Protective effect of magnesium acetyltaurate against NMDA-induced retinal damage involves restoration of minerals and trace elements homeostasis

Glutamate-mediated excitotoxicity involving N-methyl-D-aspartate (NMDA) receptors has been recognized as a final common outcome in pathological conditions involving death of retinal ganglion cells (RGCs). Overstimulation of NMDA receptors results in influx of calcium (Ca) and sodium (Na) ions and ef...

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Published in:Journal of Trace Elements in Medicine and Biology
Main Author: Jafri A.J.A.; Arfuzir N.N.N.; Lambuk L.; Iezhitsa I.; Agarwal R.; Agarwal P.; Razali N.; Krasilnikova A.; Kharitonova M.; Demidov V.; Serebryansky E.; Skalny A.; Spasov A.; Yusof A.P.M.; Ismail N.M.
Format: Article
Language:English
Published: Elsevier GmbH 2017
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84988700524&doi=10.1016%2fj.jtemb.2016.09.005&partnerID=40&md5=80d7e20afb613c37010192e99afe1fc0
id 2-s2.0-84988700524
spelling 2-s2.0-84988700524
Jafri A.J.A.; Arfuzir N.N.N.; Lambuk L.; Iezhitsa I.; Agarwal R.; Agarwal P.; Razali N.; Krasilnikova A.; Kharitonova M.; Demidov V.; Serebryansky E.; Skalny A.; Spasov A.; Yusof A.P.M.; Ismail N.M.
Protective effect of magnesium acetyltaurate against NMDA-induced retinal damage involves restoration of minerals and trace elements homeostasis
2017
Journal of Trace Elements in Medicine and Biology
39

10.1016/j.jtemb.2016.09.005
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84988700524&doi=10.1016%2fj.jtemb.2016.09.005&partnerID=40&md5=80d7e20afb613c37010192e99afe1fc0
Glutamate-mediated excitotoxicity involving N-methyl-D-aspartate (NMDA) receptors has been recognized as a final common outcome in pathological conditions involving death of retinal ganglion cells (RGCs). Overstimulation of NMDA receptors results in influx of calcium (Ca) and sodium (Na) ions and efflux of potassium (K). NMDA receptors are blocked by magnesium (Mg). Such changes due to NMDA overstimulation are also associated with not only the altered levels of minerals but also that of trace elements and redox status. Both the decreased and elevated levels of trace elements such as iron (Fe), zinc (Zn), copper (Cu) affect NMDA receptor excitability and redox status. Manganese (Mn), and selenium (Se) are also part of antioxidant defense mechanisms in retina. Additionally endogenous substances such as taurine also affect NMDA receptor activity and retinal redox status. Therefore, the aim of this study was to evaluate the effect of Mg acetyltaurate (MgAT) on the retinal mineral and trace element concentration, oxidative stress, retinal morphology and retinal cell apoptosis in rats after-NMDA exposure. One group of Sprague Dawley rats received intravitreal injection of vehicle while 4 other groups similarly received NMDA (160 nmol L−1). Among the NMDA injected groups, 3 groups also received MgAT (320 nmol L−1) as pre-treatment, co-treatment or post-treatment. Seven days after intravitreal injection, rats were sacrificed, eyes were enucleated and retinae were isolated for estimation of mineral (Ca, Na, K, Mg) and trace element (Mn, Cu, Fe, Se, Zn) concentration using Inductively Coupled Plasma (DRC ICP-MS) techniques (NexION 300D), retinal oxidative stress using Elisa, retinal morphology using H&E staining and retinal cell apoptosis using terminal deoxynucleotidyl transferase dUTP nick-end labeling (TUNEL). Intravitreal NMDA injection resulted in increased concentration of Ca (4.6 times, p < 0.0001), Mg (1.5 times, p < 0.01), Na (3 times, p < 0.0001) and K (2.3 times, p < 0.0001) compared to vehicle injected group. This was accompanied with significant increase of Ca/Mg and Na/K ratios, 3 and 1.27 times respectively, compared to control group. The trace elements such as Cu, Fe and Zn also showed a significant increase amounting to 3.3 (p < 0.001), 2.3 (p < 0.0001) and 3 (p < 0.0001) times respectively compared to control group. Se was increased by 60% (p < 0.005). Pre-treatment with MgAT abolished effect of NMDA on minerals and trace elements more effectively than co- and post-treatment. Similar observations were made for retinal oxidative stress, retinal morphology and retinal cell apoptosis. In conclusion, current study demonstrated the protective effect of MgAT against NMDA-induced oxidative stress and retinal cell apoptosis. This effect of MgAT was associated with restoration of retinal concentrations of minerals and trace elements. Further studies are warranted to explore the precise molecular targets of MgAT. Nevertheless, MgAT seems a potential candidate in the management of diseases involving NMDA-induced excitotoxicity. © 2016 Elsevier GmbH
Elsevier GmbH
0946672X
English
Article

author Jafri A.J.A.; Arfuzir N.N.N.; Lambuk L.; Iezhitsa I.; Agarwal R.; Agarwal P.; Razali N.; Krasilnikova A.; Kharitonova M.; Demidov V.; Serebryansky E.; Skalny A.; Spasov A.; Yusof A.P.M.; Ismail N.M.
spellingShingle Jafri A.J.A.; Arfuzir N.N.N.; Lambuk L.; Iezhitsa I.; Agarwal R.; Agarwal P.; Razali N.; Krasilnikova A.; Kharitonova M.; Demidov V.; Serebryansky E.; Skalny A.; Spasov A.; Yusof A.P.M.; Ismail N.M.
Protective effect of magnesium acetyltaurate against NMDA-induced retinal damage involves restoration of minerals and trace elements homeostasis
author_facet Jafri A.J.A.; Arfuzir N.N.N.; Lambuk L.; Iezhitsa I.; Agarwal R.; Agarwal P.; Razali N.; Krasilnikova A.; Kharitonova M.; Demidov V.; Serebryansky E.; Skalny A.; Spasov A.; Yusof A.P.M.; Ismail N.M.
author_sort Jafri A.J.A.; Arfuzir N.N.N.; Lambuk L.; Iezhitsa I.; Agarwal R.; Agarwal P.; Razali N.; Krasilnikova A.; Kharitonova M.; Demidov V.; Serebryansky E.; Skalny A.; Spasov A.; Yusof A.P.M.; Ismail N.M.
title Protective effect of magnesium acetyltaurate against NMDA-induced retinal damage involves restoration of minerals and trace elements homeostasis
title_short Protective effect of magnesium acetyltaurate against NMDA-induced retinal damage involves restoration of minerals and trace elements homeostasis
title_full Protective effect of magnesium acetyltaurate against NMDA-induced retinal damage involves restoration of minerals and trace elements homeostasis
title_fullStr Protective effect of magnesium acetyltaurate against NMDA-induced retinal damage involves restoration of minerals and trace elements homeostasis
title_full_unstemmed Protective effect of magnesium acetyltaurate against NMDA-induced retinal damage involves restoration of minerals and trace elements homeostasis
title_sort Protective effect of magnesium acetyltaurate against NMDA-induced retinal damage involves restoration of minerals and trace elements homeostasis
publishDate 2017
container_title Journal of Trace Elements in Medicine and Biology
container_volume 39
container_issue
doi_str_mv 10.1016/j.jtemb.2016.09.005
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84988700524&doi=10.1016%2fj.jtemb.2016.09.005&partnerID=40&md5=80d7e20afb613c37010192e99afe1fc0
description Glutamate-mediated excitotoxicity involving N-methyl-D-aspartate (NMDA) receptors has been recognized as a final common outcome in pathological conditions involving death of retinal ganglion cells (RGCs). Overstimulation of NMDA receptors results in influx of calcium (Ca) and sodium (Na) ions and efflux of potassium (K). NMDA receptors are blocked by magnesium (Mg). Such changes due to NMDA overstimulation are also associated with not only the altered levels of minerals but also that of trace elements and redox status. Both the decreased and elevated levels of trace elements such as iron (Fe), zinc (Zn), copper (Cu) affect NMDA receptor excitability and redox status. Manganese (Mn), and selenium (Se) are also part of antioxidant defense mechanisms in retina. Additionally endogenous substances such as taurine also affect NMDA receptor activity and retinal redox status. Therefore, the aim of this study was to evaluate the effect of Mg acetyltaurate (MgAT) on the retinal mineral and trace element concentration, oxidative stress, retinal morphology and retinal cell apoptosis in rats after-NMDA exposure. One group of Sprague Dawley rats received intravitreal injection of vehicle while 4 other groups similarly received NMDA (160 nmol L−1). Among the NMDA injected groups, 3 groups also received MgAT (320 nmol L−1) as pre-treatment, co-treatment or post-treatment. Seven days after intravitreal injection, rats were sacrificed, eyes were enucleated and retinae were isolated for estimation of mineral (Ca, Na, K, Mg) and trace element (Mn, Cu, Fe, Se, Zn) concentration using Inductively Coupled Plasma (DRC ICP-MS) techniques (NexION 300D), retinal oxidative stress using Elisa, retinal morphology using H&E staining and retinal cell apoptosis using terminal deoxynucleotidyl transferase dUTP nick-end labeling (TUNEL). Intravitreal NMDA injection resulted in increased concentration of Ca (4.6 times, p < 0.0001), Mg (1.5 times, p < 0.01), Na (3 times, p < 0.0001) and K (2.3 times, p < 0.0001) compared to vehicle injected group. This was accompanied with significant increase of Ca/Mg and Na/K ratios, 3 and 1.27 times respectively, compared to control group. The trace elements such as Cu, Fe and Zn also showed a significant increase amounting to 3.3 (p < 0.001), 2.3 (p < 0.0001) and 3 (p < 0.0001) times respectively compared to control group. Se was increased by 60% (p < 0.005). Pre-treatment with MgAT abolished effect of NMDA on minerals and trace elements more effectively than co- and post-treatment. Similar observations were made for retinal oxidative stress, retinal morphology and retinal cell apoptosis. In conclusion, current study demonstrated the protective effect of MgAT against NMDA-induced oxidative stress and retinal cell apoptosis. This effect of MgAT was associated with restoration of retinal concentrations of minerals and trace elements. Further studies are warranted to explore the precise molecular targets of MgAT. Nevertheless, MgAT seems a potential candidate in the management of diseases involving NMDA-induced excitotoxicity. © 2016 Elsevier GmbH
publisher Elsevier GmbH
issn 0946672X
language English
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