Systemic hypoxia led to little retinal neuronal loss and dramatic optic nerve glial response

Exp Eye Res. 2020 Apr:193:107957. doi: 10.1016/j.exer.2020.107957. Epub 2020 Feb 4.

Abstract

Vision loss is a devastating consequence of systemic hypoxia, but the cellular mechanisms are unclear. We investigated the impact of acute hypoxia in the retina and optic nerve. We induced systemic hypoxia (10% O2) in 6-8w mice for 48 h and performed in vivo imaging using optical coherence tomography (OCT) at baseline and after 48 h to analyze structural changes in the retina and optic nerve. We analyzed glial cellular and molecular changes by histology and immunofluorescence and the impact of pretreatment with 4-phenylbutyric acid (4-PBA) in oligodendroglia survival. After 48 h hypoxia, we found no change in ganglion cell complex thickness and no loss of retinal ganglion cells. Despite this, there was significantly increased expression of CCAAT-enhancer-binding protein homologous protein (CHOP), a marker of endoplasmic reticulum stress, in the retina and optic nerve. In addition, hypoxia induced obvious increase of GFAP expression in the anterior optic nerve, where it co-localized with CHOP, and significant loss of Olig2+ oligodendrocytes. Pretreatment with 4-PBA, which has been shown to reduce endoplasmic reticulum stress, rescued total Olig2+ oligodendrocytes and increased the pool of mature (CC-1+) but not of immature (PDGFRa+) oligodendrocytes. Consistent with a selective vulnerability of the retina and optic nerve in hypoxia, the most striking changes in the 48 h murine model of hypoxia were in glial cells in the optic nerve, including increased CHOP expression in the astrocytes and loss of oligodendrocytes. Our data support a model where glial dysfunction is among the earliest events in systemic hypoxia - suggesting that glia may be a novel target in treatment of hypoxia.

Keywords: Astrocytes; CHOP; ER stress; Endoplasmic reticulum; Glia; Hypoxia; Oligodendrocytes; Optic neuropathy; Retinal ganglion cells.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Cell Survival
  • Disease Models, Animal
  • Female
  • Hypoxia / complications*
  • Hypoxia / diagnosis
  • In Situ Nick-End Labeling
  • Mice
  • Mice, Inbred C57BL
  • Neuroglia / pathology*
  • Optic Nerve / pathology*
  • Optic Nerve Diseases / diagnosis*
  • Optic Nerve Diseases / etiology
  • Retinal Ganglion Cells / pathology
  • Tomography, Optical Coherence / methods