Effect of phenylephrine 1.0%-ketorolac 0.3% injection on tamsulosin-associated intraoperative floppy-iris syndrome.

Steven M Silverstein, Viren K Rana, Robert Stephens, Larry Segars, Joseph Pankratz, Shivani Rana, Mark S Juzych, Nissiri Nariman

Journal: Journal of cataract and refractive surgery 2019;44(9):1103-1108

PMID: 30078537

Abstract

PURPOSE

To determine the effect of phenylephrine 1.0%-ketorolac 0.3% injection (Omidria) on different components of intraoperative floppy-iris syndrome (IFIS).

SETTING

Silverstein Eye Centers, Kansas City, Missouri, USA.

DESIGN

Prospective case series.

METHODS

Men treated with tamsulosin having standard cataract extraction surgery were placed in a treatment group that received phenylephrine 1.0%-ketorolac 0.3% injection in the irrigation solution and a control group) that received basic saline solution. Every procedure was video recorded using an endocyclophotocoagulation (ECP) probe and microscopic view. Pupil dilation, iris billowing, and iris prolapse were measured using a micrometer, ECP recording grading scale, and microscopic recordings, respectively.

RESULTS

Each group (treatment and control) comprised 25 eyes of 25 patients. Although both groups had a decrease in pupil diameter before and after cataract extraction and before cataract extraction and after intraocular lens implantation, the changes were statistically significantly greater in the treatment group. Iris prolapse occurred in 3 patients (12.0%) in the treatment group and 14 patients (56.0%) in the control group (P < .001). Stage 3 (severe) pupil billowing occurred in 1 eye (4.0%) in the treatment group and 10 eyes (40.0%) in the control group (P < .001).

CONCLUSIONS

The use of the phenylephrine 1.0%-ketorolac 0.3% injection combination added to the irrigating solution during cataract surgery in patients at risk for IFIS led to significantly better prevention of miosis, less pupil billowing, and a reduced incidence of iris prolapse. A new grading scale for intraoperative iris abnormalities might be used for future evaluation.

Copyright © 2018 ASCRS and ESCRS. Published by Elsevier Inc. All rights reserved.

Address: From Silverstein Eye Centers (Silverstein) and the Department of Surgery (Silverstein), Department of Clinical Anatomy (V.K. Rana), Department of Anatomy (Stephens), the Department of Pharmacology (Segars), and Department of Clinical Anatomy (Pankratz), Kansas City University of Medicine and Biosciences, Kansas City, Missouri, and Kalamazoo College (S. Rana), Kalamazoo, and the Kresge Eye Institute (Juzych, Nariman), School of Medicine, Wayne State University, Detroit, Michigan, USA. Electronic address: [email protected].; From Silverstein Eye Centers (Silverstein) and the Department of Surgery (Silverstein), Department of Clinical Anatomy (V.K. Rana), Department of Anatomy (Stephens), the Department of Pharmacology (Segars), and Department of Clinical Anatomy (Pankratz), Kansas City University of Medicine and Biosciences, Kansas City, Missouri, and Kalamazoo College (S. Rana), Kalamazoo, and the Kresge Eye Institute (Juzych, Nariman), School of Medicine, Wayne State University, Detroit, Michigan, USA.
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