Literature DB >> 25051426

NMDARs in neurological diseases: a potential therapeutic target.

Janneth Gonzalez1, Juan Camilo Jurado-Coronel, Marcos Fidel Ávila, Angélica Sabogal, Francisco Capani, George E Barreto.   

Abstract

N-methyl-D-aspartate ionotropic glutamate receptor (NMDARs) is a ligand-gated ion channel that plays a critical role in excitatory neurotransmission, brain development, synaptic plasticity associated with memory formation, central sensitization during persistent pain, excitotoxicity and neurodegenerative diseases in the central nervous system (CNS). Within iGluRs, NMDA receptors have been the most actively investigated for their role in neurological diseases, especially neurodegenerative pathologies such as Alzheimer's and Parkinson's diseases. It has been demonstrated that excessive activation of NMDA receptors (NMDARs) plays a key role in mediating some aspects of synaptic dysfunction in several CNS disorders, so extensive research has been directed on the discovery of compounds that are able to reduce NMDARs activity. This review discusses the role of NMDARs on neurological pathologies and the possible therapeutic use of agents that target this receptor. Additionally, we delve into the role of NMDARs in Alzheimer's and Parkinson's diseases and the receptor antagonists that have been tested on in vivo models of these pathologies. Finally, we put into consideration the importance of antioxidants to counteract oxidative capacity of the signaling cascade in which NMDARs are involved.

Entities:  

Keywords:  Alzheimer's disease; NMDARs; Parkinson's disease; antagonist; antioxidants; neurological diseases

Mesh:

Substances:

Year:  2014        PMID: 25051426     DOI: 10.3109/00207454.2014.940941

Source DB:  PubMed          Journal:  Int J Neurosci        ISSN: 0020-7454            Impact factor:   2.292


  20 in total

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Review 8.  Impact of Increased Astrocyte Expression of IL-6, CCL2 or CXCL10 in Transgenic Mice on Hippocampal Synaptic Function.

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Review 9.  Metabolic Abnormalities of Erythrocytes as a Risk Factor for Alzheimer's Disease.

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Review 10.  Glia and TRPM2 Channels in Plasticity of Central Nervous System and Alzheimer's Diseases.

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