Skip to content
Open access · CC-BY via OpenAlex

Systemic taurine treatment affords functional and morphological neuroprotection of photoreceptors and restores retinal pigment epithelium function in RCS rats

Ana Martínez-Vacas, Johnny Di Pierdomenico, Alejandro Gallego‐Ortega, Francisco J. Valiente‐Soriano, Manuel Vidal‐Sanz, Serge Picaud, María Paz Villegas‐Pérez, Diego García‐Ayuso

Redox Biology · 2022 · ▲ 27 citations

Abstract

The aim of our work was to study whether taurine administration has neuroprotective effects in dystrophic Royal College of Surgeons (RCS) rats, suffering retinal degeneration secondary to impaired retinal pigment epithelium phagocytosis caused by a MERTK mutation. Dystrophic RCS-p + female rats (n = 36) were divided into a non-treated group (n = 16) and a treated group (n = 20) that received taurine (0.2 M) in drinking water from postnatal day (P)21 to P45, when they were processed. Retinal function was assessed with electroretinogram. Retinal morphology was assessed in cross-sections using immunohistochemical techniques to label photoreceptors, retinal microglial and macroglial cells, active zones of conventional and ribbon synaptic connections, and oxidative stress. Retinal pigment epithelium function was examined using intraocular fluorogold injections. Our results document that taurine treatment increases taurine plasma levels and photoreceptor survival in dystrophic rats. The number of photoreceptor nuclei rows at P45 was 3-5 and 6-11 in untreated and treated animals, respectively. Electroretinograms showed increases of 70% in the rod response, 400% in the a-wave amplitude, 30% in the b-wave amplitude and 75% in the photopic b-wave response in treated animals. Treated animals also showed decreased numbers of microglial cells in the outer retinal layers, decreased glial fibrillary acidic protein (GFAP) expression in Müller cells, decreased oxidative stress in the outer and inner nuclear layers and improved maintenance of synaptic connections. Treated animals showed increased FG phagocytosis in the retinal pigment epithelium cells. In conclusion, systemic taurine treatment decreases photoreceptor degeneration and increases electroretinographic responses in dystrophic RCS rats and these effects may be mediated through various neuroprotective mechanisms.

◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:

Read at source →

Provenance

Source
OpenAlex
DOI
10.1016/j.redox.2022.102506
Canonical
link ↗
Fetched
2026-08-03 MST

Cite this

APA
Martínez-Vacas, A., Pierdomenico, J.D., Gallego‐Ortega, A., Valiente‐Soriano, F.J., Vidal‐Sanz, M., Picaud, S., Villegas‐Pérez, M.P., &amp; García‐Ayuso, D. (2022). Systemic taurine treatment affords functional and morphological neuroprotection of photoreceptors and restores retinal pigment epithelium function in RCS rats. <em>Redox Biology</em>. https://doi.org/10.1016/j.redox.2022.102506
Vancouver
Martínez-Vacas A, Pierdomenico JD, Gallego‐Ortega A, Valiente‐Soriano FJ, Vidal‐Sanz M, Picaud S, et al. Systemic taurine treatment affords functional and morphological neuroprotection of photoreceptors and restores retinal pigment epithelium function in RCS rats. Redox Biology. 2022. doi:10.1016/j.redox.2022.102506.
BibTeX
@article{ana2022System, title = {Systemic taurine treatment affords functional and morphological neuroprotection of photoreceptors and restores retinal pigment epithelium function in RCS rats}, author = {Ana Martínez-Vacas and Johnny Di Pierdomenico and Alejandro Gallego‐Ortega and Francisco J. Valiente‐Soriano and Manuel Vidal‐Sanz and Serge Picaud and María Paz Villegas‐Pérez and Diego García‐Ayuso}, journal = {Redox Biology}, year = {2022}, doi = {10.1016/j.redox.2022.102506}, }

Research neighborhood

References, citing works, and semantically nearest findings. Click a node to open it.

Related findings