Cargando…

Early localized alterations of the retinal inner plexiform layer in association with visual field worsening in glaucoma patients

Glaucoma is a chronic neurodegenerative disease of the optic nerve and a leading cause of irreversible blindness, worldwide. While the experimental research using animal models provides growing information about cellular and molecular processes, parallel analysis of the clinical presentation of glau...

Descripción completa

Detalles Bibliográficos
Autores principales: Aydın, Rukiye, Barış, Mine, Durmaz-Engin, Ceren, Al-Aswad, Lama A., Blumberg, Dana M., Cioffi, George A., Liebmann, Jeffrey M., Tezel, Tongalp H., Tezel, Gülgün
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7906339/
https://www.ncbi.nlm.nih.gov/pubmed/33630899
http://dx.doi.org/10.1371/journal.pone.0247401
_version_ 1783655268182130688
author Aydın, Rukiye
Barış, Mine
Durmaz-Engin, Ceren
Al-Aswad, Lama A.
Blumberg, Dana M.
Cioffi, George A.
Liebmann, Jeffrey M.
Tezel, Tongalp H.
Tezel, Gülgün
author_facet Aydın, Rukiye
Barış, Mine
Durmaz-Engin, Ceren
Al-Aswad, Lama A.
Blumberg, Dana M.
Cioffi, George A.
Liebmann, Jeffrey M.
Tezel, Tongalp H.
Tezel, Gülgün
author_sort Aydın, Rukiye
collection PubMed
description Glaucoma is a chronic neurodegenerative disease of the optic nerve and a leading cause of irreversible blindness, worldwide. While the experimental research using animal models provides growing information about cellular and molecular processes, parallel analysis of the clinical presentation of glaucoma accelerates the translational progress towards improved understanding, treatment, and clinical testing of glaucoma. Optic nerve axon injury triggers early alterations of retinal ganglion cell (RGC) synapses with function deficits prior to manifest RGC loss in animal models of glaucoma. For testing the clinical relevance of experimental observations, this study analyzed the functional correlation of localized alterations in the inner plexiform layer (IPL), where RGCs establish synaptic connections with retinal bipolar and amacrine cells. Participants of the study included a retrospective cohort of 36 eyes with glaucoma and a control group of 18 non-glaucomatous subjects followed for two-years. The IPL was analyzed on consecutively collected macular SD-OCT scans, and functional correlations with corresponding 10–2 visual field scores were tested using generalized estimating equations (GEE) models. The GEE-estimated rate of decrease in IPL thickness (R = 0.36, P<0.001) and IPL density (R = 0.36, P<0.001), as opposed to unchanged or increased IPL thickness or density, was significantly associated with visual field worsening at corresponding analysis locations. Based on multivariate logistic regression analysis, this association was independent from the patients’ age, the baseline visual field scores, or the baseline thickness or alterations of retinal nerve fiber or RGC layers (P>0.05). These findings support early localized IPL alterations in correlation with progressing visual field defects in glaucomatous eyes. Considering the experimental data, glaucoma-related increase in IPL thickness/density might reflect dendritic remodeling, mitochondrial redistribution, and glial responses for synapse maintenance, but decreased IPL thickness/density might correspond to dendrite atrophy. The bridging of experimental data with clinical findings encourages further research along the translational path.
format Online
Article
Text
id pubmed-7906339
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-79063392021-03-03 Early localized alterations of the retinal inner plexiform layer in association with visual field worsening in glaucoma patients Aydın, Rukiye Barış, Mine Durmaz-Engin, Ceren Al-Aswad, Lama A. Blumberg, Dana M. Cioffi, George A. Liebmann, Jeffrey M. Tezel, Tongalp H. Tezel, Gülgün PLoS One Research Article Glaucoma is a chronic neurodegenerative disease of the optic nerve and a leading cause of irreversible blindness, worldwide. While the experimental research using animal models provides growing information about cellular and molecular processes, parallel analysis of the clinical presentation of glaucoma accelerates the translational progress towards improved understanding, treatment, and clinical testing of glaucoma. Optic nerve axon injury triggers early alterations of retinal ganglion cell (RGC) synapses with function deficits prior to manifest RGC loss in animal models of glaucoma. For testing the clinical relevance of experimental observations, this study analyzed the functional correlation of localized alterations in the inner plexiform layer (IPL), where RGCs establish synaptic connections with retinal bipolar and amacrine cells. Participants of the study included a retrospective cohort of 36 eyes with glaucoma and a control group of 18 non-glaucomatous subjects followed for two-years. The IPL was analyzed on consecutively collected macular SD-OCT scans, and functional correlations with corresponding 10–2 visual field scores were tested using generalized estimating equations (GEE) models. The GEE-estimated rate of decrease in IPL thickness (R = 0.36, P<0.001) and IPL density (R = 0.36, P<0.001), as opposed to unchanged or increased IPL thickness or density, was significantly associated with visual field worsening at corresponding analysis locations. Based on multivariate logistic regression analysis, this association was independent from the patients’ age, the baseline visual field scores, or the baseline thickness or alterations of retinal nerve fiber or RGC layers (P>0.05). These findings support early localized IPL alterations in correlation with progressing visual field defects in glaucomatous eyes. Considering the experimental data, glaucoma-related increase in IPL thickness/density might reflect dendritic remodeling, mitochondrial redistribution, and glial responses for synapse maintenance, but decreased IPL thickness/density might correspond to dendrite atrophy. The bridging of experimental data with clinical findings encourages further research along the translational path. Public Library of Science 2021-02-25 /pmc/articles/PMC7906339/ /pubmed/33630899 http://dx.doi.org/10.1371/journal.pone.0247401 Text en © 2021 Aydın et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Aydın, Rukiye
Barış, Mine
Durmaz-Engin, Ceren
Al-Aswad, Lama A.
Blumberg, Dana M.
Cioffi, George A.
Liebmann, Jeffrey M.
Tezel, Tongalp H.
Tezel, Gülgün
Early localized alterations of the retinal inner plexiform layer in association with visual field worsening in glaucoma patients
title Early localized alterations of the retinal inner plexiform layer in association with visual field worsening in glaucoma patients
title_full Early localized alterations of the retinal inner plexiform layer in association with visual field worsening in glaucoma patients
title_fullStr Early localized alterations of the retinal inner plexiform layer in association with visual field worsening in glaucoma patients
title_full_unstemmed Early localized alterations of the retinal inner plexiform layer in association with visual field worsening in glaucoma patients
title_short Early localized alterations of the retinal inner plexiform layer in association with visual field worsening in glaucoma patients
title_sort early localized alterations of the retinal inner plexiform layer in association with visual field worsening in glaucoma patients
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7906339/
https://www.ncbi.nlm.nih.gov/pubmed/33630899
http://dx.doi.org/10.1371/journal.pone.0247401
work_keys_str_mv AT aydınrukiye earlylocalizedalterationsoftheretinalinnerplexiformlayerinassociationwithvisualfieldworseninginglaucomapatients
AT barısmine earlylocalizedalterationsoftheretinalinnerplexiformlayerinassociationwithvisualfieldworseninginglaucomapatients
AT durmazenginceren earlylocalizedalterationsoftheretinalinnerplexiformlayerinassociationwithvisualfieldworseninginglaucomapatients
AT alaswadlamaa earlylocalizedalterationsoftheretinalinnerplexiformlayerinassociationwithvisualfieldworseninginglaucomapatients
AT blumbergdanam earlylocalizedalterationsoftheretinalinnerplexiformlayerinassociationwithvisualfieldworseninginglaucomapatients
AT cioffigeorgea earlylocalizedalterationsoftheretinalinnerplexiformlayerinassociationwithvisualfieldworseninginglaucomapatients
AT liebmannjeffreym earlylocalizedalterationsoftheretinalinnerplexiformlayerinassociationwithvisualfieldworseninginglaucomapatients
AT tezeltongalph earlylocalizedalterationsoftheretinalinnerplexiformlayerinassociationwithvisualfieldworseninginglaucomapatients
AT tezelgulgun earlylocalizedalterationsoftheretinalinnerplexiformlayerinassociationwithvisualfieldworseninginglaucomapatients