Literature DB >> 23392925

Taurine is a crucial factor to preserve retinal ganglion cell survival.

Nicolas Froger1, Firas Jammoul, David Gaucher, Lucia Cadetti, Henri Lorach, Julie Degardin, Dorothée Pain, Elisabeth Dubus, Valérie Forster, Ivana Ivkovic, Manuel Simonutti, José-Alain Sahel, Serge Picaud.   

Abstract

Retinal ganglion cells (RGCs) are spiking neurons, which send visual information to the brain, through the optic nerve. RGC degeneration occurs in retinal diseases, either as a primary process or secondary to photoreceptor loss. Mechanisms involved in this neuronal degeneration are still unclear and no drugs directly targeting RGC neuroprotection are yet available. Here, we show that taurine is one factor involved in preserving the RGC survival. Indeed, a taurine depletion induced by the antiepileptic drug, vigabatrin, was incriminated in its retinal toxicity leading to the RGC loss. Similarly, we showed that RGC degeneration can be induced by pharmacologically blocking the taurine-transporter with the chronic administration of a selective inhibitor, which results in a decrease in the taurine levels both in the plasma and in the retinal tissue. Finally, we found that taurine can directly prevent RGC degeneration, occurring either in serum-deprived pure RGC cultures or in animal models presenting an RGC loss (glaucomatous rats and the P23H rats, a model for retinitis pigmentosa). These data suggest that the retinal taurine level is a crucial marker to prevent RGC damage in major retinal diseases.

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Year:  2013        PMID: 23392925     DOI: 10.1007/978-1-4614-6130-2_6

Source DB:  PubMed          Journal:  Adv Exp Med Biol        ISSN: 0065-2598            Impact factor:   2.622


  10 in total

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4.  Taurine treatment of retinal degeneration and cardiomyopathy in a consanguineous family with SLC6A6 taurine transporter deficiency.

Authors:  Muhammad Ansar; Emmanuelle Ranza; Madhur Shetty; Sohail A Paracha; Maleeha Azam; Ilse Kern; Justyna Iwaszkiewicz; Omer Farooq; Constantin J Pournaras; Ariane Malcles; Mateusz Kecik; Carlo Rivolta; Waqar Muzaffar; Aziz Qurban; Liaqat Ali; Yacine Aggoun; Federico A Santoni; Periklis Makrythanasis; Jawad Ahmed; Raheel Qamar; Muhammad T Sarwar; L Keith Henry; Stylianos E Antonarakis
Journal:  Hum Mol Genet       Date:  2020-03-13       Impact factor: 6.150

5.  Vigabatrin retinal toxicity in children with infantile spasms: An observational cohort study.

Authors:  Carol A Westall; Tom Wright; Filomeno Cortese; Ananthavalli Kumarappah; O Carter Snead; Joseph R Buncic
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Review 6.  The Role of Endogenous Neuroprotective Mechanisms in the Prevention of Retinal Ganglion Cells Degeneration.

Authors:  Marita Pietrucha-Dutczak; Marialaura Amadio; Stefano Govoni; Joanna Lewin-Kowalik; Adrian Smedowski
Journal:  Front Neurosci       Date:  2018-11-15       Impact factor: 4.677

7.  The Relationship between Plasma Taurine Levels and Diabetic Complications in Patients with Type 2 Diabetes Mellitus.

Authors:  Duygu Sak; Fusun Erdenen; Cuneyt Müderrisoglu; Esma Altunoglu; Volkan Sozer; Hulya Gungel; Pınar Akca Guler; Tuncer Sak; Hafize Uzun
Journal:  Biomolecules       Date:  2019-03-11

8.  New solutions for old challenges in glaucoma treatment: is taurine an option to consider?

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Journal:  Neural Regen Res       Date:  2021-05       Impact factor: 5.135

9.  Effects of Hydrostatic Pressure on Electrical Retinal Activity in a Multielectrode Array-Based ex vivo Glaucoma Acute Model.

Authors:  Claudia Ingensiep; Kim Schaffrath; Peter Walter; Sandra Johnen
Journal:  Front Neurosci       Date:  2022-01-26       Impact factor: 4.677

10.  Systemic taurine treatment provides neuroprotection against retinal photoreceptor degeneration and visual function impairments.

Authors:  Ye Tao; Miao He; Qinghua Yang; Zhao Ma; Yingxin Qu; Wen Chen; Guanghua Peng; Dengke Teng
Journal:  Drug Des Devel Ther       Date:  2019-08-07       Impact factor: 4.162

  10 in total

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