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Published on: December 9, 2018
Mangifera indica L. extract attenuates glutamate-induced neurotoxicity on rat cortical neurons
Yeny Lemus-Molina1, Maria Victoria Sánchez-Gómez, René Delgado-Hernández
1Laboratorio de Farmacología, Departamento de Investigaciones Biomédicas, Centro de Química Farmacéutica, 200 y 21 Atabey, Playa, P.O. Box. 16042, Habana, Cuba.
Abstract:
Overstimulation of ionotropic glutamate receptors causes excitotoxic neuronal death contributing to neurodegenerative disorders. Massive influx of calcium in excitotoxicity provokes alterations in the membrane potential of mitochondria and increases the production of reactive oxygen species. Here we report that Mangifera indica L. extracts (MiE) prevent glutamate-induced excitotoxicity in primary cultured neurons of the rat cerebral cortex. To evaluate the effects of MiE on excitotoxicity, cells were stimulated with L-glutamic acid (50 microM; 10 min) alone or in the presence of MiE. Maximal protection (56%) was obtained with 2.5 microg/mL of MiE. In turn, we measured the effects of MiE on excitotoxic-induced oxidative stress and mitochondrial depolarization by fluorimetry using 5,6-chloromethyl-2',7'-dichlorodihydrofluorescein diacetate and tetramethylrhodamine, respectively. Both parameters were effectively reduced by MiE at concentrations which showed neuroprotection. Mangiferin, an antioxidant polyphenol which is a major component of MiE, was also effective in preventing neuronal death, oxidative stress and mitochondrial depolarization. Maximal protection (64%) was obtained at 12.5 microg/mL of mangiferin which also attenuated oxidative stress and mitochondrial depolarization at the neuroprotective concentrations. Together, these results indicate that MiE is an efficient neuroprotector of excitotoxic neuronal death, indicates that mangiferin carries a substantial part of the antioxidant and neuroprotective activity of MiE, and that this natural extract has therapeutic potential to treat neurodegenerative disorders.
Insights
Mangifera indica L. extracts (MiE) protect neurons from glutamate excitotoxicity, a process linked to neurodegenerative disorders. This natural extract, particularly its component mangiferin, shows significant neuroprotective and antioxidant effects.
Area of Science:
- Neuroscience
- Pharmacology
- Biochemistry
Background:
- Excitotoxic neuronal death, triggered by overstimulation of glutamate receptors, contributes to neurodegenerative diseases.
- This process involves excessive calcium influx, mitochondrial dysfunction, and increased reactive oxygen species (ROS).
Purpose of the Study:
- To investigate the neuroprotective effects of Mangifera indica L. extracts (MiE) against glutamate-induced excitotoxicity in primary neuronal cultures.
- To determine the role of oxidative stress and mitochondrial depolarization in MiE's neuroprotective mechanism.
Main Methods:
- Primary rat cerebral cortex neurons were stimulated with L-glutamic acid, with or without varying concentrations of MiE.
- Neuroprotection was assessed by measuring neuronal survival.
- Oxidative stress and mitochondrial membrane potential were evaluated using fluorimetric assays.
Main Results:
- MiE demonstrated significant neuroprotection against glutamate excitotoxicity, with maximal protection (56%) at 2.5 microg/mL.
- MiE effectively reduced oxidative stress and mitochondrial depolarization at neuroprotective concentrations.
- Mangiferin, a key component of MiE, also exhibited potent neuroprotective, antioxidant, and mitochondrial stabilizing effects.
Conclusions:
- Mangifera indica L. extracts (MiE) are effective neuroprotectors against excitotoxic neuronal death.
- Mangiferin contributes significantly to the antioxidant and neuroprotective activities of MiE.
- MiE possesses therapeutic potential for treating neurodegenerative disorders.
