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Multimodal Screening of Dry Eye Disease

Multimodal Analysis of Ocular Surface for Screening Dry Eye Disease

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04235400
Acronym
MAOS-S
Enrollment
60
Registered
2020-01-21
Start date
2021-01-28
Completion date
2023-03-31
Last updated
2022-09-07

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

Conditions

Dry Eye Disease

Keywords

dry eye, TBUT, NIBUT

Brief summary

Two methods allow to evaluate tear breakup time (BUT): without prior dye instillation (No Dye BreakUp Time NDBUT) or after fluorescein instilation (FBUT). The interconnections between those two values are unknown

Detailed description

To date, there are a limited numbers of tests available for screening ocular dryness: i) assessement of tear production through Schirmer's test (paper strips are inserted into the eye for 5 minutes to measure the production of tears: normal value is superior to 15 mm wetting of the paper after 5 minutes, pathologic if inferior to 5-10 mm) ii) assessment of the ocular surface damage after instillation of fluorescein (presence of punctuate superficial lesions on the corneal and conjunctival epithelium) the with the slit lamp + blue filter iii) assessment of the FBUT (measurement of the tear breakup time after fluorescein dye instillation): normal value is superior to 15 seconds, pathologic value inf inferior to 5-10 seconds iv) assessment of the inflammation of eyelids (with the slit lamp). These diagnostic tests are used in everyday clinical practice, but however the international consensus conference (Dry Eye Workshop II, 2017) clearly recommended that, whenever practicable, some other tests must be carried out to optimize the efficacy the diagnostic procedure of dry eye disease. This is the case for the NDBUT (in opposition to the FBUT which uses fluorescein), the tear meniscus height (TMH) which give an rapid hint on the quantity of tears present on the ocular surface, the measure in real time of the tear osmolarity and, at last, the analysis of the thickness of the tear's layer by interferometry (measurement of the light fringes reflected by the tears when illuminated with polarized light, whereby the complete layer or the lipid layer alone can be evaluated separately depending on the machines used) and of the assessment of the quality of the Meibomian glands (non-contact imaging by infrared illumination). All these techniques are recommended for the detection and the analysis of the mechanism inducing ocular dryness because they are non-invasive and painless. They also are recommended to be carried out jointly because there is still no single objective criterion that is sufficiently robust to be used alone to make this diagnosis, which is therefore ultimately based on an overall analysis of these various parameters. Furthermore, the nature of the relationships between these different objective diagnostic tests remains still poorly understood. One of the least well elucidated points in this respect is the relationship between the FBUT and the NDBUT, the latter having the theoretical advantage of being less subjective (the measurement is made by a medical device that detects the deformation time of a light test pattern projected onto the tear film). This method therefore tends to measure rather the moment when the film becomes thinner (generating the deformation of the test pattern), whereas the measurement of FBUT (i.e. after instillation of fluorescein), is certainly subjective but it measures the real tear break time, which corresponds physiologically to a critical moment (regulated by the blink reflex when sensitivity is normal). A retrospective study, carried out in patients known to suffer from dry eye disease and using many of the same instruments as those to be used in the present study, suggested that the NDBUT is generally longer than the FBUT (with an increasing difference with the values), which could be considered paradoxical (the thinning being expected to precede the complete rupture). This relationship must therefore be studied prospectively to analyze the nature of this difference (correlation?) and its relationship with other markers of dry eye disease. The level of subjective symptoms and the impact on the quality of life felt by the patient will be recorded in order to explore whether the possible difference between NDBUT and FBUT is correlated with the intensity and/or frequency of the symptoms felt.

Interventions

DIAGNOSTIC_TESTNo Dye BreakUp Time

Measurement without dye of the tear meniscus height (TMH) which give an rapid hint on the quantity of tears present on the ocular surface, the measure in real time of the tear osmolarity and, at last, the analysis of the thickness of the tear's layer by interferometry (measurement of the light fringes reflected by the tears when illuminated with polarized light, whereby the complete layer or the lipid layer alone can be evaluated separately depending on the machines used) and of the assessment of the quality of the Meibomian glands (non-contact imaging by infrared illumination).

Sponsors

Assistance Publique - Hôpitaux de Paris
Lead SponsorOTHER

Study design

Observational model
CASE_CONTROL
Time perspective
PROSPECTIVE

Eligibility

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

Inclusion criteria

* adult patient (age \>18 yo), * known allergy to topical fluorescein * Patient informed of the study who gave it's non-opposition to participate

Exclusion criteria

* Ocular surgery (including punctal plugs surgery) within the 3 previous months * contact lens wearing within the 3 previous months * Patient under guardianship or convicted person * pregnant woman

Design outcomes

Primary

MeasureTime frameDescription
results of the NDBUT and FBUTat the end of the study (1year)analysis of the interconnections between the measure of the tear breakup time without adjunction of dye and measure obtained after instillation of the dye (fluorescein)

Secondary

MeasureTime frameDescription
Quality of the corneal epithelium (after fluorescein instillation, Oxford scale)at day 1
Ocular Surface Disease Index (OSDI) questionnaire resultsat day 1to assess the symptoms of ocular dryness
visual analogic scale (EVA) for the assessment of the impact of the dry eye for the patientat day 10 means no impact, 100 means total impact of the disease
Tear meniscus heightat day 1with the LACRYDIAG device
Tear osmolarityat day 1normal osmolarity is about 290 milliosmol per liter (mOsm/l). An elevated reading, \>313 mOsm/L indicates hyperosmolarity, and thus the loss of homeostasis leading to dry eye disease
Results of the tears interferometry with the LIPIVIEW deviceat day 1
Results of the meibography with the LIPIVIEW deviceat day 1
Thickness of the lipidic layer measured with LIPIVIEW deviceat day 1
Tear's production measured by Schirmer I testat day 1normal value is superior to 15 mm wetting of the paper after 5 minutes, pathologic if inferior to 5-10 mm
Results of the tears interferometry with the LACRYDIAG deviceat day 1

Countries

France

Contacts

Primary ContactMarc LABETOULLE, Pr
marc.labetoulle@aphp.fr33 1 45 21 36 90
Backup ContactAnne-Laurence BEST, Dr
bestanlo@hotmail.com

Outcome results

None listed

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