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NCT Number: NCT06868979

Optical Imaging in X-linked Disorders.

Fragile X syndrome (FXS, OMIM #300624) and Creatine Transporter Deficiency (CTD, #300352) are the two most common causes of X-linked intellectual disability. FXS and CTD affect hemizygous males and with highly variable severity heterozygous females. Both these neurodevelopmental disorders (NDDs) have a dramatic impact on the family quality of life and the health-care system. These disorders share common clinical traits, including intellectual disability, autistic-like features, behavioural and mood alterations and seizures. Brain anatomy appears largely normal, suggesting that functional deficits result from subtle changes in synaptic connectivity. Moreover, common physiological mechanisms related to brain energetics might concur to the pathophysiology of FXS and CTD. Indeed, FMR1 and SLC6A8 are directly involved in the regulation of metabolism and the loss-of-function of both genes leads to a disruption of the mitochondrial network.

There is no cure for these disorders and the efficacy study of potential treatments is hindered by the scarcity of unbiased, quantitative, non-invasive biomarkers for monitoring brain function.

This is a critical problem, since the often-used phenotypic observation of behavioural endpoints to score NDDs such as FXS and CTD is highly prone to subjective bias. For successful clinical trials, the availability of objective readouts is crucial to evaluate the therapeutic response to new drugs. There are multiple techniques to visualize neural circuit activity in the living brain. Interestingly, FXS and CTD are the only two NDDs that at preclinical level show an abnormally large hemodynamic response to sensory stimulation in functional imaging studies of intrinsic optical signals.

The objective of this project is to exploit optical imaging techniques to devise a measurable and non-invasive biomarker of brain function in FXS and CTD. Since a disruption of brain energy metabolism is a major disease mechanism linking these disorders, we hypothesized that the assessment of the cerebral blood flow and oxygen consumption represents a sensitive readout for quantifying functional alterations of neural circuits.

Functional near-infrared spectroscopy (fNIRS), allows quantifying changes of hemoglobin species and local blood flow in the cerebral cortex of humans, providing an indirect measure of neuronal activity. In the clinical framework, this blood-oxygen-level-dependent signal is similar to that detected with functional MRI (fMRI). However, fNIRS has the advantage of being completely non-invasive, low-cost, portable, noiseless, endowed with high experimental flexibility and easy to implement in both laboratory and clinical settings. Moreover, fNIRS is more tolerant to motion artifacts than fMRI, and robust methods for motion detection/correction allow to image very young children without sedation. These methodological strengths make fNIRS as an outstanding choice for investigating neural circuits in clinically relevant populations at the very-low cost. Although introduced into the clinical care almost 40 years ago, fNIRS gained much popularity in the study of brain development and NDDs only recently. To date, however, fNIRS has been used primarily to investigate the typical maturation of speech perception and language, sensory and motor functions, social communication and interaction, object and action processing in toddlers and children.

In this proposal, the investigators hypothesize that by combining the above-mentioned strengths of fNIRS to the clinical study of several cognitive and motor parameters, the investigators can define unique "fNIRS signatures" for FXS and CTD as brain biomarkers for the diagnosis and the assessment of treatment outcomes. Since the measurement of visual responses has been introduced as a quantitative method to assess brain function in NDDs, the investigators will test the value of visually-evoked fNIRS signals in classifying patients and predicting symptom severity in the FXS and CTD clinical population. Preliminary data in the mouse models of CTD and FXS strongly suggest that visual hemodynamic responses (vHDR) are markedly altered in the occipital cortex of mutant animals. Morever, the investigators will use a standardized procedure with high entertaining value to measure vHDR in the occipital cortex of children.

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Key information

Age range

5 year–60 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Woman, mother and child hospital, Hospices Civils de Lyon

Bron, 69500, France

Location status: Recruiting

Location contact

Aurore Curie, Dr

CONTACT

[email protected]

+33 6 70 62 69 76

Aurore Curie, Dr

PRINCIPAL_INVESTIGATOR

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

CTD male patients :

  • male
  • having a confirmed mutation in the SLC6A8 gene
  • ≥ 5 to ≤ 35 years old
  • whose maternal language is French,
  • having signed the informed consent and/or for whom parents (for children)/legal guardian (for protected adults) have signed the informed consent.
  • affiliated to national Health Insurance system (sécurité sociale) or parents/legal guardian affiliated to national health insurance system

CTD female patients :

  • female CTD patients having a confirmed mutation in the SLC6A8 gene,
  • aged > 5 to < 60 years,
  • whose maternal language is French (for the patients included in France),
  • having signed the informed consent and/or for whom parents (for children)/legal guardian (for protected adults) have signed the informed consent.
  • affiliated to national Health Insurance system (sécurité sociale) or parents/legal guardian affiliated to national health insurance system

FXS patients :

  • male
  • having a confirmed full mutation in the FMR1 gene (>200 GCC repeats)
  • ≥ 5 to ≤ 35 years old
  • whose maternal language is French,
  • having signed the informed consent and/or for whom parents (for children)/legal guardian (for protected adults) have signed the informed consent.
  • affiliated to national Health Insurance system (sécurité sociale) or parents/legal guardian affiliated to national health insurance system

Sex- and chronological age-matched male controls :

  • male
  • ≥ 5 to ≤ 35 years old
  • whose maternal language is French,
  • having signed the informed consent and/or for whom parents have signed the informed consent.
  • affiliated to national Health Insurance system (sécurité sociale) or parents/legal guardian affiliated to national health insurance system

Sex- and chronological age-matched female controls :

  • female,
  • aged > 5 to < 60 years
  • whose maternal language is French (for the patients included in France),
  • having signed the informed consent and/or for whom parents/legal guardian have signed the informed consent.
  • affiliated to national Health Insurance system (sécurité sociale) or parents/legal guardian affiliated to national health insurance system.

Each CTD patient will be matched to a sex- and chronological age-matched control.

Exclusion criteria

CTD male and female patients :

  • Refusal of the subject and/or the subject's parents/legal guardian to sign the informed consent
  • Refusal of the subject and/or the subject's parents/legal guardian to be informed of possible abnormalities detected during the neuropsychological assessment.

FXS patients :

  • Refusal of the subject and/or the subject's parents/legal guardian to sign the informed consent
  • Refusal of the subject and/or the subject's parents/legal guardian to be informed of possible abnormalities detected during the neuropsychological assessment.

Sex- and chronological age-matched male and female controls :

  • Refusal of the subject and/or the subject's parents/legal guardian to sign the informed consent
  • Refusal of the subject and/or the subject's parents/legal guardian to be informed of possible abnormalities detected during the neuropsychological assessment.
  • History of neurological or psychiatric disorder,
  • Repetition of a grade,
  • Learning disability requiring rehabilitation (speech therapy, psychomotor or oculomotor therapy).

Treatment and study plan

Clinical Assessment

Other

Clinical examination including Medical history, developmental trajectory, epilepsy history, ASD symptoms, clinical examination at the inclusion visit by a neuropediatrist

Parental questionnaires

Other

Parental questionnaires including Vineland-2, ABC, CBCL, PPD-MRS, SRS-2 and BRIEF completed at the inclusion visit

Cognitive Assessment

Other

Cognitive assessment including Leiter-3, PPVT 5, EVT 3 completed at the inclusion visit

Reasoning assessment

Other

Simple reasoning tasks on tablets performed at the inclusion visit.

fNIRS assessement

Device

Imaging session using fNIRS (NIRSport 8x8, NIRx Medical Technologies LLC, Berlin, Germany) performed at the inclusion visit.

Primary outcomes

  1. Amplitude of the visual hemodynamic response

    Time frame: Inclusion visit

    Cortical hemodynamic activity data recorded via fNIRS imaging in response to visual stimulation (task-evoked) using a cartoon-based stimulus. Measure of the amplitude of the peak response to viewing radial checkerboard blended with the animated cartoon for total Hb, OxyHb and DeoxyHb concentration change.

  2. Latency of the visual hemodynamic response

    Time frame: Inclusion visit

    Cortical hemodynamic activity data recorded via fNIRS imaging in response to visual stimulation (task-evoked) using a cartoon-based stimulus. Measure of the latency of the peak response to viewing radial checkerboard blended with the animated cartoon for total Hb, OxyHb and DeoxyHb concentration change.

Secondary outcomes

  1. Clinical Endpoints_Presence of epilepsy

    Time frame: Inclusion visit

    Presence of epilepsy

  2. Clinical Endpoints_Type of epilepsy

    Time frame: Inclusion visit

    Type of epilepsy

  3. Clinical Endpoints_Treatment of epilepsy

    Time frame: Inclusion visit

    Antiepileptic treatment (if any)

  4. Clinical endpoints_Developmental trajectory

    Time frame: Inclusion visit

    Age at walking, Age at first words, Age at 2 words association, Age at first sentences

  5. Clinical endpoints_Autism spectrum disorder (ASD)

    Time frame: Inclusion visit

    Autism spectrum disorder (ASD) diagnosis (using DSM5 criteria)

  6. Cognitive assessment with Leiter 3 scale

    Time frame: Inclusion visit

    Score of the cognitive assessment obtained with the Leiter 3 scale (4 cognitive sub-tests to be able to compute the non-verbal IQ and 2 non-verbal memory sub-tests)

  7. Cognitive assessment with Bayley 4 scale

    Time frame: Inclusion visit

    Score of the cognitive assessment obtained with Bayley 4 scale (if Leiter 3 scale is not possible)

  8. Language assessment with the PPVT-5 test

    Time frame: Inclusion visit

    Score obtained with the PPVT-5 (Peabody Picture Vocabulary Test Fifth Edition) test for receptive vocabulary

  9. Language assessment with the EVT-3 test

    Time frame: Inclusion visit

    Score obtained with the EVT-3 (Expressive Vocabulary Test third edition) test for expressive vocabulary.

  10. Reasoning tasks

    Time frame: Inclusion visit

    Simple reasoning tasks on tablet (with four difficulty levels, A to D: match-to-sample task, categorization task, analogical reasoning task, implicit rules tasks). Reaction Time (RT) and Error Rate (ER) will be anayzed for each of the four reasoning tasks. The RT is defined as the time elapsing between the display of the image and the time when the subject selected one of the two answers.

  11. Parental questionnaires to assess adaptive abilities (Vineland 2)

    Time frame: Inclusion visit

    Parental questionnaires to assess adaptive abilities (Vineland 2)

  12. Parental questionnaires to assess behavioral disorder (ABC 2)

    Time frame: Inclusion visit

    Parental questionnaires to assess behavioral disorder (ABC 2)

  13. Parental questionnaires to assess behavioral disorder (CBCL)

    Time frame: Inclusion visit

    Parental questionnaires to assess behavioral disorder (CBCL)

  14. Parental questionnaires to assess autistic features (PDD-MRS)

    Time frame: Inclusion visit

    Parental questionnaires to assess autistic features (PDD-MRS)

  15. Parental questionnaires to assess autistic features (SRS2)

    Time frame: Inclusion visit

    Parental questionnaires to assess autistic features (SRS2)

  16. Parental questionnaires to assess executive functions (BRIEF)

    Time frame: Inclusion visit

    Parental questionnaires to assess executive functions (BRIEF)

Study contacts

Contact information is provided by the study sponsor or research team.

Aurore CURIE, Dr

CONTACT

[email protected]

+336 70 62 69 76

Sponsors and collaborators

Lead sponsor

Hospices Civils de Lyon

Other

Registry information

Official study title

Optical Imaging as a Diagnostic Tool for Monitoring Brain Function in X-linked Rare Disorders

Acronym: IMAGINER

Important dates

Study start
2026
Primary completion
2029
Study completion
2029
First posted
Mar 11, 2025
Registry last updated
May 15, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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