Please use this identifier to cite or link to this item:
https://hdl.handle.net/1959.11/58933
Title: | Retinal ganglion cell dysfunction in mice following acute intraocular pressure is exacerbated by P2X7 receptor knockout |
Contributor(s): | Wang, Anna Y M (author); Wong, Vickie H Y (author); Lee, Pei Ying (author); Bui, Bang V (author); Dudczig, Stefanie (author); Vessey, Kirstan A (author) ; Fletcher, Erica L (author) |
Publication Date: | 2021 |
Open Access: | Yes |
DOI: | 10.1038/s41598-021-83669-0 |
Handle Link: | https://hdl.handle.net/1959.11/58933 |
Abstract: | | There is increasing evidence for the vulnerability of specifc retinal ganglion cell (RGC) types in those with glaucoma and in animal models. In addition, the P2X7-receptor (P2X7-R) has been suggested to contribute to RGC death following stimulation and elevated IOP, though its role in RGC dysfunction prior to death has not been examined. Therefore, we examined the efect of an acute, non-ischemic intraocular pressure (IOP) insult (50 mmHg for 30 min) on RGC function in wildtype mice and P2X7-R knockout (P2X7-KO) mice. We examined retinal function using electroretinogram recordings and individual RGC responses using multielectrode arrays, 3 days following acute IOP elevation. Immunohistochemistry was used to examine RGC cell death and P2X7-R expression in several RGC types. Acute intraocular pressure elevation produced pronounced dysfunction in RGCs" whilst other retinal neuronal responses showed lesser changes. Dysfunction at 3 days post-injury was not associated with RGC loss or changes in receptive feld size. However, in wildtype animals, OFF-RGCs showed reduced spontaneous and light-elicited activity. In the P2X7-KO, both ON- and OFF-RGC light-elicited responses were reduced. Expression of P2X7-R in wildtype ON-RGC dendrites was higher than in other RGC types. In conclusion, OFF-RGCs were vulnerable to acute IOP elevation and their dysfunction was not rescued by genetic ablation of P2X7-R. Indeed, knockout of P2X7-R also caused ON-RGC dysfunction. These fndings aid our understanding of how pressure afects RGC function and suggest treatments targeting the P2X7-R need to be carefully considered.
Publication Type: | Journal Article |
Source of Publication: | Scientific reports, 11(4184), p. 1-16 |
Publisher: | Nature Publishing Group |
Place of Publication: | United Kingdom |
ISSN: | 2045-2322 |
Fields of Research (FoR) 2020: | 320907 Sensory systems 321204 Vision science |
Socio-Economic Objective (SEO) 2020: | 280103 Expanding knowledge in the biomedical and clinical sciences |
Peer Reviewed: | Yes |
HERDC Category Description: | C1 Refereed Article in a Scholarly Journal |
Appears in Collections: | Journal Article School of Science and Technology
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