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临床试验/NCT06000280
NCT06000280已完成不适用

Evaluation of Macular Thickness in Patients With Glaucoma in Use of Topical Prostaglandin Analogue Undergoing Trabeculectomy With Mitomycin C

Universidade Federal de Goias2 个研究点 分布在 1 个国家目标入组 37 人开始时间: 2021年1月4日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
入组人数
37
试验地点
2
主要终点
Previous use of prostaglandins does not change macular thickness after trabeculectomy

研究概览

简要总结

The aim of this study was to verify whether prostaglandin analogue (PA) eye drops influence the retinal thickness of glaucomatous patients undergoing trabeculectomy (TRAB) surgery. We selected eyes of patients with glaucoma with surgical indication for TRAB who were using PA eye drops and without previous retinal alterations, from the Centro de Referência em Oftalmologia (CEROF) from the Federal University of Goiás and Fundação Banco de Olhos de Goiás (FUBOG). Patients were divided into 2 groups: the study group (SG) and the control group (CG). In the CG, the PA was suspended between 30 and 60 days before the preoperative exams were performed (maximum of 15 days before surgery for both groups). All patients included were submitted to various eye exams before the procedure, and postoperatively on 3 occasions: 1 to 3 days ("PO1"), 6 to 9 days ("PO7") and 27 to 30 days ("PO30") after surgery.

详细描述

Purpose: The aim of this study was to verify whether topical prostaglandin analogue (PA) influence the macular thickness of glaucomatous patients undergoing trabeculectomy (TRAB) with Mitomycin C (MMC) .

Design:This is a randomized, prospective, comparative clinical trial with a single surgeon and masked to the study group.

Methods: We prospectively selected 40 eyes of patients with glaucoma with surgical indication for TRAB with MMC (0.4 mg/ml for 2 min) who were using prostaglandin analogue (PA) eye drops and without previous macular alterations, from the Centro de Referência em Oftalmologia (CEROF) from the Federal University of Goiás and Fundação Banco de Olhos de Goiás (FUBOG). The research had as inclusion criteria: patients with at least 18 years of age with Primary Glaucoma (Primary Open Angle Glaucoma, Primary Closed Angle Glaucoma, Normal Pressure Glaucoma, Pigmentary Glaucoma, Pseudoesfoliative Glaucoma), with changes in the visual field, typical defect compatible with glaucomatous lesion and/or typical anatomical impairment of the optic disc or retinal nerve fiber layer (such as Hoyt's sign, optic disc cupping ratio greater than 0.7, localized defect in the neural rima, or cupping asymmetry), who had an indication for TRAB with MMC at the physician's discretion (target IOP not established with maximum tolerable clinical medication and/or impossibility of using medication due to allergies and/or financial conditions). To be included, the operated eyes needed a reduction in IOP of at least 20% in relation to the baseline IOP in the last postoperative period (PO 30), and absence of the use of any ocular hypotensive medication. Exclusion criteria were any pathology that could interfere with the test results, such as: cataracts, corneal edema (such as leucoma, ulcers, keratopathies); poor quality of the OCT scan (signal strength ≤ 5/10); any past macular pathology (such as macular hole, diabetic maculopathy, age-related macular disease); use of diamox; advanced glaucoma with maximal therapy; advanced glaucoma with impaired fixation; any surgical complications including hypotonia (IOP < 6 mmHg) at any assessment; performing combined cataract and glaucoma surgery; history of cataract surgery less than 6 months ago; need for surgical reintervention during follow-up for any reason; and need for reintroduction of topical antiglaucoma therapy during follow-up. Eligible volunteers were previously randomized through the website www.randomization.com into 2 groups: study group (SG) and control group (CG). The initial objective was to include 40 eyes, 20 per group.

In the SG, patients were instructed to keep using eyedrops (including PA) until the day of surgery. In the CG, patients were instructed to suspend the PA between 30-60 days after the preoperative exams were performed, which were performed a maximum of 15 days before surgery for both groups. In the CG, patients were instructed to use 01 drop of carmellose sodium 5mg/ml at the same time they used the AP before its suspension. Pseudophakic patients for more than six months were included in each group in the order of previous randomization. In the CG, patients were informed to keep the eye drops in use, and to add the other classes of ocular hypotensive drugs, if they were not using them (except miotics and oral acetazolamide), with the aim of at least remedying the loss of the ocular hypotensive effect of the PA. The individuals were evaluated, including best corrected visual acuity by the Snellen chart, slit lamp biomicroscopy (XCELL 255, Reichert Inc., Depew, NY, USA), intraocular pressure (IOP) measured in a calibrated Goldmann tonometer (CT210, Reichert Inc. , Depew, NY, USA), gonioscopy with a 4-mirror Goldman lens (Volk Optical Inc, Mentor, OH, USA), fundoscopy under mydriasis with a 78D lens (Volk Optical Inc, Mentor, OH, USA), indirect binocular ophthalmoscopy with 2.0D lens (Volk Optical Inc, Mentor, OH, USA) and Optical Coherence Tomography (OCT) with Cirrus 4000 (Zeiss Inc.), macular protocol (macular thickness and ganglion cell analysis) preoperatively ( maximum of 15 days before surgery), and postoperatively on 3 occasions: 1 to 3 days ("PO1"), 6 to 9 days ("PO7") and 27 to 30 days ("PO30"). All tests were performed by the same technician, who was trained and experienced to carry them out. All patients underwent visual field examinations (Humphrey Field, model HFA II ÿ750, Carl Zeiss-Meditec, Dublin, California, USA) prior to surgery with the Swedish Interactive Threshold Algorithm (SITA) Standard 24-2 strategy, at most up to 2 months before the procedure. Macular thickness was evaluated by spectral domain Optical Coherence Tomography (OCT) obtained using the Cirrus 4000 apparatus (Zeiss Inc.), macular scanning protocol (macular thickness and ganglion cell analysis). Calculations were made based on data from the Ganglion cell analytical program and Macular Thickness: Macular cube (6 x 6 mm - 512 A-scans x 128 B-scans centered on the fovea). The macular thickness map using the 1mm, 3mm, and 6mm circles from the Early Treatment Diabetic Retinopathy Study (ETDRS) was used to assess the thickness of the 9 subfields. The regions were designated as: parafoveal (subfields of the 3 mm rings) and perifoveal (subfields of the 6 mm rings) superior, inferior, temporal and nasal in addition to the central subfield. OCT images were excluded if the signal strength was ≤5/10, and a new scan was immediately performed. Trabeculectomy using mitomycin C consisted of opening the conjunctival base of the fornix and applying mitomycin C 0.4 mg/ml for 2 minutes, as previously described. The postoperative regimen in both groups included the use of 1% Prednisolone eye drops (Ster® União Química Farmacêutica Nacional S/A., Pouso Alegre, MG, Brazil) starting every 2 hours, with a weekly reduction for 6 weeks ( 4/4 h, followed by 6/6 h, then every 8 h, 12/12 h and once a day), Moxifloxacin eye drops (Vigamox®, AlconLabs, Fort Worth, TX, USA) every 6 h for 10 days.

Statistical analysis was performed using the Statistical Package for Social Sciences program (IBM Corporation, Armonk, USA) version 26.0. The characterization of the sample was performed using absolute frequency, relative frequency, mean, standard deviation, median, minimum and maximum. Student's t test and Pearson's chi-square test were applied to the distribution of profile and macular parameters in groups with and without prostaglandin. Data normality was verified using the Shapiro-Wilk test. The delta and percentage variation were calculated at PO1, PO7 and PO30 in relation to the preoperative period. Correlation analysis was performed between thickness deltas with visual field Mean Deviation (MD) and IOP in groups with and without prostaglandin, weighted the effect of lens classification (partial correlation). The significance level adopted was 5% (p < 0.05).

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Prevention
盲法
Double (Investigator, Outcomes Assessor)

盲法说明

The techinician who performed the exams (Optical Coherence Tomography and Visual Field)

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Clinical Diagnose's of Primary Glaucoma
  • Primary Open Angle Glaucoma
  • Primary Closed Angle Glaucoma
  • Normal Pressure Glaucoma
  • Pigmentary Glaucoma
  • Pseudosfoliative Glaucoma)
  • Changes in the visual field
  • Typical defect compatible with glaucomatous lesion and/or typical anatomical impairment of the optic disc or retinal nerve fiber layer
  • Hoyt's sign
  • Optic disc cupping ratio greater than 0.7
  • Defect located in the neural rim or cupping asymmetry
  • Indication for TRAB with MMC at the physician's discretion (target IOP not established with maximum tolerable clinical medication or impossibility of using medication due to allergies and/or financial conditions)
  • The operated eyes needed a reduction in IOP by at least 20% in relation to the baseline IOP in the last postoperative period (PO30)
  • Absence of the use of any ocular hypotensive medication.

排除标准

  • Any pathology that could interfere with the test results
  • cataract (crystalline opacity)
  • corneal edema (such as leucoma, ulcers, keratopathies)
  • poor quality of exams (≤ 5/10)
  • any past macular pathology (such as macular hole, diabetic maculopathy, age related macular disease);
  • Use of diamox
  • Advanced glaucoma with maximal therapy
  • Advanced glaucoma with impaired fixation
  • Any surgical complications including hypotonia (IOP < 6 mmHg) at any assessment
  • Performing combined cataract and glaucoma surgery
  • History of cataract surgery less than 6 months ago
  • Need for surgical reintervention during follow-up for any reason
  • Need for reintroduction of topical antiglaucoma therapy.

结局指标

主要结局

Previous use of prostaglandins does not change macular thickness after trabeculectomy

时间窗: Measurements were performed at preop (up to 15 days before the intervention), 1 to 3 days ("PO1"), 6 to 9 days ("PO7") and 27 to 30 days ("PO30") after surgery.

The absolute variation of each variable of the macular parameters OCT in relation to the pre-op was performed and its comparison between the groups at different moments. There was equivalence in most of the evaluated comparisons. Considering the variation between pre-op and PO30, only the upper parafoveal thickness was statistically different between groups (p= 0.01). Taking into account the difference in percentage analyzing pre-op vs. PO30, only the superior parafoveal thickness showed statistical significance between groups (p=0.01).

次要结局

  • The presence of the lens did not influence the correlations(Measurements were performed at preop (up to 15 days before the intervention) and 27 to 30 days ("PO30") after surgery.)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

David Leonardo Cruvinel Isaac

Clinical Professor

Universidade Federal de Goias

研究点 (2)

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