Clinical Trials Logo

Clinical Trial Summary

During glaucoma surgery, a new opening is created that allows fluid to drain out of the eye, bypassing the clogged drainage channels that are malfunctioning in patients with glaucoma. In some patients who have had glaucoma surgery too much fluid flows out and this results in a pressure that is too low. This may cause swelling of one layer at the back of the eye called the choroid. The formation of this swelling, called a choroidal effusion or "choroidal", often makes the eye pressure stay too low, and one of the results is a decrease in vision. The treatment for a choroidal effusion is to try to raise the eye pressure somewhat to allow the swelling to subside. In our clinical work, we have found that an injection with an anti-inflammatory drug called triamcinolone appears to be helpful in speeding up healing. We plan to compare two groups of patients with choroidal effusions, one group that gets an injection of triamcinolone and one that gets a "sham" treatment with nothing injected and compare the length of time it takes the choroidal effusions to disappear. Both groups receive the standard treatment with eye drops. We will also assess the outcome of the glaucoma surgery and any other complications that may occur. This research is aimed at studying a new method of improving the outcomes of surgery for glaucoma patients, and further the treatment of glaucoma.


Clinical Trial Description

Glaucoma is the second commonest cause of blindness in our society. The only effective treatment currently involves lowering the intraocular pressure (IOP) by medical, laser, or surgical techniques. Glaucoma surgery is indicated when further IOP lowering is needed despite maximal medical therapy and appropriate laser treatment. The choroid is a pigmented and vascular structure located between the sclera and retinal pigmented epithelium. Choroidal effusions are aberrant collections of fluid within the suprachoroidal potential space. There are two types of choroidal effusion, serous and hemorrhagic, depending on the type of fluid that accumulates in the suprachoroidal space. A serous choroidal effusion is composed of a transudate fluid from increased transmural pressure across the capillaries. Their development is usually relatively painless. Hemorrhagic choroidal effusion or suprachoroidal haemorrhage is a sudden and usually very painful accumulation of blood in the suprachoroidal space. 4 Choroidal effusions can be caused by both low IOP and pro-inflammatory conditions. Causes of concomitant low IOP and inflammation include trauma and eye surgery, especially glaucoma surgery. Inflammatory causes include scleritis. Modern glaucoma surgery has minimized the incidence of postoperative hypotony and resultant choroidal effusion but it is still prevalent. 1 The prevalence of choroidal effusions after glaucoma surgery varies between 10 and 15%, with average of 13% after trabeculectomy (the standard technique of glaucoma surgery). 5 A complication of low-IOP-induced choroidal effusion is hypotony maculopathy, which can cause permanent decline in vision, especially if not resolved in a timely manner. 5 Treatment can be either medical or surgical. Medical treatment includes cessation of any systemic and topical IOP lowering agents and adding cycloplegic agents, topical steroids and eventually systemic steroids. If treatments do not increase the IOP and reduce the choroidal effusion, then surgical management should be considered. Depending on the particular clinical circumstances of each patient, different surgical approaches can be used, including revision of the trabeculectomy flap, anterior chamber reformation, and surgical drainage of the effusion. As an alternative to systemic steroids, steroids as triamcinolone acetonide (Kenalog™) can be injected in the subtenons space. This treatment allows for a high local dose of steroids, without exposing the patient to systemic treatment. Not every patient requires steroid injection, and this treatment will be reserved for patients who do not respond to medical management after a few days. Following the sham or Kenalog injection participants will receive topical prednisolone acetate 1% qid for 4 weeks or PRN Topical atropine 1% qid for one week or PRN. There are several studies in the literature showing the benefit of a triamcinolone injection for different inflammatory conditions, such uveitis and for the treatment of diabetic maculopaty and cystoid macular edema. 6-9 Recently Shen et al. published the benefit of subtenons triamcinolone acetonide in the management of a combination of retinal detachment and choroidal effusion. 2 However we did not find any studies that assessed the benefit on triamcinolone subtenons injection for choroidal effusion after glaucoma surgery. In a recent retrospective study we performed a chart review of the effect of subtenons triamcinolone injection in patients with choroidal effusions after glaucoma surgery compared to a group of patients who did not receive the injection as part of their management. We found that recovery time in the injection group was significantly shorter than in patients with no injection, 10.6 days versus 27.44 days. (p=0.02). The study showed no difference in final intraocular pressure (IOP), number of medications and visual acuity. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT02917564
Study type Interventional
Source Sunnybrook Health Sciences Centre
Contact Catherine M Birt, MD FRCSC
Phone 416-480-5882
Email catherine.birt@sunnybrook.ca
Status Recruiting
Phase Phase 4
Start date October 14, 2020
Completion date December 31, 2024

See also
  Status Clinical Trial Phase
Recruiting NCT06000865 - Glaucoma Rehabilitation With Action viDeo Games and Exercise - GRADE N/A
Recruiting NCT06278597 - Automatic Evaluation of the Anterior Chamber Angle Width by a New Non-contact Optical Device N/A
Active, not recruiting NCT04271709 - Manhattan Vision Screening and Follow-Up Study (NYC-SIGHT) N/A
Recruiting NCT03274024 - The Asia Primary Tube Versus Trab (TVT) Study N/A
Completed NCT04552964 - Assessment of the Impact of an add-on and Its Smartphone Application on the Daily Management of Glaucoma N/A
Recruiting NCT01957267 - Functional and Structural Imaging for Glaucoma
Active, not recruiting NCT04624698 - iStent Inject New Enrollment Post-Approval Study N/A
Completed NCT04020705 - The Efficacy of Citicoline in Eyedrops (OMK1) in Reducing the Progression of Glaucoma N/A
Completed NCT03150160 - Additive Effect of Twice-daily Brinzolamide 1%/Brimonidine 0.2%Combination as an Adjunctive Therapy to Travoprost in Patients With Normal Tension Glaucoma Phase 4
Not yet recruiting NCT05581498 - Glaucoma Exercise as Medicine Study (GEMS). N/A
Recruiting NCT02921568 - Side-by-Side Comparison of P200TE and Spectral OCT/SLO on Diseased Eyes N/A
Active, not recruiting NCT02901730 - Clinical Study of LPI With Different Laser Wavelengths N/A
Completed NCT02955849 - A Trial of China Laser and Surgery Study Glaucoma in Rural China Early Phase 1
Recruiting NCT02554214 - Pilot Clinical Trial on a New Adjustable Glaucoma Drainage Device N/A
Recruiting NCT02471105 - Investigation of IOP and Tolerability of Bimatoprost 0.01% and Tafluprost Unit Dose Preservative Free 15 Microgram/ml Phase 4
Active, not recruiting NCT02390284 - Stop Retinal Ganglion Cell Dysfunction Study Phase 3
Completed NCT02628223 - 180 Degree vs. 360 Degree Selective Laser Trabeculoplasty as Initial Therapy for Glaucoma N/A
Completed NCT02520674 - Glaucoma Screening With Smartphone Ophthalmology N/A
Completed NCT02390245 - Philadelphia Telemedicine Glaucoma Detection and Follow-Up Study N/A
Completed NCT02653963 - Triamcinolone for Ahmed Glaucoma Valve N/A