Related Experiment Video
Updated: Jan 11, 2026

Intravital Imaging of Neutrophil Priming Using IL-1β Promoter-driven DsRed Reporter Mice
Published on: June 22, 2016
The P2X7 Receptor Regulates IL-1β Secretion in the Human Retina
Nuwan Niyadurupola1, Peter Sidaway2, David C Broadway1,2
1Department of Ophthalmology, Norfolk and Norwich University Hospitals NHS Foundation Trust, Colney Lane, Norwich NR4 7UY, UK.
Abstract:
The P2X7 receptor has been associated with the neurodegeneration of retinal ganglion cells (RGCs), which is central to the loss of vision in glaucoma. Furthermore, the activation of P2X7 has been shown to cause the death of RGCs, including in the human retina. Human organotypic retinal cultures (HORCs) were used to investigate the potential indirect mechanisms of RGC death. Of the 27 cytokine/growth factors assayed, the stimulation of P2X7 using BzATP (100 µM; 36 h) significantly increased the secretion of IL-1β and IL-10. IL-1β was selected for further investigation. BzATP (100 µM) caused an increase in the expression and release of IL-1β in a time-dependent manner; this increase was inhibited through a co-incubation with BBG (1 µM). Exogenous IL-1β alone (10 ng/mL) did not cause a loss of RGCs. However, IL-1β inhibited the loss of RGCs caused by BzATP, and this neuroprotection was prevented by the Interleukin-1 receptor-1 antagonist (IL-1ra) (100 ng/mL). The IL1 receptor IL-1R1 was localised to the inner retina close to the RGCs, although not predominantly co-localised with RGC bodies. The results suggest that the P2X7-mediated death of RGCs is not IL-1β mediated. Furthermore, IL-1β may be upregulated as part of a response to mitigate P2X7-mediated damage to the retina. Our research is the first to indicate the P2X7-mediated regulation of IL-1β in the human retina and supports the role of the ATP/P2X7/IL-1β axis in RGC survival and possible glaucomatous RGC degeneration.
Insights
The P2X7 receptor, implicated in glaucoma, does not cause retinal ganglion cell death via IL-1β. Instead, IL-1β may protect against P2X7-induced damage in the human retina.
Area of Science:
- Neuroscience
- Ophthalmology
- Immunology
Background:
- The P2X7 receptor (P2X7) is linked to retinal ganglion cell (RGC) neurodegeneration, a key factor in glaucoma vision loss.
- P2X7 activation can directly cause RGC death in the human retina.
Purpose of the Study:
- To investigate indirect mechanisms of RGC death mediated by P2X7 activation in human organotypic retinal cultures (HORCs).
- To explore the role of Interleukin-1 beta (IL-1β) in P2X7-induced RGC damage.
Main Methods:
- Stimulation of P2X7 using BzATP in HORCs.
- Assay of 27 cytokine/growth factors, focusing on IL-1β and IL-10.
- Investigated the effect of exogenous IL-1β and IL-1 receptor antagonist (IL-1ra) on RGCs.
Main Results:
- BzATP significantly increased IL-1β and IL-10 secretion.
- IL-1β upregulation was time-dependent and inhibited by BBG.
- Exogenous IL-1β protected RGCs from BzATP-induced loss, an effect blocked by IL-1ra.
Conclusions:
- P2X7-mediated RGC death is not directly caused by IL-1β.
- IL-1β may act as a neuroprotective factor against P2X7-mediated retinal damage.
- This study reveals P2X7-mediated regulation of IL-1β in the human retina, highlighting the ATP/P2X7/IL-1β axis in RGC survival and glaucoma.

