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Signalling pathways and cell death mechanisms in glaucoma: Insights into the molecular pathophysiology

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dc.contributor.author Basavarajappa, Devaraj
dc.contributor.author Galindo-Romero, Caridad
dc.contributor.author Gupta, Vivek
dc.contributor.author Agudo-Barriuso, Marta
dc.contributor.author Gupta, Veer-B
dc.contributor.author Graham, Stuart-L
dc.contributor.author Chitranshi, Nitin
dc.date.accessioned 2025-12-03T11:11:40Z
dc.date.available 2025-12-03T11:11:40Z
dc.date.issued 2023-12
dc.identifier.citation Basavarajappa D, Galindo-Romero C, Gupta V, Agudo-Barriuso M, Gupta VB, Graham SL, et al. Signalling pathways and cell death mechanisms in glaucoma: Insights into the molecular pathophysiology. Molecular Aspects of Medicine. diciembre de 2023;94:101216.
dc.identifier.issn 0098-2997
dc.identifier.uri https://sms.carm.es/ricsmur/handle/123456789/22938
dc.description.abstract Glaucoma is a complex multifactorial eye disease manifesting in retinal ganglion cell (RGC) death and optic nerve degeneration, ultimately causing irreversible vision loss. Research in recent years has significantly enhanced our understanding of RGC degenerative mechanisms in glaucoma. It is evident that high intraocular pressure (IOP) is not the only contributing factor to glaucoma pathogenesis. The equilibrium of pro-survival and pro-death signalling pathways in the retina strongly influences the function and survival of RGCs and optic nerve axons in glaucoma. Molecular evidence from human retinal tissue analysis and a range of experimental models of glaucoma have significantly contributed to unravelling these mechanisms. Accumulating evidence reveals a wide range of molecular signalling pathways that can operate -either alone or via intricate networks - to induce neurodegeneration. The roles of several molecules, including neurotrophins, interplay of intracellular kinases and phosphates, caveolae and adapter proteins, serine proteases and their inhibitors, nuclear receptors, amyloid beta and tau, and how their dysfunction affects retinal neurons are discussed in this review. We further underscore how anatomical alterations in various animal models exhibiting RGC degeneration and susceptibility to glaucoma-related neuronal damage have helped to characterise molecular mechanisms in glaucoma. In addition, we also present different regulated cell death pathways that play a critical role in RGC degeneration in glaucoma.
dc.language.iso eng
dc.publisher ELSEVIER
dc.rights Atribución/Reconocimiento-NoComercial-SinDerivados 4.0 Internacional 
dc.rights.uri https://creativecommons.org/licenses/by-nc-nd/4.0
dc.subject.mesh Animals
dc.subject.mesh Humans
dc.subject.mesh Amyloid beta-Peptides/metabolism
dc.subject.mesh Glaucoma/genetics/metabolism/pathology
dc.subject.mesh Retina/metabolism
dc.subject.mesh Retinal Ganglion Cells/metabolism/pathology
dc.subject.mesh Cell Death
dc.subject.mesh Disease Models, Animal
dc.title Signalling pathways and cell death mechanisms in glaucoma: Insights into the molecular pathophysiology
dc.type info:eu-repo/semantics/article
dc.identifier.pmid 37856930
dc.relation.publisherversion https://linkinghub.elsevier.com/retrieve/pii/S0098299723000560
dc.identifier.doi 10.1016/j.mam.2023.101216
dc.journal.title Molecular Aspects of Medicine
dc.identifier.essn 1872-9452


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