Quintuple Procedure for Ocular Surface Reconstruction and Visual Rehabilitation

Cornea. 2024 Feb 1;43(2):265-268. doi: 10.1097/ICO.0000000000003365. Epub 2023 Aug 21.

Abstract

Purpose: The aim of this study was to describe a combined surgical approach for ocular surface and visual rehabilitation in patients with limbal stem cell deficiency, corneal scarring, and cataract. We aimed to introduce this combined approach as an alternative to a staged approach and to describe the intraoperative use of a diamond ophthalmic burr (DOB) and optical coherence tomography (OCT) to achieve and confirm a smooth graft-host interface during the anterior lamellar keratoplasty (ALK) portion of the procedure.

Methods: The quintuple procedure described herein consists of a modified ALK, cataract extraction, intraocular lens implantation, simple limbal epithelial transplantation, and temporal tarsorrhaphy. Intraoperative OCT and DOB were used to guide the creation of the stromal bed during the ALK. The procedure was performed in a patient with limbal stem cell deficiency and corneal scarring after a chemical ocular burn.

Results: The tarsorrhaphy was removed at 3 months postoperatively once complete corneal epithelialization was observed. The best-corrected visual acuity improved from light perception preoperatively to 20/30 at 16 months postoperatively with the use of scleral contact lenses. At this postoperative time point, the cornea was clear and compact, and the ocular surface was stable.

Conclusions: The quintuple procedure allowed for visual and ocular surface rehabilitation in cases in which follow-up for a staged approach was not possible. Intraoperative OCT allowed for real-time visualization and dissection of the stromal bed, whereas the use of the DOB helped achieve a smooth stromal surface for an optimal graft-host interface.

MeSH terms

  • Cicatrix / surgery
  • Cornea / surgery
  • Corneal Diseases* / surgery
  • Corneal Injuries* / surgery
  • Corneal Transplantation* / methods
  • Humans
  • Limbal Stem Cell Deficiency*
  • Receptor Protein-Tyrosine Kinases
  • Visual Acuity

Substances

  • Receptor Protein-Tyrosine Kinases