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Clinical Effects and Safety of 3% Diquafosol After Cataract Surgery

Clinical Effects and Safety of 3% Diquafosol Ophthalmic Solution for Patients With Dry Eye After Cataract Surgery: A Randomized Controlled Trial

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02608489
Enrollment
86
Registered
2015-11-18
Start date
2014-01-31
Completion date
2015-01-31
Last updated
2016-10-17

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

Conditions

Dry Eye Syndromes

Brief summary

The purpose of this study is determine whether 3% diquafosol and 0.1% sodium hyaluronate are effective and safe in the treatment of patients with dry eye after cataract surgery.

Detailed description

Study group and protocol: This was a prospective open-label randomized study. All patients were given a full explanation of the study, and written informed consent was obtained from all participants. The study protocol adhered to the tenets of the Declaration of Helsinki. The Institutional Review Board and Ethics Committee, Soonchunhyang University Seoul Hospital, approved this study (SCHUH 2013-12-012). Patients were randomly allocated into the diquafosol group (D group) or the hyaluronate group (H group) using a simple unrestricted randomization method by the controller. The D group used 3% diquafosol tetrasodium ophthalmic solution (Diquas®; Santen Pharmaceutical Co., Ltd., Osaka, Japan) six times a day and the H group used 0.1% sodium hyaluronate ophthalmic solution (Hyalein®; Santen Pharmaceutical Co., Ltd., Osaka, Japan) six times a day. Both groups instilled each eye drop from postoperative day 1 to postoperative week 12. Participants: Consecutive patients aged 20-90 years with bilateral or unilateral cataract undergoing uncomplicated phacoemulsification and intraocular lens (IOL) implantation at Soonchunhyang University Hospital between January 2014 and January 2015 were enrolled. The inclusion criteria were patients with mild to moderate dry eye (level 1 or 2) based on the dry eye severity scale adopted by the Dry Eye Workshop (DEWS) report and who used only artificial tears occasionally1, and patients without or with mild blepharitis.18 The exclusion criteria were presence of any complications after cataract surgery such as cystoid macular edema, patients using any topical eye drops on a regular basis, treatment history of dry eye beyond artificial tears, any ocular surgery within the prior 6 months, contact lens wear, serious ocular surface disease (e.g., Sjögren's syndrome, ocular pemphigoid, conjunctival scarring, chemical injury), lacrimal or eyelid disease (e.g., moderate to severe blepharitis18), use of concomitant medications that could cause dry eye (e.g., antihistamines, antidepressants, decongestants, anticholinergic drugs), and allergy to any of the study medications. Objective and subjective clinical assessments of dry eye: All patients underwent ophthalmic examinations preoperatively and postoperatively in the order of following : uncorrected distant visual acuity (UDVA) test, an ocular surface disease index (OSDI) questionnaire, Schirmer I test without anesthesia, changes in HOAs after blinking, tear break-up time (TBUT), corneal fluorescein staining, and lissamine green (LG) conjunctival staining. Eyelid and anterior chamber cells were evaluated by slit-lamp biomicroscopy to assess the presence of blepharitis/meibomian gland plugging and intraocular inflammation. Routine postoperative examinations were scheduled for 1 week, 4 weeks, and 12 weeks after surgery. Efficacy and safety evaluation: To evaluate the efficacy of the two different eye drops, we compared each measurement between the two groups throughout the study period, and at each follow-up, and also compared the patterns of changes in each group to identify which group recovered earlier. we evaluated the safety of the two eye drops, including anterior chamber inflammation and discontinuation of the eye drops due to drug-related discomfort. Patients that had any adverse events or wanted to stop using the eye drops were excluded from the study, but these patients were included in the safety evaluation. Surgical procedure: A 2.8 mm clear corneal incision was made at the location of the steep corneal astigmatism axis. A standard phacoemulsification technique was used with topical anesthesia with 2% lidocaine. A foldable IOL was implanted into the capsular bag. There was no suture at the corneal incision site. Patients received moxifloxacin (Vigamox; Alcon, Fort Worth, TX), which is a preservative-free formulation, and rimexolone (Vexol; Alcon), which contains 0.01% BAK, four times a day after surgery for 4 weeks. Statistical analysis: For statistical analysis, UDVA was converted from Snellen into logMAR values. Baseline data were compared between the groups using the Mann-Whitney U-test, Fisher's exact test, and the linear mixed model after adjusting for inter-eye correlations, age, and sex. In addition, another mixed model was used to compare measurement data between the two groups by considering the correlation between both eyes of each patient at each follow-up. To obtain an overall comparison between treatment responses throughout the study period considering the two levels of correlation in subjects and follow-up, a bivariate generalized linear mixed (GLM) model with asymmetric random effects was used. In the last step, a bivariate GLM model was also used to identify the patterns of changes in measured data throughout the study period. The intergroup differences in adverse events were analyzed using Fisher's exact test. SPSS software (version 21, SPSS, Inc., Chicago, IL) was used for all statistical analyses, and P \< .05 was taken to indicate statistical significance.

Interventions

DRUGDiquafosol (Diquas)

Diquafosol group used diquafosol 6 times a day during study period.

Hyaluronate group used sodium hyaluronate 6 times a day during study period.

Sponsors

Soonchunhyang University Hospital
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
20 Years to 90 Years
Healthy volunteers
No

Inclusion criteria

* Bilateral or unilateral cataract undergoing phacoemulsification and intraocular lens (IOL) implantation at Soonchunhyang University Hospital between January 2014 and January 2015 * Patients with mild to moderate dry eye (level 1 or 2) based on the dry eye severity scale adopted by the Dry Eye Workshop (DEWS) report and who used only artificial tears occasionally

Exclusion criteria

* Presence of any complications after cataract surgery such as cystoid macular edema * Patients using any topical eye drops on a regular basis * Treatment history of dry eye beyond artificial tears * Any ocular surgery within the prior 6 months * Contact lens wear * Serious ocular surface disease (e.g., Sjögren's syndrome, ocular pemphigoid, conjunctival scarring, chemical injury) * Eyelid or lacrimal disease * Use of concomitant medications that could cause dry eye and allergy to any of the study medications

Design outcomes

Primary

MeasureTime frameDescription
Lissamine Green (LG) Conjunctival Staining That is Related to Dry Eye Severity12 weeksOcular surface damage was assessed by the National Eye Institute (NEI) workshop grading system, and conjunctival LG staining were evaluated. Instillation of 1% lissamine green in both eyes. After 1 or 2 full blinks, the intensity of staining of both medial and lateral bulbar conjunctiva was cored. According to the National Eye Institute (NEI) workshop grading system, the conjunctiva was divided into six sections. The minimum staining score was 0 and the maximum staining score was 18 points (up to 3 points for each section). 0 : best score (no conjunctival damage) 18 : worst score (severe conjunctival damages)
Tear Break-up Time (TBUT) That is Related to Dry Eye Severity.12 weeksTBUT was assessed by instillation of a drop of 2% sterile fluorescein into the conjunctival sac and recording the interval between the last complete blink and the first appearance of a dry spot or disruption of the tear film.
Corneal Fluorescein Staining That is Related to Dry Eye Severity.12 weeksOcular surface damage was assessed by the National Eye Institute (NEI) workshop grading system, and corneal fluorescein staining was evaluated. Instillation of fluorescein in both eyes. After 1 or 2 full blinks, the intensity of staining of both cornea was scored. According to the National Eye Institute (NEI) workshop grading system, the cornea was divided into five sections. The minimum staining score was 0 and the maximum staining score was 15 points (up to 3 points for each section). 0 : best score (no corneal damage) 15 : worst score (severe corneal damages)
an Ocular Surface Disease Index (OSDI) Questionnaire That is Related to Dry Eye Severity.12 weeksThe OSDI questionnaire consists of 12 questions that evaluate subjective symptoms related to dry eye and vision The score ranges were between 0 and 100 scores and the higher scores represent a worse outcome.
Schirmer I Test Without Anesthesia That is Related to Dry Eye Severity.12 weeksSchirmer paper strips were placed into the temporal one third of the lower conjunctival sac for 5 min and the wetness on the strips was measured.
Changes in HOAs After Blinking That is Related to Dry Eye Severity.12 weeksCorneal HOAs and serial measurement of ocular total HOAs were evaluated using a KR-1W wavefront analyzer (Topcon Medical System, Inc., Tokyo, Japan). Serial measurement of total ocular HOAs was measured every second for 10 s after complete blinking in continuous measurement mode. The difference between the fifth and first HOA was used to evaluate the tear film instability.

Secondary

MeasureTime frameDescription
Number of Participants Who Stop Using the Eye Drops Due to Drug-related Discomfort12 weeksDrug-related discomfort is defined as having started after eye drop instillation and lasting several minutes, occurring every time during instillation at any time up to 12 weeks into the follow-up period. Patients that had any adverse events or wanted to stop using the eye drops were excluded from the study, but these patients were included in the safety evaluation.
Grades of Anterior Chamber Cells.12 weeksAnterior chamber inflammation was examined with a slit-lamp clinically, and divided into six grades using the Standardization of Uveitis Nomenclature (SUN) working group grading scheme. grade 0 : \<1 cell in field, grade 0.5 : 1-5 cells in field, grade 1 : 6-15 cells in field, grade 2 : 16-25 cells in field grade 3 : 26-50 cells in field, grade 4 : \>50 cells in field Field size is a 1 mm X 1 mm slit beam

Participant flow

Recruitment details

Consecutive patients aged 20-90 years with bilateral or unilateral cataract undergoing uncomplicated phacoemulsification and intraocular lens (IOL) implantation at Soonchunhyang University Hospital between January 1, 2014 and January 31, 2015 were enrolled.

Participants by arm

ArmCount
Diqufosol
3% Diquafosol Tetrasodium Ophthalmic Solution Diquafosol (Diquas): Diquafosol group used diquafosol 6 times a day during study period.
30
Hyaluronate
0.1% Sodium Hyaluronate Ophthalmic Solution Sodium Hyaluronate (Hyalein): Hyaluronate group used sodium hyaluronate 6 times a day during study period.
33
Total63

Baseline characteristics

CharacteristicHyaluronateTotalDiqufosol
Age, Continuous65.37 years
STANDARD_DEVIATION 10.02
65.45 years
STANDARD_DEVIATION 10.62
65.53 years
STANDARD_DEVIATION 11.15
Fluorescein staining score ± SD1.77 score
STANDARD_DEVIATION 1.73
1.69 score
STANDARD_DEVIATION 1.75
1.62 score
STANDARD_DEVIATION 1.77
Grade of anterior chamber cells0 grade
STANDARD_DEVIATION 0
0 grade
STANDARD_DEVIATION 0
0 grade
STANDARD_DEVIATION 0
Lissamine green staining score ± SD1.94 score
STANDARD_DEVIATION 1.56
1.79 score
STANDARD_DEVIATION 1.38
1.55 score
STANDARD_DEVIATION 1.19
Obstructive Meibomian Gland Dysfunction (MGD)
Mild
14 participants27 participants13 participants
Obstructive Meibomian Gland Dysfunction (MGD)
None
19 participants36 participants17 participants
Ocular Surface Disease Index ± SD23.64 Scores on a scale
STANDARD_DEVIATION 16.62
22.96 Scores on a scale
STANDARD_DEVIATION 15.11
22.23 Scores on a scale
STANDARD_DEVIATION 14.65
Schirmer test ± SD3.67 mm
STANDARD_DEVIATION 2.88
3.58 mm
STANDARD_DEVIATION 3.31
3.52 mm
STANDARD_DEVIATION 4.13
Sex: Female, Male
Female
24 Participants42 Participants18 Participants
Sex: Female, Male
Male
9 Participants21 Participants12 Participants
tear Break-Up Time ± SD4.54 seconds
STANDARD_DEVIATION 1.85
4.70 seconds
STANDARD_DEVIATION 2.06
4.88 seconds
STANDARD_DEVIATION 2.52
Total High Order Aberration (HOA) changes ± SD0.041 microns
STANDARD_DEVIATION 0.048
0.041 microns
STANDARD_DEVIATION 0.045
0.042 microns
STANDARD_DEVIATION 0.041
Uncorrected visual acuity (LogMAR) ± SD0.77 logMAR
STANDARD_DEVIATION 0.45
0.78 logMAR
STANDARD_DEVIATION 0.47
0.80 logMAR
STANDARD_DEVIATION 0.52

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
— / —— / —
other
Total, other adverse events
1 / 310 / 33
serious
Total, serious adverse events
0 / 310 / 33

Outcome results

Primary

an Ocular Surface Disease Index (OSDI) Questionnaire That is Related to Dry Eye Severity.

The OSDI questionnaire consists of 12 questions that evaluate subjective symptoms related to dry eye and vision The score ranges were between 0 and 100 scores and the higher scores represent a worse outcome.

Time frame: 12 weeks

ArmMeasureGroupValue (MEAN)Dispersion
Diqufosolan Ocular Surface Disease Index (OSDI) Questionnaire That is Related to Dry Eye Severity.Baseline21.09 scores on a scaleStandard Deviation 3.86
Diqufosolan Ocular Surface Disease Index (OSDI) Questionnaire That is Related to Dry Eye Severity.Postoperative week 131.28 scores on a scaleStandard Deviation 5.49
Diqufosolan Ocular Surface Disease Index (OSDI) Questionnaire That is Related to Dry Eye Severity.Postoperative week 420.31 scores on a scaleStandard Deviation 4.63
Diqufosolan Ocular Surface Disease Index (OSDI) Questionnaire That is Related to Dry Eye Severity.Postoperative week 129.76 scores on a scaleStandard Deviation 7.95
Hyaluronatean Ocular Surface Disease Index (OSDI) Questionnaire That is Related to Dry Eye Severity.Postoperative week 1216.92 scores on a scaleStandard Deviation 13.11
Hyaluronatean Ocular Surface Disease Index (OSDI) Questionnaire That is Related to Dry Eye Severity.Baseline23.00 scores on a scaleStandard Deviation 2.66
Hyaluronatean Ocular Surface Disease Index (OSDI) Questionnaire That is Related to Dry Eye Severity.Postoperative week 423.00 scores on a scaleStandard Deviation 3.19
Hyaluronatean Ocular Surface Disease Index (OSDI) Questionnaire That is Related to Dry Eye Severity.Postoperative week 120.31 scores on a scaleStandard Deviation 4.63
Comparison: To obtain an overall comparison between treatment responses throughout the study period considering the 2 levels of correlation in subjects and follow-up, a linear mixed model with asymmetric random effects was used.p-value: 0.221Mixed Models Analysis
Comparison: Linear mixed model was used to compare measurement data between the 2 groups by considering the correlation between both eyes of each patient at postoperative week 12 follow-up.p-value: 0.015Mixed Models Analysis
Primary

Changes in HOAs After Blinking That is Related to Dry Eye Severity.

Corneal HOAs and serial measurement of ocular total HOAs were evaluated using a KR-1W wavefront analyzer (Topcon Medical System, Inc., Tokyo, Japan). Serial measurement of total ocular HOAs was measured every second for 10 s after complete blinking in continuous measurement mode. The difference between the fifth and first HOA was used to evaluate the tear film instability.

Time frame: 12 weeks

ArmMeasureGroupValue (MEAN)Dispersion
DiqufosolChanges in HOAs After Blinking That is Related to Dry Eye Severity.Baseline0.042 micronsStandard Deviation 0.01
DiqufosolChanges in HOAs After Blinking That is Related to Dry Eye Severity.Postoperative week 10.153 micronsStandard Deviation 0.057
DiqufosolChanges in HOAs After Blinking That is Related to Dry Eye Severity.Postoperative week 40.067 micronsStandard Deviation 0.029
DiqufosolChanges in HOAs After Blinking That is Related to Dry Eye Severity.Postoperative week 120.034 micronsStandard Deviation 0.04
HyaluronateChanges in HOAs After Blinking That is Related to Dry Eye Severity.Postoperative week 120.039 micronsStandard Deviation 0.147
HyaluronateChanges in HOAs After Blinking That is Related to Dry Eye Severity.Baseline0.041 micronsStandard Deviation 0.007
HyaluronateChanges in HOAs After Blinking That is Related to Dry Eye Severity.Postoperative week 40.074 micronsStandard Deviation 0.043
HyaluronateChanges in HOAs After Blinking That is Related to Dry Eye Severity.Postoperative week 10.260 micronsStandard Deviation 0.04
Comparison: To obtain an overall comparison between treatment responses throughout the study period considering the 2 levels of correlation in subjects and follow-up, a linear mixed model with asymmetric random effects was used.p-value: 0.08Mixed Models Analysis
Comparison: Linear mixed model was used to compare measurement data between the 2 groups by considering the correlation between both eyes of each patient at postoperative week 12 follow-up.p-value: 0.021Mixed Models Analysis
Primary

Corneal Fluorescein Staining That is Related to Dry Eye Severity.

Ocular surface damage was assessed by the National Eye Institute (NEI) workshop grading system, and corneal fluorescein staining was evaluated. Instillation of fluorescein in both eyes. After 1 or 2 full blinks, the intensity of staining of both cornea was scored. According to the National Eye Institute (NEI) workshop grading system, the cornea was divided into five sections. The minimum staining score was 0 and the maximum staining score was 15 points (up to 3 points for each section). 0 : best score (no corneal damage) 15 : worst score (severe corneal damages)

Time frame: 12 weeks

ArmMeasureGroupValue (MEAN)Dispersion
DiqufosolCorneal Fluorescein Staining That is Related to Dry Eye Severity.Baseline1.52 scoresStandard Deviation 0.41
DiqufosolCorneal Fluorescein Staining That is Related to Dry Eye Severity.Postoperative week 12.09 scoresStandard Deviation 0.45
DiqufosolCorneal Fluorescein Staining That is Related to Dry Eye Severity.Postoperative week 41.09 scoresStandard Deviation 0.33
DiqufosolCorneal Fluorescein Staining That is Related to Dry Eye Severity.Postoperative week 120.48 scoresStandard Deviation 0.77
HyaluronateCorneal Fluorescein Staining That is Related to Dry Eye Severity.Postoperative week 121.21 scoresStandard Deviation 1.45
HyaluronateCorneal Fluorescein Staining That is Related to Dry Eye Severity.Baseline1.78 scoresStandard Deviation 0.28
HyaluronateCorneal Fluorescein Staining That is Related to Dry Eye Severity.Postoperative week 41.73 scoresStandard Deviation 0.23
HyaluronateCorneal Fluorescein Staining That is Related to Dry Eye Severity.Postoperative week 12.88 scoresStandard Deviation 0.31
Comparison: To obtain an overall comparison between treatment responses throughout the study period considering the 2 levels of correlation in subjects and follow-up, a linear mixed model with asymmetric random effects was used.p-value: 0.045Mixed Models Analysis
Primary

Lissamine Green (LG) Conjunctival Staining That is Related to Dry Eye Severity

Ocular surface damage was assessed by the National Eye Institute (NEI) workshop grading system, and conjunctival LG staining were evaluated. Instillation of 1% lissamine green in both eyes. After 1 or 2 full blinks, the intensity of staining of both medial and lateral bulbar conjunctiva was cored. According to the National Eye Institute (NEI) workshop grading system, the conjunctiva was divided into six sections. The minimum staining score was 0 and the maximum staining score was 18 points (up to 3 points for each section). 0 : best score (no conjunctival damage) 18 : worst score (severe conjunctival damages)

Time frame: 12 weeks

ArmMeasureGroupValue (MEAN)Dispersion
DiqufosolLissamine Green (LG) Conjunctival Staining That is Related to Dry Eye SeverityBaseline1.40 Scores on a scaleStandard Deviation 0.32
DiqufosolLissamine Green (LG) Conjunctival Staining That is Related to Dry Eye SeverityPostoperative week 12.56 Scores on a scaleStandard Deviation 0.73
DiqufosolLissamine Green (LG) Conjunctival Staining That is Related to Dry Eye SeverityPostoperative week 40.86 Scores on a scaleStandard Deviation 1.18
DiqufosolLissamine Green (LG) Conjunctival Staining That is Related to Dry Eye SeverityPostoperative week 120.36 Scores on a scaleStandard Deviation 0.76
HyaluronateLissamine Green (LG) Conjunctival Staining That is Related to Dry Eye SeverityPostoperative week 121.33 Scores on a scaleStandard Deviation 2.04
HyaluronateLissamine Green (LG) Conjunctival Staining That is Related to Dry Eye SeverityBaseline1.91 Scores on a scaleStandard Deviation 0.22
HyaluronateLissamine Green (LG) Conjunctival Staining That is Related to Dry Eye SeverityPostoperative week 42.31 Scores on a scaleStandard Deviation 2.12
HyaluronateLissamine Green (LG) Conjunctival Staining That is Related to Dry Eye SeverityPostoperative week 13.86 Scores on a scaleStandard Deviation 0.5
Comparison: To obtain an overall comparison between treatment responses throughout the study period considering the 2 levels of correlation in subjects and follow-up, a linear mixed model with asymmetric random effects was used.p-value: 0.001Mixed Models Analysis
Comparison: Linear mixed model was used to compare measurement data between the 2 groups by considering the correlation between both eyes of each patient at postoperative week 4p-value: 0.002Mixed Models Analysis
Comparison: Linear mixed model was used to compare measurement data between the 2 groups by considering the correlation between both eyes of each patient at postoperative week 12p-value: 0.034Mixed Models Analysis
Primary

Schirmer I Test Without Anesthesia That is Related to Dry Eye Severity.

Schirmer paper strips were placed into the temporal one third of the lower conjunctival sac for 5 min and the wetness on the strips was measured.

Time frame: 12 weeks

ArmMeasureGroupValue (MEAN)Dispersion
DiqufosolSchirmer I Test Without Anesthesia That is Related to Dry Eye Severity.Baseline3.61 mmStandard Deviation 0.84
DiqufosolSchirmer I Test Without Anesthesia That is Related to Dry Eye Severity.Postoperative week 12.03 mmStandard Deviation 0.37
DiqufosolSchirmer I Test Without Anesthesia That is Related to Dry Eye Severity.Postoperative week 43.22 mmStandard Deviation 0.62
DiqufosolSchirmer I Test Without Anesthesia That is Related to Dry Eye Severity.Postoperative week 124.10 mmStandard Deviation 2.87
HyaluronateSchirmer I Test Without Anesthesia That is Related to Dry Eye Severity.Postoperative week 122.52 mmStandard Deviation 2.08
HyaluronateSchirmer I Test Without Anesthesia That is Related to Dry Eye Severity.Baseline3.69 mmStandard Deviation 0.58
HyaluronateSchirmer I Test Without Anesthesia That is Related to Dry Eye Severity.Postoperative week 42.59 mmStandard Deviation 0.43
HyaluronateSchirmer I Test Without Anesthesia That is Related to Dry Eye Severity.Postoperative week 11.76 mmStandard Deviation 0.25
Comparison: To obtain an overall comparison between treatment responses throughout the study period considering the 2 levels of correlation in subjects and follow-up, a linear mixed model with asymmetric random effects was used.p-value: 0.256Mixed Models Analysis
Comparison: Linear mixed model was used to compare measurement data between the 2 groups by considering the correlation between both eyes of each patient at Postoperative week 12 follow-up.p-value: 0.025Mixed Models Analysis
Primary

Tear Break-up Time (TBUT) That is Related to Dry Eye Severity.

TBUT was assessed by instillation of a drop of 2% sterile fluorescein into the conjunctival sac and recording the interval between the last complete blink and the first appearance of a dry spot or disruption of the tear film.

Time frame: 12 weeks

ArmMeasureGroupValue (MEAN)Dispersion
DiqufosolTear Break-up Time (TBUT) That is Related to Dry Eye Severity.Baseline4.98 secondsStandard Deviation 0.53
DiqufosolTear Break-up Time (TBUT) That is Related to Dry Eye Severity.Postoperative week 13.50 secondsStandard Deviation 1.35
DiqufosolTear Break-up Time (TBUT) That is Related to Dry Eye Severity.Postoperative week 45.64 secondsStandard Deviation 1.89
DiqufosolTear Break-up Time (TBUT) That is Related to Dry Eye Severity.Postoperative week 126.69 secondsStandard Deviation 2.23
HyaluronateTear Break-up Time (TBUT) That is Related to Dry Eye Severity.Postoperative week 124.38 secondsStandard Deviation 1.92
HyaluronateTear Break-up Time (TBUT) That is Related to Dry Eye Severity.Baseline4.50 secondsStandard Deviation 0.36
HyaluronateTear Break-up Time (TBUT) That is Related to Dry Eye Severity.Postoperative week 43.96 secondsStandard Deviation 1.46
HyaluronateTear Break-up Time (TBUT) That is Related to Dry Eye Severity.Postoperative week 13.00 secondsStandard Deviation 1.16
Comparison: To obtain an overall comparison between treatment responses throughout the study period considering the 2 levels of correlation in subjects and follow-up, a linear mixed model with asymmetric random effects was used.p-value: <0.001Mixed Models Analysis
Comparison: Linear mixed model was used to compare measurement data between the 2 groups by considering the correlation between both eyes of each patient at postoperative week 4p-value: <0.001Mixed Models Analysis
Comparison: Linear mixed model was used to compare measurement data between the 2 groups by considering the correlation between both eyes of each patient at postoperative week 12p-value: <0.001Mixed Models Analysis
Secondary

Grades of Anterior Chamber Cells.

Anterior chamber inflammation was examined with a slit-lamp clinically, and divided into six grades using the Standardization of Uveitis Nomenclature (SUN) working group grading scheme. grade 0 : \<1 cell in field, grade 0.5 : 1-5 cells in field, grade 1 : 6-15 cells in field, grade 2 : 16-25 cells in field grade 3 : 26-50 cells in field, grade 4 : \>50 cells in field Field size is a 1 mm X 1 mm slit beam

Time frame: 12 weeks

ArmMeasureGroupValue (MEAN)Dispersion
DiqufosolGrades of Anterior Chamber Cells.Baseline0 gradeStandard Deviation 0
DiqufosolGrades of Anterior Chamber Cells.Postoperative week 11.54 gradeStandard Deviation 0.34
DiqufosolGrades of Anterior Chamber Cells.Postoperative week 40.16 gradeStandard Deviation 0.26
DiqufosolGrades of Anterior Chamber Cells.Postoperative week 120 gradeStandard Deviation 0
HyaluronateGrades of Anterior Chamber Cells.Postoperative week 120 gradeStandard Deviation 0
HyaluronateGrades of Anterior Chamber Cells.Baseline0 gradeStandard Deviation 0
HyaluronateGrades of Anterior Chamber Cells.Postoperative week 40.36 gradeStandard Deviation 0.22
HyaluronateGrades of Anterior Chamber Cells.Postoperative week 11.78 gradeStandard Deviation 0.25
Comparison: To obtain an overall comparison between treatment responses throughout the study period considering the 2 levels of correlation in subjects and follow-up, a linear mixed model with asymmetric random effects was used.p-value: 0.151Mixed Models Analysis
Secondary

Number of Participants Who Stop Using the Eye Drops Due to Drug-related Discomfort

Drug-related discomfort is defined as having started after eye drop instillation and lasting several minutes, occurring every time during instillation at any time up to 12 weeks into the follow-up period. Patients that had any adverse events or wanted to stop using the eye drops were excluded from the study, but these patients were included in the safety evaluation.

Time frame: 12 weeks

Population: Overall, 1 of 31 patients (3.22%), a 64-year-old man who underwent bilateral sequential same-day cataract surgery, stopped using the study eye drops owing to severe irritation in the D group.

ArmMeasureValue (NUMBER)
DiqufosolNumber of Participants Who Stop Using the Eye Drops Due to Drug-related Discomfort1 participants
HyaluronateNumber of Participants Who Stop Using the Eye Drops Due to Drug-related Discomfort0 participants

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