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Editors Selection IGR 21-4

Forms of Glaucoma: Glaucoma and Epiretinal Membranes

Min Hee Suh

Comment by Min Hee Suh on:

79817 Cross-Sectional Imaging Analysis of Epiretinal Membrane Involvement in Unilateral Open-Angle Glaucoma Severity, Sakimoto S; Okazaki T; Usui S et al., Investigative Ophthalmology and Visual Science, 2018; 59: 5745-5751


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Epiretinal membrane (ERM) is a fibrocellular tissue proliferation on the inner limiting membrane (ILM) leading to various changes in the retinal architecture. In this study, Sakimoto et al. reported that ERM can be a potential risk factor for unilateral severity in eyes with POAG. The proposed mechanism is mechanical stress and vascular insult to the inner retina induced by the ERM leading to thinning of the retinal nerve fiber layer (RNFL) and subsequent glaucomatous damage.

While this is an interesting theory, it needs to be confirmed by longitudinal studies investigating the temporal relationship between the ERM and RNFL change. In a recent study,1 RNFL was found to be thickened after the development of ERM. However, it is possible that although RNFL was thickened right after the development of an ERM, and persistent mechanical and vascular insult on the inner retinae results in eventual thinning of the RNFL. 2,3 Whether or not persistent traction from an ERM accelerates glaucomatous damage of retinal ganglion cell axons remains to be elucidated. As well, it may be helpful to assess the changes in the superficial retinal layer microvasculature in glaucomatous eyes with ERM by using optical coherence tomography angiography (OCT-A).

Nevertheless, the results of this study represent a good start in understanding the influence of ERM on the glaucomatous optic neuropathy. Further prospective longitudinal studies examining the RNFL changes before and after the development of the ERM in glaucoma patients are warranted.

References

  1. Kim JM, Kim KN, Kim WJ, Kim CS. Influence of epiretinal membranes on the retinal nerve fiber layer thickness measured by spectral domain optical coherence tomography in glaucoma. Korean J Ophthalmol. 2019;33(5):422-429.
  2. Govetto A, Bhavsar KV, Virgili G, et al. Tractional abnormalities of the central foveal bouquet in epiretinal membranes: clinical spectrum and pathophysiological perspectives. Am J Ophthalmol. 2017;184:167-180.
  3. Cho KH, Park SJ, Cho JH, Woo SJ, Park KH. Inner-retinal irregularity index predicts postoperative visual prognosis in idiopathic epiretinal membrane. Am J Ophthalmol. 2016;168: 139-149.


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