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Nicotinamide provides neuroprotection in glaucoma by protecting against mitochondrial and metabolic dysfunction

Authors :
James R. Tribble
Amin Otmani
Shanshan Sun
Sevannah A. Ellis
Gloria Cimaglia
Rupali Vohra
Melissa Jöe
Emma Lardner
Abinaya P. Venkataraman
Alberto Domínguez-Vicent
Eirini Kokkali
Seungsoo Rho
Gauti Jóhannesson
Robert W. Burgess
Peter G. Fuerst
Rune Brautaset
Miriam Kolko
James E. Morgan
Jonathan G. Crowston
Marcela Votruba
Pete A. Williams
Source :
Redox Biology, Vol 43, Iss , Pp 101988- (2021)
Publication Year :
2021
Publisher :
Elsevier, 2021.

Abstract

Nicotinamide adenine dinucleotide (NAD) is a REDOX cofactor and metabolite essential for neuronal survival. Glaucoma is a common neurodegenerative disease in which neuronal levels of NAD decline. We assess the effects of nicotinamide (a precursor to NAD) on retinal ganglion cells (the affected neuron in glaucoma) in normal physiological conditions and across a range of glaucoma relevant insults including mitochondrial stress and axon degenerative insults. We demonstrate retinal ganglion cell somal, axonal, and dendritic neuroprotection by nicotinamide in rodent models which represent isolated ocular hypertensive, axon degenerative, and mitochondrial degenerative insults. We performed metabolomics enriched for small molecular weight metabolites for the retina, optic nerve, and superior colliculus which demonstrates that ocular hypertension induces widespread metabolic disruption, including consistent changes to α-ketoglutaric acid, creatine/creatinine, homocysteine, and glycerophosphocholine. This metabolic disruption is prevented by nicotinamide. Nicotinamide provides further neuroprotective effects by increasing oxidative phosphorylation, buffering and preventing metabolic stress, and increasing mitochondrial size and motility whilst simultaneously dampening action potential firing frequency. These data support continued determination of the utility of long-term nicotinamide treatment as a neuroprotective therapy for human glaucoma.

Details

Language :
English
ISSN :
22132317
Volume :
43
Issue :
101988-
Database :
Directory of Open Access Journals
Journal :
Redox Biology
Publication Type :
Academic Journal
Accession number :
edsdoj.11535b7d2b994327966f83eaacbf9faa
Document Type :
article
Full Text :
https://doi.org/10.1016/j.redox.2021.101988