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Evaluation of Vitrectomy for Diabetic Macular Edema

Evaluation of Vitrectomy for Diabetic Macular Edema Study

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT00709319
Acronym
Vitrectomy-D
Enrollment
87
Registered
2008-07-03
Start date
2005-07-31
Completion date
2009-02-28
Last updated
2019-10-07

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

Conditions

Diabetic Macular Edema, Diabetic Retinopathy

Keywords

Diabetic retinopathy, Diabetic macular edema, dme, vitrectomy

Brief summary

The study is designed as a prospective cohort study to assess changes in visual acuity and retinal thickening and surgical complications in subjects undergoing vitrectomy for diabetic macular edema. The study also aims to identify subgroups in which there appears to be a benefit of vitrectomy and subgroups in which vitrectomy does not appear to be beneficial and to obtain data that can be used to plan a randomized trial. Subject will be followed through 2 years, with a primary outcome at 6 months post vitrectomy surgery. The vitrectomy procedure will be performed based on the investigators usual care and is not considered part of the research although the procedure performed will be collected.

Detailed description

Study Design The study is designed as a prospective cohort study. A randomized trial design was considered but rejected after deciding that there was insufficient equipoise on the part of the investigator group to randomize eyes with DME and vitreal traction to surgery or no surgery (thus eyes which potentially may benefit most from vitrectomy would not be included), and there was insufficient information available on the natural course or surgical outcomes of eyes with DME but without significant traction. A cohort study provides the opportunity to collect data prospectively using a standardized protocol to assess the potential benefits and risks of vitrectomy. The results can be used to determine whether proceeding with a randomized trial has merit and what the design of the trial should be. If a randomized trial is to be conducted, the results plus the cohort study experience can be used to help design the protocol. Study Objectives 1. To provide information on the following outcomes in eyes with Diabetic Macular Edema (DME) that undergo vitrectomy: visual acuity, retinal thickening, resolution of traction (if present), surgical complications. 2. To identify subgroups in which there appears to be a benefit of vitrectomy and subgroups in which vitrectomy does not appear to be beneficial. 3. To obtain data that can be used to plan a randomized trial. B. Intervention Vitrectomy performed by the investigator's usual routine. C. Duration of Follow-Up: Two years D. Follow-up Visit Schedule Study visits for data collection at 3 and 6 months then 1, and 2 years. Additional visits follow investigator's usual routine. E. Rationale: There are at least two avenues of investigation that support the theoretical value of vitrectomy for the treatment of DME, based on (1) vitrectomy for the relief of traction on the macula and (2) vitrectomy to improve oxygenation of the macula leading to decreased permeability with subsequent resolution or decrease in DME. Vitrectomy to relieve biomechanical traction on the macula has been reported widely. Schepens and coworkers discussed the role of the vitreous and vitreomacular traction in cystoid macular edema in 1984. Nasrallah et al observed in 1988 the resolution of diabetic macular edema in individuals with spontaneous separation of the vitreous gel from the retina. In 1992, Lewis and coworkers reported success with vitrectomy and peeling of a thickened hyaloid membrane in eyes with DME that had this anatomical feature. Since this report of a nonrandomized retrospective case series, other authors have prospectively analyzed their series and supported the concept that relief of clear-cut anteroposterior traction, usually in the setting of an epiretinal membrane complex and associated vitreous adherence, may ameliorate macular thickening and edema in DME. Evaluation of these individuals and documentation of pre and postoperative characteristics have been rendered vastly more objective by ocular coherence tomography and the Retina Thickness Analyzer. Series using optical coherence tomography (OCT) to image cases where vitreomacular traction is observed and in some cases treated, has confirmed the clinical impression of mechanical forces at work on the posterior retina and has documented the anatomic improvement with surgery. How and in which cases OCT could refine our ability to diagnose and define clinically important anatomical features or relationships has not been investigated. As Kaiser and coworkers have documented, the OCT findings in the cases that have thus far come to vitrectomy in these situations support a conclusion that the disease process has progressed very far and in many cases the individuals have actual traction retinal detachments in their maculae. These severe cases are the exception in the spectrum of DME: most cases of macular edema have no obvious vitreomacular traction, but this factor has not been investigated adequately with our newer and more sophisticated imaging techniques. It is possible that subclinical traction on the macula exists in a large number of individuals with diabetes, whose internal limiting membranes at the vitreomacular interface often have a thickened, hypercellular appearance and whose vitreous gels, gradually contracting over many years, may exert subclinical but significant traction on the compromised diabetic macular vascular bed. The other line of reasoning and prior research that supports the possibility that vitrectomy would help DME is that articulated by Steffanson and others indicating that posterior segment oxygenation improves after vitrectomy. Using oxygen sensors on the retinal surface, these investigators have shown that retinal oxygen tensions increase after the vitreous gel is removed and the posterior segment becomes perfused by relatively oxygen-rich aqueous humor. Supporting this conclusion is the additional observation that retinal vessels decrease in caliber after vitrectomy, presumably in response to the improvement in hypoxia, although confounding factors that could contribute to this decrease, such as the addition of endolaser retinal photocoagulation, have not been ruled out. Numerous lines of investigation have elucidated factors producing permeability in retinal blood vessels. One of the most central of these factors is Vascular Endothelial Growth factor (VEGF), formerly known as Vascular Permeability Factor (VPF). VEGF is known to be upregulated by hypoxia, and downregulated by increased oxygenation. The speculated sequence of events in which vitrectomy produces improved oxygenation of the posterior segment, leading to downregulation of VEGF, leading to decreased vasopermeability, resulting in reduced macular thickening, is a plausible one. More rapid clearing of growth factors in the vitrectomized eye has also been postulated as a potential mechanism for this response. See full protocol at drcr.net for list of references

Interventions

None listed

Sponsors

National Eye Institute (NEI)
CollaboratorNIH
Jaeb Center for Health Research
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

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

Inclusion criteria

Subject-level Inclusion Criteria To be eligible, the following inclusion criteria (1-3) must be met: 1. Age \>= 18 years 2. Diagnosis of diabetes mellitus (type 1 or type 2) 3. Able and willing to provide informed consent. Subject-level

Exclusion criteria

A patient is not eligible if any of the following

Design outcomes

Primary

MeasureTime frameDescription
Visual AcuityBaseline to 6 monthsChange in best correct visual acuity letter score from baseline to six months as measured by a certified tester using an electronic visual acuity testing machine based on the Early Treatment Diabetic Retinopathy Study (ETDRS) method. A positive change denotes an improvement. Best value on the scale 97, worst 0.
Change in Optical Coherence Tomography Measured Central Subfield Thickness From BaselineBaseline to 6 MonthsChange in central subfield thickness is followup central subfield retinal thickness minus baseline thickness.
Percent of Participants With Change in Visual Acuity From Baseline to Six MonthsBaseline to 6 months
Change in Optical Coherence Tomography Central Subfield Thickness From Baseline to 6 MonthsBaseline to 6 monthsChange in thickness is followup thickness minus baseline thickness.

Secondary

MeasureTime frameDescription
Surgical Complications From Baseline to Six MonthsBaseline to 6 monthsIncluding intraoperative and perioperative medical complications. Same subject could have more than one complication

Countries

United States

Participant flow

Participants by arm

ArmCount
Diabetic Macular Edema and Vitreomacular Traction
The primary cohort included 87 eyes with DME and vitreomacular traction based on investigator's evaluation, visual acuity 20/63-20/400, optical coherence tomography (OCT) central subfield greater than 300 microns and no concomitant cataract extraction at the time of vitrectomy.Surgery was performed according to the investigator's usual routine. Follow-up visits were performed after 3 months, 6 months (primary end point), and 1 year. Only one eye per participant could be enrolled.
87
Total87

Withdrawals & dropouts

PeriodReasonFG000
Overall StudyDeath4
Overall StudyWithdrawal by Subject2

Baseline characteristics

CharacteristicDiabetic Macular Edema and Vitreomacular Traction
Age, Customized66 Years
Central Subfield Thickness491 Microns
Diabetes Type
Type 1
14 Participants
Diabetes Type
Type 2
73 Participants
Duration of Diabetes20 Years
Electronic-Early Treatment Diabetic Retinopathy Study Visual Acuity Letter Score52 Number on a Scale
Epiretinal Membranes Present
Can not deterimine
4 Participants
Epiretinal Membranes Present
Definite
43 Participants
Epiretinal Membranes Present
No
21 Participants
Epiretinal Membranes Present
Probable
19 Participants
Hemoglobin A1c7.1 Percent
Indocyanine green used to improve visualization
No
63 Participants
Indocyanine green used to improve visualization
Yes
24 Participants
Lens Status
Phakic
37 Participants
Lens Status
Pseudophakic/aphakic
50 Participants
Prior Scatter Photocoagulation
No
48 Participants
Prior Scatter Photocoagulation
Yes
39 Participants
Prior Treatment for Diabetic Macular Edema
No
36 Participants
Prior Treatment for Diabetic Macular Edema
Yes
51 Participants
Race/Ethnicity, Customized
African American
7 participants
Race/Ethnicity, Customized
Hispanic
5 participants
Race/Ethnicity, Customized
Other
6 participants
Race/Ethnicity, Customized
White
69 participants
Reasons for Vitrectomy: Unresponsive to other therapies
No
60 Participants
Reasons for Vitrectomy: Unresponsive to other therapies
Yes
27 Participants
Reasons for Vitrectomy: Vitreomacular interface abnormality87 Participants
Retinal Volume9.2 mm3
Retinopathy Severity
Microaneurysms only
1 Participants
Retinopathy Severity
Mild/moderate nonproliferative diabetic retinopath
6 Participants
Retinopathy Severity
Moderate/severe nonproliferative diabetic retinopa
14 Participants
Retinopathy Severity
Proliferative diabetic retinopathy
51 Participants
Retinopathy Severity
Retinal volume not obtained
11 Participants
Retinopathy Severity
Severe nonproliferative diabetic retinopathy
4 Participants
Sex: Female, Male
Female
39 Participants
Sex: Female, Male
Male
48 Participants
Status of the Vitreous
Attached
49 Participants
Status of the Vitreous
Detached
5 Participants
Status of the Vitreous
Partially Attached
28 Participants
Status of the Vitreous
Uncertain
5 Participants
Surgery characteristic: Focal/grid laser to diabetic macular edema used
No
83 Participants
Surgery characteristic: Focal/grid laser to diabetic macular edema used
Yes
4 Participants
Surgery characteristic: Laser used with endoprobe
No
66 Participants
Surgery characteristic: Laser used with endoprobe
Yes
21 Participants
Surgery characteristic: Laser used with indirect ophthalmoscope
No
80 Participants
Surgery characteristic: Laser used with indirect ophthalmoscope
Yes
7 Participants
Surgery characteristic: Panretinal photocoagulation, history of prior use
No
71 Participants
Surgery characteristic: Panretinal photocoagulation, history of prior use
Yes
16 Participants
Surgery characteristic: Panretinal photocoagulation, with none used prior
No
68 Participants
Surgery characteristic: Panretinal photocoagulation, with none used prior
Yes
19 Participants
Surgery characteristic: Scatter laser over peripheral schisis or barrier laser used
No
83 Participants
Surgery characteristic: Scatter laser over peripheral schisis or barrier laser used
Yes
4 Participants
Surgical Charachteristic:Epiretinal membrane peeled
No
34 Participants
Surgical Charachteristic:Epiretinal membrane peeled
Yes
53 Participants
Surgical Characteristic: Focal to grid breaks Laser Used
No
73 Participants
Surgical Characteristic: Focal to grid breaks Laser Used
Yes
14 Participants
Surgical Characteristic: Internal Limiting Membrane Removed
No
40 Participants
Surgical Characteristic: Internal Limiting Membrane Removed
Yes
47 Participants
Surgical Characteristic: Vitrectomy System
19/20 gauge
35 Participants
Surgical Characteristic: Vitrectomy System
23 gauge
9 Participants
Surgical Characteristic: Vitrectomy System
25 gauge
43 Participants
Triamcinolone acetonide used to improve visualization
No
57 Participants
Triamcinolone acetonide used to improve visualization
Yes
30 Participants
Trypan blue used to improve visualization
No
85 Participants
Trypan blue used to improve visualization
Yes
2 Participants

Adverse events

Event typeEG000
affected / at risk
deaths
Total, all-cause mortality
— / —
other
Total, other adverse events
12 / 87
serious
Total, serious adverse events
4 / 87

Outcome results

Primary

Change in Optical Coherence Tomography Central Subfield Thickness From Baseline to 6 Months

Change in thickness is followup thickness minus baseline thickness.

Time frame: Baseline to 6 months

ArmMeasureGroupValue (NUMBER)
Diabetic Macular Edema and Vitreomacular TractionChange in Optical Coherence Tomography Central Subfield Thickness From Baseline to 6 MonthsCentral subfield decrease of 100 microns or more49 participants
Diabetic Macular Edema and Vitreomacular TractionChange in Optical Coherence Tomography Central Subfield Thickness From Baseline to 6 MonthsCentral subfield decrease of 50 microns or more61 participants
Diabetic Macular Edema and Vitreomacular TractionChange in Optical Coherence Tomography Central Subfield Thickness From Baseline to 6 MonthsCentral subfield increase of 50 microns or more3 participants
Diabetic Macular Edema and Vitreomacular TractionChange in Optical Coherence Tomography Central Subfield Thickness From Baseline to 6 MonthsCentral subfield thickening decrease of >=50%50 participants
Diabetic Macular Edema and Vitreomacular TractionChange in Optical Coherence Tomography Central Subfield Thickness From Baseline to 6 MonthsCentral subfield less than 250 microns at 6 months33 participants
Primary

Change in Optical Coherence Tomography Measured Central Subfield Thickness From Baseline

Change in central subfield thickness is followup central subfield retinal thickness minus baseline thickness.

Time frame: Baseline to 6 Months

ArmMeasureValue (MEDIAN)
Diabetic Macular Edema and Vitreomacular TractionChange in Optical Coherence Tomography Measured Central Subfield Thickness From Baseline-160 microns
Primary

Percent of Participants With Change in Visual Acuity From Baseline to Six Months

Time frame: Baseline to 6 months

ArmMeasureGroupValue (NUMBER)
Diabetic Macular Edema and Vitreomacular TractionPercent of Participants With Change in Visual Acuity From Baseline to Six MonthsPercent with 10 or more letter imporvement38 Percentage of Participants
Diabetic Macular Edema and Vitreomacular TractionPercent of Participants With Change in Visual Acuity From Baseline to Six MonthsPercent with 10 or more letters worsening22 Percentage of Participants
Primary

Visual Acuity

Change in best correct visual acuity letter score from baseline to six months as measured by a certified tester using an electronic visual acuity testing machine based on the Early Treatment Diabetic Retinopathy Study (ETDRS) method. A positive change denotes an improvement. Best value on the scale 97, worst 0.

Time frame: Baseline to 6 months

ArmMeasureValue (MEDIAN)
Diabetic Macular Edema and Vitreomacular TractionVisual Acuity52 Units on a scale
Secondary

Surgical Complications From Baseline to Six Months

Including intraoperative and perioperative medical complications. Same subject could have more than one complication

Time frame: Baseline to 6 months

ArmMeasureGroupValue (NUMBER)
Diabetic Macular Edema and Vitreomacular TractionSurgical Complications From Baseline to Six MonthsTotal16 Participants
Diabetic Macular Edema and Vitreomacular TractionSurgical Complications From Baseline to Six MonthsElevated intraocular pressure requiring treatment7 Participants
Diabetic Macular Edema and Vitreomacular TractionSurgical Complications From Baseline to Six MonthsRetinal Detachment3 Participants
Diabetic Macular Edema and Vitreomacular TractionSurgical Complications From Baseline to Six MonthsEndophthalmitis1 Participants
Diabetic Macular Edema and Vitreomacular TractionSurgical Complications From Baseline to Six MonthsVitreous hemorrhage5 Participants
Diabetic Macular Edema and Vitreomacular TractionSurgical Complications From Baseline to Six MonthsAdditional vitreomacular interface abnormalities2 Participants
Diabetic Macular Edema and Vitreomacular TractionSurgical Complications From Baseline to Six MonthsDouble vision2 Participants
Diabetic Macular Edema and Vitreomacular TractionSurgical Complications From Baseline to Six MonthsLamella hole1 Participants
Diabetic Macular Edema and Vitreomacular TractionSurgical Complications From Baseline to Six MonthsChoroidal effusion1 Participants
Diabetic Macular Edema and Vitreomacular TractionSurgical Complications From Baseline to Six MonthsOther2 Participants

Source: ClinicalTrials.gov · Data processed: Mar 28, 2026