Literature DB >> 27941319

The Vigabatrin Induced Retinal Toxicity is Associated with Photopic Exposure and Taurine Deficiency: An In Vivo Study.

Ye Tao1, Jixue Yang, Zhao Ma, Zhongjun Yan, Ce Liu, Jianjie Ma, Yunqin Wang, Zhen Yang, Yi Fei Huang.   

Abstract

BACKGROUND/AIMS: Retinal toxicity is one of the most commonly discussed and concerning adverse effects of vigabatrin (VGB). The present study explored the relationship between the VGB elicited retinal toxicity, photopic exposure, and taurine deficiency, aiming at screening for risk factors to minimize the adverse effects of VGB.
METHODS: The effects of VGB on function and morphology of mouse retinas were examined via a series of in vivo tests, including electroretinography (ERG), Spectral domain optical coherence tomography (SD-OCT), and optokinetic testing. Moreover, VGB-treated mice were in addition treated with taurine to verify possible protective effects against retinal toxicity.
RESULTS: A close relationship between VGB induced retinal toxicity and light exposure was observed. The VGB-treated mice which were reared in darkness preserved better visual function and retinal architectures as verified by the optokinetic tests, OCT and ERG examinations. The retinal taurine level of the VBG-treated mice which were exposed to light were significantly lower than that of the VBG mice reared in darkness. Furthermore, several in vivo evidence provided by our research confirmed that the VGB induced morphological and functional impairments could be partially alleviated by taurine treatment. The present study showed the retinal toxicity of VGB by in vivo measurements.
CONCLUSION: The VGB induced retinal toxicity is closely associated with photopic exposure and taurine deficiency. Patients who are taking VGB might benefit from minimization of light exposure and dietetic taurine supplements.
© 2016 The Author(s) Published by S. Karger AG, Basel.

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Year:  2016        PMID: 27941319     DOI: 10.1159/000453143

Source DB:  PubMed          Journal:  Cell Physiol Biochem        ISSN: 1015-8987


  10 in total

1.  Metabolomic analyses of vigabatrin (VGB)-treated mice: GABA-transaminase inhibition significantly alters amino acid profiles in murine neural and non-neural tissues.

Authors:  Dana C Walters; Erland Arning; Teodoro Bottiglieri; Erwin E W Jansen; Gajja S Salomons; Madalyn N Brown; Michelle A Schmidt; Garrett R Ainslie; Jean-Baptiste Roullet; K Michael Gibson
Journal:  Neurochem Int       Date:  2019-02-26       Impact factor: 3.921

Review 2.  Pharmacotherapy for Seizures in Tuberous Sclerosis Complex.

Authors:  Rima Nabbout; Mathieu Kuchenbuch; Catherine Chiron; Paolo Curatolo
Journal:  CNS Drugs       Date:  2021-08-21       Impact factor: 5.749

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

Authors:  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
Journal:  Redox Biol       Date:  2022-10-14       Impact factor: 10.787

4.  Transcriptome analysis in mice treated with vigabatrin identifies dysregulation of genes associated with retinal signaling circuitry.

Authors:  Dana Walters; Kara R Vogel; Madalyn Brown; Xutong Shi; Jean-Baptiste Roullet; K Michael Gibson
Journal:  Epilepsy Res       Date:  2020-06-20       Impact factor: 3.045

5.  Vigabatrin-Induced Retinal Functional Alterations and Second-Order Neuron Plasticity in C57BL/6J Mice.

Authors:  Kore Chan; Mrinalini Hoon; Bikash R Pattnaik; James N Ver Hoeve; Brad Wahlgren; Shawna Gloe; Jeremy Williams; Brenna Wetherbee; Julie A Kiland; Kara R Vogel; Erwin Jansen; Gajja Salomons; Dana Walters; Jean-Baptiste Roullet; K Michael Gibson; Gillian J McLellan
Journal:  Invest Ophthalmol Vis Sci       Date:  2020-02-07       Impact factor: 4.799

6.  Preclinical tissue distribution and metabolic correlations of vigabatrin, an antiepileptic drug associated with potential use-limiting visual field defects.

Authors:  Dana C Walters; Erwin E W Jansen; Garrett R Ainslie; Gajja S Salomons; Madalyn N Brown; Michelle A Schmidt; Jean-Baptiste Roullet; K M Gibson
Journal:  Pharmacol Res Perspect       Date:  2019-01-07

7.  Glial Cell Activation and Oxidative Stress in Retinal Degeneration Induced by β-Alanine Caused Taurine Depletion and Light Exposure.

Authors:  Ana Martínez-Vacas; Johnny Di Pierdomenico; Francisco J Valiente-Soriano; Manuel Vidal-Sanz; Serge Picaud; María Paz Villegas-Pérez; Diego García-Ayuso
Journal:  Int J Mol Sci       Date:  2021-12-29       Impact factor: 5.923

8.  Preferential accumulation of the active S-(+) isomer in murine retina highlights novel mechanisms of vigabatrin-associated retinal toxicity.

Authors:  Dana C Walters; Erwin E W Jansen; Gajja S Salomons; Erland Arning; Paula Ashcraft; Teodoro Bottiglieri; Jean-Baptiste Roullet; K Michael Gibson
Journal:  Epilepsy Res       Date:  2020-12-29       Impact factor: 3.045

9.  Modulation of vigabatrin induced cerebellar injury: the role of caspase-3 and RIPK1/RIPK3-regulated cell death pathways.

Authors:  Marwa Abd El-Kader; Eman Hamza; Randa El-Gamal; Amira Sobhy Rashed Eladl; Eman Mohamad El Nashar; Mansour A Alghamdi; Omnia S Erfan
Journal:  J Mol Histol       Date:  2021-05-27       Impact factor: 2.611

10.  Synergistic neuroprotective effect of rasagiline and idebenone against retinal ischemia-reperfusion injury via the Lin28-let-7-Dicer pathway.

Authors:  Dawei Lei; Zhengbo Shao; Xinrong Zhou; Huiping Yuan
Journal:  Oncotarget       Date:  2018-01-30
  10 in total

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