drug Therapy, Combination/methods , Drug Therapy, Combination/statistics & numerical data , Female , Follow-Up Studies , Humans , Male , Modafinil , Narcolepsy/epidemiology , Nerve Tissue Proteins , Nuclear Proteins , Overweight/epidemiology , Polysomnography/methods , Polysomnography/statistics & numerical data , Puberty , Retrospective Studies , Sodium Oxybate/therapeutic use , Streptococcal Infections/epidemiology , Surveys and Questionnaires , Transcription Factors , United States/epidemiology , Venlafaxine Hydrochloride , Weight Gain
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