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tDCS for Cognitive Impairment Associated With Recent-onset Schizophrenia

Efficacy and Auditory Biomarker Analysis of Fronto-Temporal Transcranial Direct Current Stimulation (tDCS) in Targeting Cognitive Impairment Associated With Recent-onset Schizophrenia: A Randomized Double-blind Sham-controlled Trial

Status
Not yet recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05440955
Acronym
STICOG
Enrollment
60
Registered
2022-07-01
Start date
2023-06-01
Completion date
2027-06-01
Last updated
2023-04-04

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

Conditions

Psychotic Disorder, Schizophrenia

Keywords

schizophrenia, cognitive impairment, tDCS, early auditory processing, clinical trial

Brief summary

Background: In parallel to the traditional symptomatology, deficits in cognition (memory, attention, reasoning, social functioning) contribute significantly to disability and suffering in individuals with schizophrenia. Cognitive deficits have been closely linked to alterations in early auditory processes (EAP) that occur in auditory cortical areas. Preliminary evidence indicates that cognitive deficits in schizophrenia can be improved with a reliable and safe non-invasive brain stimulation technique called tDCS (transcranial Direct Current Stimulation). However, a significant proportion of patients derive no cognitive benefits after tDCS treatment. Further, the neurobiological mechanisms of cognitive changes after tDCS have been poorly explored in trials and are thus still unclear. Method: The study is designed as a randomized, double-blind, 2-arm parallel-group, sham controlled, 4-centers trial. Sixty participants with recent-onset schizophrenia and cognitive impairment will be randomly allocated to receive either active (n=30) or sham (n=30) tDCS (20-min, 2-mA, 10 sessions during 5 consecutive weekdays). The anode will be placed over the left dorsolateral prefrontal cortex and the cathode over the left auditory cortex. Cognition, tolerance, symptoms, general outcome and EAP (measured with EEG and multimodal MRI) will be assessed prior to tDCS (baseline), after the 10 sessions, and at 1- and 3-month follow-up. The primary outcome will be the number of responders, defined as participants demonstrating a cognitive improvement ≥Z=0.5 from baseline on the MATRICS Consensus Cognitive Battery total score at 1-month follow-up. Additionally, we will measure how differences in EAP modulate individual cognitive benefits from active tDCS and whether there are changes in EAP measures in responders after active tDCS. Discussion: Besides proposing a new fronto-temporal tDCS protocol by targeting the auditory cortical areas, we aim to conduct an RCT with follow-up assessments up to 3-months and a large sample size. In addition, this study will allow identifying and assessing the value of a wide range of neurobiological EAP measures for predicting and explaining cognitive deficits improvement after tDCS. The results of this trial will constitute a step toward the use of tDCS as a therapeutic tool for the treatment of cognitive impairment in recent-onset schizophrenia.

Interventions

DEVICEleft fronto-temporal transcranial Direct Current Stimulation (tDCS)

The study intervention consists of ten 20-minutes sessions of active or sham tDCS. Sessions will be delivered twice daily and separated by at least 2 hours for 5 consecutive weekdays. The electric current will be generated by an electric stimulator (class IIa medical device). During the entire tDCS session, the subject is at rest, comfortably seated in a chair in a quiet room. A clinician will be present for the entire session duration. The current will be applied via a pair of rubber electrodes (35 cm²) placed on the surface of the scalp. The anode will be placed over the left dorsolateral prefrontal cortex. The cathode will be placed over the left auditory cortex. The stimulation parameters will be set at 2-mA for 20 minutes, with a progressive increase during the first 30-sec and a progressive decrease during the last 30-sec of each session. The impedance of the applied current is monitored by the stimulator during each session.

Sponsors

Direction Générale de l'Offre de Soins
CollaboratorOTHER_GOV
University Hospital, Grenoble
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
QUADRUPLE (Subject, Caregiver, Investigator, Outcomes Assessor)

Masking description

Blinding will be maintained at several levels: participants, research staff members including investigators and data analysts. If different from the investigator, care providers will be also blinded to intervention. Blinding for the tDCS condition will be achieved for the research staff members who will administer the tDCS by the use of a randomization code (see details in §16c) and for the participants by ensuring identical appearance and sensation for both active and sham conditions. Outcome assessments, imaging and biological data will be collected and analysed by research staff members blind to group assignment and different from the staff member who will administer the tDCS.

Intervention model description

The present study is designed as a superiority, double-blind, parallel-group, sham-controlled randomized clinical trial with an allocation ratio of 1:1.

Eligibility

Sex/Gender
ALL
Age
18 Years to 35 Years
Healthy volunteers
No

Inclusion criteria

The inclusion criteria include: 1. subjects of both genders, diagnosed with recent-onset schizophrenia (first 3 years of illness), confirmed through the Structured Clinical Interview for the American Psychiatric Association Diagnostic and Statistical Manual of Mental Disorders, 5th edition (SCID-5); 2. aged 18-35 years; 3. intelligence quotient (IQ) \> 55; 4. cognitive deficit confirmed by a MCCB (MATRICS Cognitive Consensus Battery) total score T-score \< 40; 5. the subjects should be receiving stable doses of antipsychotics for ≥ 4 weeks; 6. the subjects are covered by a public health insurance. The

Exclusion criteria

include: 1. pregnant (controlled by urine pregnancy test in females of childbearing age) or breastfeeding women; 2. unstable or acute medical conditions; 3. subjects who receive involuntary treatment or guardianship; 4. history of cranioencephalic trauma with loss of consciousness or central nervous system diseases that affect the brain; 5. use of drugs that affect cognitive performance such as anticholinergic agents and benzodiazepines; 6. current diagnosis of substance abuse or history of substance dependence in the last 6 months, except nicotine; 7. MRI (Magnetic Resonance Imaging), PET (Positron Emission Tomography) or tDCS (transcranial Direct Current Stimulation) contraindications

Design outcomes

Primary

MeasureTime frameDescription
Cognitive responseat 1-month follow-upNumber of responders at 1-month after tDCS, defined as the proportion of patients demonstrating a cognitive improvement greater than or equal to Z=0.5 from baseline on the MATRICS Consensus Cognitive Battery total score (MCCB). The MCCB is a gold-standard standardized test battery to assess cognitive functions in patients with schizophrenia. This criterion has been used and validated in both antipsychotic and cognitive remediation trials in schizophrenia.

Secondary

MeasureTime frameDescription
Cognitive domain responseat inclusion; at 1-month follow-up; at 3-months follow-upChanges from baseline to 1-month and 3-months endpoints in each MCCB domains subscores (processing speed, attention/vigilance, working memory, verbal learning, visual learning, problem solving, emotional awareness) and total score.
Clinical response 1at inclusion; at 1-week; at 1-month follow-up; at 3-months follow-upChanges from baseline to after tDCS, 1-month and 3-months endpoints in the following symptom measure: • Schizophrenia symptoms will be assessed using the PANSS (Positive and Negative Syndrome Scale) total score.
Clinical response 2at inclusion; at 1-week; at 1-month follow-up; at 3-months follow-upChanges from baseline to after tDCS, 1-month and 3-months endpoints in the following symptom measure: • Auditory hallucinations, one of the key symptoms of schizophrenia, will be assessed using the AHRS (Auditory Hallucination Rating Scale)
Clinical response 3at inclusion; at 1-week; at 1-month follow-up; at 3-months follow-upChanges from baseline to after tDCS, 1-month and 3-months endpoints in the following symptom measure: • Negative symptoms will be additionally assessed using the Brief Negative Symptom Scale (BNSS).
Clinical response 4at inclusion; at 1-week; at 1-month follow-up; at 3-months follow-upChanges from baseline to after tDCS, 1-month and 3-months endpoints in the following symptom measure: • Depressive symptoms will be assessed using the Calgary Depression Scale for Schizophrenia (CDSS) total score.
Clinical response 5at inclusion; at 1-week; at 1-month follow-up; at 3-months follow-upChanges from baseline to after tDCS, 1-month and 3-months endpoints in the following symptom measure: • Global symptom severity and treatment response will be assessed using the Clinical Global Impressions Scale (CGI) total score.
Clinical response 6at inclusion; at 1-week; at 1-month follow-up; at 3-months follow-upChanges from baseline to after tDCS, 1-month and 3-months endpoints in the following symptom measure: • Subjective experience of negative symptoms will be assessed using the Self-evaluation of Negative Symptoms (SNS) total score
Clinical response 7at inclusion; at 1-week; at 1-month follow-up; at 3-months follow-upChanges from baseline to after tDCS, 1-month and 3-months endpoints in the following symptom measure: • Subjective experiences of cognitive impairment will be assessed using the self-rated Subjective Scale To Investigate Cognition in Schizophrenia (SSTICS) total score.
Outcome response 1at inclusion; at 1-month follow-up; at 3-months follow-upChanges from baseline to 1-month and 3-months endpoints in the following general outcome measures: • Functional outcome will be assessed using the FROGS (Functional Remission Observatory Group in Schizophrenia) total score
Outcome response 2at inclusion; at 1-month follow-up; at 3-months follow-upChanges from baseline to 1-month and 3-months endpoints in the following general outcome measures: • Quality of life will be assessed by the Schizophrenia Quality of Life Questionnaire Short Form (S-QoL 18) total score
Tolerance 1at 1-weekScore after the last tDCS session in the following tolerance measure: • tDCS-AEQ (Adverse Effects Questionnaire)
Long term cognitive responseat inclusion; at 3-months follow-upNumber of responders at 3-months after tDCS, defined as the proportion of patients demonstrating a cognitive improvement greater than or equal to Z=0.5 from baseline on the MATRICS Consensus Cognitive Battery total score (MCCB). The MCCB is a gold-standard standardized test battery to assess cognitive functions in patients with schizophrenia. This criterion has been used and validated in both antipsychotic and cognitive remediation trials in schizophrenia.
Response marker 1at inclusionThe differences at baseline in the following early auditory processing (EAP) measure between patients with cognitive improvement and patients without cognitive improvement after active tDCS: • correlations (z-scores) between left prefrontal and temporal cortical areas (i.e., areas stimulated with tDCS) measured with resting-state functional Magnetic Resonance Imaging (MRI).
Response marker 2at inclusionThe differences at baseline in the following early auditory processing (EAP) measure between patients with cognitive improvement and patients without cognitive improvement after active tDCS: • spectral power (dB) in gamma frequency (40-Hz) during specific auditory paradigms (auditory steady-state, oddball, tone-matching) measured with electroencephalography (EEG).
Response marker 3at inclusionThe differences at baseline in the following early auditory processing (EAP) measure between patients with cognitive improvement and patients without cognitive improvement after active tDCS: • inter-assay coherence (%) in gamma frequency (40-Hz) during specific auditory paradigms (auditory steady-state, oddball, tone-matching) measured with electroencephalography (EEG).
Response marker 4at inclusionThe differences at baseline in the following early auditory processing (EAP) measure between patients with cognitive improvement and patients without cognitive improvement after active tDCS: • GABA and Glutamate levels (mM) within left prefrontal and temporal cortical areas measured with resting-state Magnetic Resonance Spectroscopy (MRS)
Response marker 5at inclusionThe differences at baseline in the following early auditory processing (EAP) measure between patients with cognitive improvement and patients without cognitive improvement after active tDCS: • radiotracer binding potential on GABA-A receptors (Binding Potential) within left prefrontal and temporal cortical areas measured with resting-state \[11C\]flumazenil Positron Emission Tomography MRI (PET-MRI).
Response predictor 1at inclusion; at 1-month follow-upChanges from baseline to 1-month in the following early auditory processing (EAP) measure between patients with cognitive improvement and patients without cognitive improvement after active tDCS: • correlations (z-scores) between left prefrontal and temporal cortical areas (i.e., areas stimulated with tDCS) measured with resting-state functional Magnetic Resonance Imaging (MRI).
Response predictor 2at inclusion; at 1-month follow-upChanges from baseline to 1-month in the following early auditory processing (EAP) measure between patients with cognitive improvement and patients without cognitive improvement after active tDCS: • spectral power (dB) in gamma frequency (40-Hz) during specific auditory paradigms (auditory steady-state, oddball, tone-matching) measured with electroencephalography (EEG).
Response predictor 3at inclusion; at 1-month follow-upChanges from baseline to 1-month in the following early auditory processing (EAP) measure between patients with cognitive improvement and patients without cognitive improvement after active tDCS: • inter-assay coherence (%) in gamma frequency (40-Hz) during specific auditory paradigms (auditory steady-state, oddball, tone-matching) measured with electroencephalography (EEG).
Response predictor 4at inclusion; at 1-month follow-upChanges from baseline to 1-month in the following early auditory processing (EAP) measure between patients with cognitive improvement and patients without cognitive improvement after active tDCS: • GABA and Glutamate levels (mM) within left prefrontal and temporal cortical areas measured with resting-state Magnetic Resonance Spectroscopy (MRS)
Response predictor 5at inclusion; at 1-month follow-upChanges from baseline to 1-month in the following early auditory processing (EAP) measure between patients with cognitive improvement and patients without cognitive improvement after active tDCS: • GABA and Glutamate levels (mM) within left prefrontal and temporal cortical areas measured with resting-state Magnetic Resonance Spectroscopy (MRS)
Response predictor 6at inclusion; at 1-month follow-upChanges from baseline 1-month in the following early auditory processing (EAP) measure between patients with cognitive improvement and patients without cognitive improvement after active tDCS: • radiotracer binding potential on GABA-A receptors (Binding Potential) within left prefrontal and temporal cortical areas measured with resting-state \[11C\]flumazenil Positron Emission Tomography MRI (PET-MRI).
Tolerance 2at 1-weekScore after the last tDCS session in the following tolerance measure: • VAMS (Visual Analogue Mood Scale)

Countries

France

Contacts

Primary ContactJulien COLOMBAT
jcolombat@chu-grenoble.fr04 76 76 56 09

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 12, 2026