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Epileptiform Activity During REM Sleep in Alzheimer's Disease

Epileptiform Activity During REM Sleep in Alzheimer's Disease

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03923569
Acronym
EREMAD
Enrollment
62
Registered
2019-04-22
Start date
2019-04-29
Completion date
2023-06-30
Last updated
2021-07-28

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Alzheimer Disease, Early Onset

Keywords

Alzheimer's disease, Rapid eye movement (REM) sleep, Memory consolidation, Epilepsy, MRI

Brief summary

Recent clinical data showed that patients with Alzheimer Disease (AD) might present epilepsy at early stages of the disease (Cretin et al., 2016, Vossel et al., 2016). In mice models of Alzheimer disease, preclinical researchers observed an increase of epileptic events during Rapid Eye Movement (REM) sleep, which is very unusual. This study aims at testing if patients with AD present an exacerbation of epileptic events during REM sleep, which could constitute an early biomarker of the disease. Investigators will evaluate the incidence of epilepsy during each sleep stage in 40 patients with early or moderate forms of AD and in 40 healthy subjects. Investigators will also look for a link between epilepsy during sleep in AD participants and memory performances, brain damage (by using MRI scans) and in the case of patients, the phenotype of the Apolipoprotein E(ApoE) gene.

Detailed description

Preclinical researchers discovered that the Tg2576 mouse model of Alzheimer Disease (AD) presents epileptiform activity specifically during sleep, with a prominent increase during REM-sleep. This phenotype is specific to AD mice since REM-sleep usually prevents seizures and epileptiform activity in animal models of epilepsy. Preclinical research also evidenced that this epileptic phenotype occurs at very early age in Tg2576 mice, far before the onset of cognitive impairments. Thus, it was hypothesized that patients with AD might present subclinical epileptiform events during sleep with a potential worsening during REM-sleep. If so, it could be used as a specific and early biomarker of AD. Since sleep is involved in memory consolidation processes, preclinical researchers also hypothesized that epileptiform events during sleep might participate to cognitive dysfunction in AD patients. In order to test this hypothesis, a monocentric clinical study with a protocol consisting of three visits was designed aiming at evaluating seizures and subclinical epileptiform activity - and their consequences on memory - during sleep in 31 patients at early to moderate stages of AD and 31 matched healthy participants. During the first visit, a blood sample is collected of each patient for genetic testing of the ApoE gene before they undergo a high-resolution MRI scan. During the second visit (in the 60 days following the first one) participants first undergo a neuropsychological evaluation including visual, verbal and episodic memory tests before an overnight polysomnography. Following the overnight polysomnography, all subjects (patients and healthy participants) will be tested for the memories acquired the day before in order to evaluate sleep related memory consolidation. During the last visit, participants will fill out questionnaires aiming at evaluating pre-diagnostic lifestyle and they (and one family member if possible) will be interviewed about the presence of symptoms that might indicate an underlying epileptic syndrome for the participant. Healthy subjects will undergo the same procedures except for the blood test from which they will be exempted. This should allow to evidence sleep related epileptic events, to precise their incidence in AD patients as well as in healthy participants, and to correlate these events to anomalies in brain structure and functional resting state connectivity (MRI) and/or sleep disturbances and/or cognitive decline.

Interventions

Overnight polysomnography with evaluation of each form of epileptiform activity during each vigilance state and memory scores at the overnight retention test

DIAGNOSTIC_TESTblood sample

blood sample for genetic testing of the Apolipoprotein E

DIAGNOSTIC_TESThigh-resolution MRI scan

Evaluation of anomalies in brain structure and functional resting state connectivity

BEHAVIORALneuropsychological evaluation

neuropsychological evaluation including episodic memory tests before an overnight polysomnography

Sponsors

Centre de Recherches sur la Cognition Animale (CRCA - UMR5169 CNRS/UPS)
CollaboratorUNKNOWN
Centre de Recherche Cerveau & Cognition (CerCo - UMR5549 CNRS/UPS)
CollaboratorUNKNOWN
Toulouse NeuroImaging Center (ToNIC - UMR 1214 Inserm/UPS)
CollaboratorUNKNOWN
Fondation Plan Alzheimer
CollaboratorOTHER
IHNPS/FHU HoPeS
CollaboratorUNKNOWN
University Hospital, Toulouse
Lead SponsorOTHER

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
DIAGNOSTIC
Masking
NONE

Intervention model description

2 compared groups (Alzheimer's Disease patients vs controls)

Eligibility

Sex/Gender
ALL
Age
50 Years to 90 Years
Healthy volunteers
Yes

Inclusion criteria

For all participants: * age from 50 to 90 years old * affiliated to the French health care system For AD patients: * meeting International Working Group (IWG)-2 criteria for diagnosis * Mini-Mental State Examination (MMSE) ≥18 (Greco version) For healthy volunteers: * MMSE\>25 * Dubois 5 words test ≥ 9

Exclusion criteria

For all participants: * Pregnancy * people not able to give consent * contraindication for MRI (metallic body parts, claustrophobia), * aphasia, apraxia or agnosia * neurological (other than AD) or any other serious disease (cancer, addiction, systemic disease) * non treated sleep apnea * major depression or anxiety for more than 3 months (Beck\>10) or psychiatric disease * documented epilepsy * use of neuroleptics (more than one dose per day) * use of antiepileptics * use of benzodiazepines at a dose superior or equal to two intakes per day * use of antidepressants * restless leg syndrome treated by dopaminergic agonists. For AD patients: * other causes of dementia * non-degenerative neurological lesions * white matter hypersignals * acute cognitive deficits

Design outcomes

Primary

MeasureTime frameDescription
Epileptiform activity during REM sleepDay 2the proportion of participants from each group exhibiting a significant epileptiform activity (seizures and/or interictal spikes) during REM sleep. . Epileptiform activity will be defined as either at least one spike, or at least 4 paroxysmal activities.

Secondary

MeasureTime frameDescription
Number of epileptiform activity according to sleep-wake cycleDay 2Number of epileptiform activity according to sleep-wake cycle in each group
Frequency of epileptiform activity according to sleep-wake cycleDay 2Frequency of epileptiform activity according to sleep-wake cycle in each group
lateralization of epileptiform activity according to sleep-wake cycleDay 2lateralization of epileptiform activity according to sleep-wake cycle in each group
localization of epileptiform activity according to sleep-wake cycleDay 2localization of epileptiform activity according to sleep-wake cycle in each group
Comparison of sleep characterization between the two groups: total sleep timeDay 2total sleep time in hours and minutes
Comparison of sleep characterization between the two groups: number of sleep cyclesDay 2number of sleep cycles
Comparison of sleep characterization between the two groups: time spent awake during the nightDay 2time spent awake during the night
Comparison of sleep characterization between the two groups: index of micro-awakeningsDay 2index of micro-awakenings
Comparison of sleep characterization between the two groups: distribution of different sleep stages in timeDay 2distribution of different sleep stages in time
Comparison of sleep characterization between the two groups: index of periodic movementsDay 2the index of periodic movements
Comparison of sleep characterization between the two groups: index of hypopneaDay 2index of hypopnea (central and obstructive components)
Comparison of memory scores at the overnight retention test between the two groupsDay 2The memory scores are combined to compute a total score
symptoms of an underlying epileptic syndromeMonth 5The score on the questionnaire aiming at discovering potential symptoms of an underlying epileptic syndrome
sleep spindles in different sleep stagesday 2The number and the density of sleep spindles in different sleep stages
results of the cognitive reserve inventory (CRIq)month 5Correlation between the frequency of epileptiform activity, the score on the epilepsy questionnaire and the index of micro-awakenings in the different sleep stages and: the results of the cognitive reserve inventory (CRIq)
speed of cognitive decline.month 5Correlation between the frequency of epileptiform activity, the score on the epilepsy questionnaire and the index of micro-awakenings in the different sleep stages and: the speed of cognitive decline.
density of sleep spindles in the different sleep stagesmonth 5Correlation between the frequency of epileptiform activity, the score on the epilepsy questionnaire and the index of micro-awakenings in the different sleep stages and: the density of sleep spindles in the different sleep stages
Comparison of sleep characterization between the two groups: distribution of different sleep stages in percentageDay 2distribution of different sleep stages in percentage

Countries

France

Contacts

Primary ContactLuc Valton, MD
valton.l@chu-toulouse.fr05-61-77-94-88
Backup ContactLionel Dahan, PHD
lionel.dahan@univ-tlse3.fr06.43.18.23.16

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026