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Recruiting NCT06369766

REtinal Markers In Neuroinflammatory Diseases ("REMIND")

Observational Multiple Sclerosis Neuroinflammatory Diseases

For patients and families

In plain language

An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.

What is being studied
The protocol lists: Optical coherence tomography (OCT), Static retinal vessel analyzer, Dynamic retinal vessel analyzer, Laser speckle flowgraphy system.
Who it may be relevant to
Registry conditions: Multiple Sclerosis, Neuroinflammatory Diseases. Basic parameters: from 18 years · All.
What needs checking
Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
Where it takes place
Switzerland
Next step
Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →
Official title

Retinal Markers in Neuroinflammatory Diseases: a Prospective Observational Study

Overview

The goal of this observational study, including patients with Multiple Sclerosis, patients with other neuroinflammatory diseases and healthy controls, is to determine the predictive value of retinal markers in predicting disease progression. Participants complete a questionnaire and undergo various non-invasive retinal routine clinical examinations.

Detailed description

Multiple Sclerosis (MS) is an autoimmune disease of the central nervous system (CNS) and represents one of the most common neurological disorders affecting young adults worldwide and often leads to significant disability over time. While MS typically presents with recurrent neurological symptoms known as relapses, most patients also experience progressive neurological deterioration independent of relapses, referred to as progression independent of relapse activity (PIRA). PIRA is a major contributor to long-term disability and represents a significant challenge in the management of MS. Early identification of patients at high risk to develop PIRA is crucial for therapeutic decisions and testing treatment efficacy, highlighting the urgent need for accurate predictive markers of progression in MS.

The primary objective of this longitudinal, observational, prospective, single center study is to investigate the predictive value of various retinal markers in predicting PIRA in MS patients.

The study assesses several easily obtained, non-invasive retinal measures:

* Neuroaxonal loss in the retina: This serves as a marker of neurodegeneration in the CNS. It will be assessed by measuring the volume of the ganglion cell-inner plexiform layer and the thickness of the peripapillary retinal nerve fiber layer using optical coherence tomography (OCT). * Neuroinflammation in the retina: This will be assessed by evaluating thickening of other retinal layers in OCT, particularly the inner nuclear layer. * Fixation instability of the patients: This serves as a marker of global neuronal dysfunction in the CNS. It will be measured using Scanner Laser Ophthalmoscopy-OCT. * Structural changes of the retinal vessels: Particularly, the arteriolar and venular diameters will be assessed. This serves as a marker of systemic microvascular health and will be measured using static retinal vessel analysis. * Functional/perfusional changes of the retinal vessels: For a subgroup of patients, this will be evaluated using OCT-angiography, and/or dynamic retinal vessel analysis, and/or laser speckle flowgraphy. These measures provide insights into the functional and perfusional changes of the retinal vessels.

As secondary objectives, this study comprises:

* Comparison with other biomarkers of neuroaxonal damage to determine whether the retinal markers are independent and/or stronger predictors of PIRA. * Comparison with the retinal markers of Healthy Controls and patients with other neuroinflammatory diseases of the CNS to understand the differences in mechanisms of damage. * Investigating the associations among the various retinal measures to understand the relationship between neuroaxonal loss, functional deficits and vascular changes in MS.

Data will be collected at baseline and annually over up to 5 years, or for some MS patients, up to 10 years, to evaluate changes in retinal markers and their correlation with disease progression. This comprehensive assessment will provide valuable insights into the utility of retinal markers in predicting PIRA and their relationship with disease severity and progression in MS.

Interventions

  • Diagnostic test Optical coherence tomography (OCT)
    OCT is used to measure: * peripapillary retinal nerve fiber layer (mean thickness in μm) * ganglion cell-inner plexiform layer (volume in mm\^3 and mean thickness in μm) * other retinal layers (inner nuclear layer, outer plexiform layer, outer nerve layer; volumes in mm\^3 and mean thickness in μm). The "scanner laser ophthalmoscopy"-function of the OCT device is used to continuously record the exact location of each participant's fixation point in relation to their fovea and thereby allows th
  • Diagnostic test Static retinal vessel analyzer
    Static retinal vessel analyzer is used to determine: * central retinal arteriolar diameter equivalents (in μm) * central retinal venular diameter equivalents (in μm) * arteriolar-to-venular diameter ratio
  • Diagnostic test Dynamic retinal vessel analyzer
    In a subgroup of participants, the dynamic retinal vessel analyzer is used to determine the arteriolar ficker light-induced dilatation, venular ficker light-induced dilatation, and Arteriolar constriction, measured in % dilatation in comparison to baseline.
  • Diagnostic test Laser speckle flowgraphy system
    In a subgroup of participants, the laser speckle flowgraphy system is used to measure the relative ocular blood flow as expressed in arbitary units of Mean Blur Rate.
  • Other Questionnaire
    All study participants will be asked to fill in a questionnaire with various questions regarding existing eye diseases, other diseases (including vascular diseases/risk factors), and daily physical activity that could influence the results of the retinal examinations. Physical activity will be assessed using an adapted form of the standardized Global Physical Activity Questionnaire.

Primary outcome measures

  • Occurence of Progression Independent of Relapse Activity (PIRA) [Time frame: 5 Years (or for a subgroup up to 10 years) after baseline]
  • Neuroaxonal loss in the retina (as marker of neurodegeneration in the CNS) [Time frame: Baseline and once every year over up to 5 years]
  • Neuroinflammation in the retina [Time frame: Baseline and once every year over up to 5 years]
  • Fixation instability (as marker of global neuronal dysfunction in the CNS) [Time frame: Baseline and once every year over up to 5 years]
  • Structural changes of the retinal vessels (as marker of systemic microvascular health) [Time frame: Baseline and once every year over up to 5 years]
  • (For a subgroup of participants) Functional/perfusional changes of the retinal vessels [Time frame: Baseline and once every year over up to 5 years]
Secondary outcome measures (3)
  • Relative value of retinal markers for the prediction of PIRA compared to or combined with other biomarkers of neuroaxonal damage [Time frame: Baseline and once every year over up to 5 years]
  • Comparison of the examined retinal markers of Multiple Sclerosis patients with Healthy Controls and with patients with other neuroinflammatory diseases of the CNS [Time frame: Baseline and once every year over up to 5 years]
  • The relationship between neuroaxonal loss, functional deficits and vascular changes in Multiple Sclerosis [Time frame: Baseline and once every year over up to 5 years]

Eligibility criteria

Inclusion criteria

  • All groups:
  • Age >18 years old
  • Patients with Multiple Sclerosis:
  • Diagnosis of Multiple Sclerosis, according to the last revisions of the McDonald Criteria (2017)
  • Patients with other neuroinflammatory diseases:
  • Diagnosis of Neuromyelitis optica spectrum disorder or Myelin oligodendrocyte glycoprotein antibody disease or other neuroinflammatory disorders other than Multiple Sclerosis

Exclusion criteria

  • All groups:
  • Inability to undergo Optical Coherence Tomography (OCT) and/or retinal vessel imaging (e.g. severe nystagmus that prevents eye fixation on both eyes)
  • Presence of any ocular pathology that may interfere with the validity of the OCT/retinal vessel analysis (cataracts, glaucoma, history of refractive defects >6 D etc.).
  • Pregnancy and Lactation
  • Healthy Controls
  • History of other neurological conditions: participants with a history of other significant neurological conditions that might interfere with the assessment or interpretation of the signs and symptoms will be excluded (e.g. confirmed Stroke, Acute disseminated encephalomyelitis, Chronic inflammatory Demyelinating Disease, Polyneuropathy, etc.)

Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.

Healthy volunteers: Yes

Study design

Observational model
Case-control

Study locations

Switzerland · 1 center
  • University Hospital Basel, Department of Neurology — Basel

Identifiers

NCT: NCT06369766 · 2023-02144; ko23Papadopoulou4

Primary sources (government registries)

View this study on ClinicalTrials.gov ↗