NMDA Receptor
- [1]. Dupuis JP, et al. NMDA receptor functions in health and disease: Old actor, new dimensions. Neuron. 2023 Aug 2;111(15):2312-2328. [Content Brief]
- [2]. Zhu S, et al. Mechanism of NMDA Receptor Inhibition and Activation. Cell. 2016 Apr 21;165(3):704-14. [Content Brief]
- [3]. Yovanno RA, et al. Excitatory and inhibitory D-serine binding to the NMDA receptor. Elife. 2022 Oct 27;11:e77645. [Content Brief]
- [4]. Dalmau J, et al. An update on anti-NMDA receptor encephalitis for neurologists and psychiatrists: mechanisms and models. Lancet Neurol. 2019 Nov;18(11):1045-1057. [Content Brief]
- [5]. Paoletti P, et al. NMDA receptor subunit diversity: impact on receptor properties, synaptic plasticity and disease. Nat Rev Neurosci. 2013 Jun;14(6):383-400. [Content Brief]
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NMDA Receptor Inhibitors
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NMDA Receptor MDM2 Inhibitor
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NMDA Receptor Ligands
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NMDA Receptor Related Products (242)
Related Products (242)
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L-Glutamic acid-13C
0 ImagesL-Glutamic acid-13C is the 13C-labeled L-Glutamic acid. L-Glutamic acid acts as an excitatory transmitter and an agonist at all subtypes of glutamate receptors (metabotropic, kainate, NMDA, and AMPA). L-Glutamic acid shows a direct activating effect on the release of DA from dopaminergic terminals. -
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Brophenexin free base
0 ImagesSynonyms: NMDAR/TRPM4-IN-2 free baseBrophenexin free base (compound 8) is a potent NMDAR/TRPM4 interaction interface inhibitor. Brophenexin free base shows neuroprotective activity. Brophenexin free base prevents NMDA-induced cell death and mitochondrial dysfunction in hippocampal neurons, with an IC50 of 2.1 μM. Brophenexin free base protects mice from MCAO-induced brain damage and NMDA-induced retinal ganglion cell loss. -
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MRZ 2-514
0 ImagesCat. No.: HY-101620CAS No.: 202808-11-5MRZ 2-514 is an antagonist of the strychnine-insensitive modulatory site of the NMDA receptor (glycineB), with Ki of 33 μM. -
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Mephenesin
0 ImagesMephenesin is an NMDA receptor antagonist. Mephenesin is also a central muscle relaxant with antianxiety, muscle-paralyzing and anticonvulsant effects. Mephenesin acts directly on the skeletal muscle fibres to produce skeletal muscle relaxation. Mephenesin is promising for research of spasticity or painful muscle spasm. -
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GNE-0723
0 ImagesGNE-0723 is a brain permeable positive allosteric modulator of NMDAR, with an EC50 of 21 nM for GluN2A, 7.4 and 6.2 μM for GluN2C and GluN2D, respectively. -
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D-Cycloserine (Standard)
0 ImagesD-Cycloserine (Standard) is the analytical standard of D-Cycloserine. This product is intended for research and analytical applications. D-Cycloserine is an antibiotic which targets sequential bacterial cell wall peptidoglycan biosynthesis enzymes. D-Cycloserine is a partial NMDA agonist that can improve cognitive functions. D-Cycloserine can be used for multidrug-resistant tuberculosis research. -
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ART5803
0 ImagesART5803 is a humanized IgG1 monoclonal antibody inhibitor targeting NMDAR. ART5803 binds to the N-terminal domain (NTD) of the NMDAR GluN1 subunit (GluN1-NTD) with a high affinity. ART5803 blocks NMDAR internalization induced by pathogenic autoantibodies and restores cell-surface NMDAR expression and functions. ART5803 reverses behavioral abnormalities and NMDAR expression in marmoset disease models. ABT-147 can be used to study anti-NMDAR encephalitis. -
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(Rac)-Lanicemine
0 ImagesSynonyms: (Rac)-AZD6765(Rac)-Lanicemine ((Rac)-AZD6765) is the racemate of Lanicemine. Lanicemine (AZD6765) is a low-trapping NMDA channel blocker (Ki of 0.56-2.1 μM for NMDA receptor; IC50s of 4-7 μM and 6.4 μM in CHO and Xenopus oocyte cells, respectively). Antidepressant effects. -
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Aspartic acid calcium
0 ImagesSynonyms: Calcium L-aspartateAspartic acid calcium (calcium L-aspartate) is a NMDA receptor agonist and acidic amino acid. Aspartic acid calcium has no independent analgesic activity. Aspartic acid calcium can antagonize the analgesic effects of D-Aspartic acid and Morphine. Aspartic acid calcium regulates polymorph transformation, crystal growth/aggregation and nucleation processes of calcium carbonate, and can serve as a biomineralization template. Aspartic acid calcium promotes burst firing of central neurons. Aspartic acid calcium can be used in studies related to cerebral ischemia and epilepsy. -
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(R)-(+)-HA-966
0 ImagesSynonyms: (+)-HA-966(R)-(+)-HA-966 ((+)-HA-966) is a partial agonist/antagonist of glycine site of the N-methyl-D-aspartate (NMDA) receptor complex. (R)-(+)-HA-966 selectively blocks the activation of the mesolimbic dopamine system by amphetamine. (R)-(+)-HA-966 can cross the blood-brain barrier and has the potential for neuropathic and acute pain. -
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Perzinfotel
0 ImagesSynonyms: EAA-090Perzinfotel (EAA-090) is a potent, selective, and competitive NMDA receptor antagonist with neuroprotective effects. Perzinfotel (EAA-090) shows high affinity (IC50=30 nM) for the glutamate site. -
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Aptiganel hydrochloride
0 ImagesSynonyms: CNS 1102Aptiganel hydrochloride (Cerestat) is a non-competitive NMDA receptor antagonist with neuroprotective effect. -
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Nelonemdaz
0 ImagesSynonyms: Salfaprodil free base; Neu2000Nelonemdaz (Salfaprodil free base) is an NR2B-selective and uncompetitive antagonist of N-methyl-D-aspartate (NMDA). Nelonemdaz is also a free radical scavenger. Nelonemdaz has excellent neuroprotection against NMDA- and free radical-induced cell death. -
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JNJ-78911118
0 ImagesJNJ-78911118 is a potent, brain-penetrant, selective GluN2A antagonist (IC50 = 44 nM). JNJ-78911118 shows >200-fold selectivity against GluN1/2B, 2C and 2D receptors. JNJ-78911118 functions as a negative allosteric modulator (NAM) by insurmountably suppressing glutamate efficacy and reducing glycine potency at GluN1/2A receptors. JNJ-78911118 produces profound pharmacodynamic effects in vivo. JNJ-78911118 can be used for depression research. -
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Budipine
0 ImagesBudipine is an anti-parkinson agent. Budipine also is a substrate of P-glycoprotein (P-gp), is mediated the uptake into the brain by P-gp. Budipine also is N-methyl-d-aspartate (NMDA) antagonist, and has indirect dopaminergic effects through an improved dopamine release, the inhibition of monoamine oxidase type B (MAO-B). Budipine can be used for the research of CNS disorders include Parkinson disease. -
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L-Phenylalanine-15N,d8
0 ImagesCat. No.: HY-N0215S14Purity: 99.90%Synonyms: (S)-2-Amino-3-phenylpropionic acid-15N,d8L-Phenylalanine-15N,d8 is the deuterium and 15N-labeled L-Phenylalanine. L-Phenylalanine ((S)-2-Amino-3-phenylpropionic acid) is an essential amino acid isolated from Escherichia coli. L-Phenylalanine is a α2δ subunit of voltage-dependent Ca2+ channels antagonist with a Ki of 980 nM. L-phenylalanine is a competitive antagonist for the glycine- and glutamate-binding sites of N-methyl-D-aspartate receptors (NMDARs) (KB of 573 μM ) and non-NMDARs, respectively. L-Phenylalanine is widely used in the production of food flavors and pharmaceuticals. -
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Crocetin meglumine
0 ImagesCat. No.: HY-42937Purity: 98.17%Synonyms: Transcrocetin meglumine; trans-Crocetin meglumineCrocetin (Transcrocetin) meglumine, extracted from saffron (Crocus sativus L.), acts as an NMDA receptor antagonist with high affinity. -
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L-Aspartic acid monocesium
0 ImagesCat. No.: HY-N0666ECAS No.: 845744-47-0L-Aspartic acid monocesium (monocesium L-aspartate) is a NMDA receptor agonist and acidic amino acid. L-Aspartic acid monocesium has no independent analgesic activity. L-Aspartic acid monocesium can antagonize the analgesic effects of D-Aspartic acid and Morphine. L-Aspartic acid monocesium regulates polymorph transformation, crystal growth/aggregation and nucleation processes of calcium carbonate, and can serve as a biomineralization template. L-Aspartic acid monocesium promotes burst firing of central neurons. L-Aspartic acid monocesium can be used in studies related to cerebral ischemia and epilepsy. -
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L-701252
0 ImagesL-701252 is a potent antagonist of glycine site NMDA receptor with an IC50 of 420 nM. L-701252 provides a small degree of neuroprotection in global cerebral ischaemia. -
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N-Methyl-DL-aspartic acid
0 ImagesN-Methyl-DL-aspartic acid acts as an agonist for N-methyl-D-aspartic acid receptors and D-isomer-specific aspartate receptors. N-Methyl-DL-aspartic acid activates hypothalamic neurons that regulate gonadotropin-releasing hormone secretion, and stimulates prepubertal male rhesus monkeys to produce sustained intermittent gonadotropin-releasing hormone secretion and pulsatile luteinizing hormone secretion. N-Methyl-DL-aspartic acid activates excitatory effects mediated by N-methyl-D-aspartic acid receptors. N-Methyl-DL-aspartic acid exhibits convulsant effects, inducing clonic convulsions with loss of righting reflex, generalized tonic-clonic seizures or persistent clonic seizures. N-Methyl-DL-aspartic acid causes precocious puberty. N-Methyl-DL-aspartic acid can be used in studies related to convulsions and seizures. -
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