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 Related Products (242)
Related Products (242)
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HSD17B13-IN-7
0 ImagesCat. No.: HY-161211CAS No.: 863564-16-3HSD17B13-IN-7 (compound 1), a fluorophenol-containing compound, is a potent HSD17B13 inhibitor with IC50s of 0.18 μM and 0.25 μM β-estradiol and Leukotriene B4 as substrates, respectively. HSD17B13-IN-7 is a potent N-methyl-D-aspartate (NMDA) NR2B receptor antagonist. HSD17B13-IN-7 has the potential for non-alcoholic fatty liver disease research. -
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5-Chloro-1,4-dihydro-2,3-quinoxalinedione
0 ImagesCat. No.: HY-17668CAS No.: 127731-60-65-Chloro-1,4-dihydro-2,3-quinoxalinedione (Compound 72) is a weak NMDA inhibitor with an IC50 of 56.3 μM. 5-Chloro-1,4-dihydro-2,3-quinoxalinedione can be used for the research of neurological disease. -
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CJ-036878
0 ImagesCat. No.: HY-182628CAS No.: 951248-25-2CJ-036878 is a NMDAR NR2B subunit antagonist. CJ-036878 is applicable to research related to persistent inflammatory pain and neuropathic pain. -
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NMDA receptor antagonist 10
0 ImagesCat. No.: HY-183200CAS No.: 909259-28-5NMDA receptor antagonist 10 is a NMDA receptor antagonist with an IC50 of 28 μM. NMDA receptor antagonist 10 inhibits glycine action at the NMDA receptor glycine site. NMDA receptor antagonist 10 can be used for research on neurological diseases. -
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MN-05
0 ImagesCat. No.: HY-126939CAS No.: 1835197-63-1MN-05 is a dual neuroprotective and vasodilatory NMDA receptor inhibitor.MN-05 blocks calcium influx, reduces free radical production, and maintains mitochondrial membrane potential in cortical neurons exposed to glutamate.MN-05 dilates aortic rings against phenylephrine-induced contraction.MN-05 protects neurons against glutamate-induced injury in vitro.MN-05 can be used for the research of neurodegenerative diseases. -
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4-Chlorokynurenine
0 ImagesSynonyms: 4-Cl-KYN; AV-1014-Chlorokynurenine (4-Cl-KYN) is a prodrug of 7-Chlorokynurenic acid (NMDA receptor antagonist) (HY-100811). 4-Chlorokynurenine has orally activity and blood-brain permeability. 4-Chlorokynurenine can reduce depressive symptoms and neurotoxicity. 4-Chlorokynurenine can be used for the research of neurological disease, such as depression and seizure. -
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L-Aspartic acid potassium (Standard)
0 ImagesCat. No.: HY-N0666ARCAS No.: 1115-63-5L-Aspartic acid potassium (Standard) is the analytical standard of L-Aspartic acid potassium (HY-N0666A). This product is intended for research and analytical applications. L-Aspartic acid potassium (potassium L-aspartate) is a NMDA receptor agonist and acidic amino acid. L-Aspartic acid potassium has no independent analgesic activity. L-Aspartic acid potassium can antagonize the analgesic effects of D-Aspartic acid and Morphine. L-Aspartic acid potassium regulates polymorph transformation, crystal growth/aggregation and nucleation processes of calcium carbonate, and can serve as a biomineralization template. L-Aspartic acid potassium promotes burst firing of central neurons. L-Aspartic acid potassium can be used in studies related to cerebral ischemia and epilepsy. -
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L-Phenylalanine-13C9,15N,d8
0 ImagesCat. No.: HY-N0215S9CAS No.: 1994331-22-4Synonyms: (S)-2-Amino-3-phenylpropionic acid-13C9,15N,d8L-Phenylalanine-13C9,15N,d8 is the deuterium, 13C-, and 15-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 Ca+ 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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NMDA receptor potentiator-1
0 ImagesCat. No.: HY-147352CAS No.: 486427-18-3NMDA receptor potentiator-1 (Compound 1368) is a subunit selective NMDA receptor potentiator with IC50s of 4 μM and 5 μM against NR2C and NR2D expression, respectively. -
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UK-315716
0 ImagesCat. No.: HY-108200CAS No.: 197077-52-4UK-315716 is an NMDA receptor antagonist. UK-315716 has a synergistic neuroprotective effect. UK-315716 can be used for research on neurological diseases such as stroke and headache. -
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Indole-2-carboxylic acid-13C
0 ImagesCat. No.: HY-I0096SCAS No.: 1216839-31-4Indole-2-carboxylic acid-13C is the 13C-labeled Indole-2-carboxylic acid. Indole-2-carboxylic acid is a strong inhibitor of lipid peroxidation. Indole-2-carboxylic acid (I2CA) specifically and competitively inhibits the potentiation by glycine of NMDA-gated current. -
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L-Aspartic acid-13C-1
0 ImagesCat. No.: HY-N0666S10CAS No.: 68261-19-8Synonyms: [3-13C]Aspartic acidL-Aspartic acid-13C-1 ([3-13C]Aspartic acid) is the 13C-labeled L-Aspartic acid (HY-N0666). L-Aspartic acid is a NMDA receptor agonist and acidic amino acid. L-Aspartic acid has no independent analgesic activity. L-Aspartic acid can antagonize the analgesic effects of D-Aspartic acid and Morphine. L-Aspartic acid regulates polymorph transformation, crystal growth/aggregation and nucleation processes of calcium carbonate, and can serve as a biomineralization template. L-Aspartic acid promotes burst firing of central neurons. L-Aspartic acid can be used in studies related to cerebral ischemia and epilepsy. -
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L-703717
0 ImagesCat. No.: HY-105413CAS No.: 142326-92-9L-703717 is a NMDA receptor antagonist. L-703717 preferentially binds to cerebellar-specific NMDA receptors consisting of a GluRepsilon3 subunit and eventually accumulates in rodent cerebellum. L-703717 can be used for the research of neurological disease. -
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MDL 27266
0 ImagesCat. No.: HY-105340CAS No.: 116114-14-8MDL 27266 is an orally active NMDA receptor antagonist with neuroprotective effect. MDL 27266 is a broad-spectrum anticonvulsant agent. -
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Fluorofelbamate
0 ImagesFluorofelbamate, a Felbamate (HY-B0184) analog, is a potent NMDA receptor antagonist. Fluorofelbamate exhibits anticonvulsant and antiepileptogenic effects in an experimental rat model of self-sustaining status epilepticus (SSSE). Fluorofelbamate can be used for epilepsy research. -
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NMDA agonist 1
0 ImagesCat. No.: HY-169950CAS No.: 2576586-47-3NMDA agonist 1 (compound 42d) is a potent NMDA agonist with a Ki value of 96 nM. NMDA agonist 1 acts as a partial agonist of the GluN1/GluN2B complex with an EC50 value of 78 nM. -
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CGP 43487
0 ImagesCat. No.: HY-111528CAS No.: 146388-56-9CGP 43487 is a NMDA receptor antagonist. CGP 43487 significantly affects the gross structural characteristics of the developing dentate gyrus. -
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Indantadol
0 ImagesCat. No.: HY-101440CAS No.: 202844-10-8Synonyms: CHF-3381 free baseIndantadol (the free base of CHF-3381) is an orally active, non-selective NMDA antagonist and MAO inhibitor. Indantadol blocks the binding of [³H]-MK-801 to NMDA receptors in a non-competitive manner, with an IC50 of 8.1 μM. Indantadol completely inhibits dopamine release caused by NMDA. Indantadol protects neurons, with an ED₅₀ of 35 μM. Indantadol has anticonvulsant and anti-high pain hypersensitivity activities. -
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- NMDAR modulator 1
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NMDA receptor antagonist-3
0 ImagesCat. No.: HY-139708CAS No.: 2762181-52-0NMDA receptor antagonist-3, a NMDA receptor antagonist, stands out with a remarkable percentage of recovery (40.0%, at 100 μM) and safe toxicological profile in SH-SY5Y and human adipose mesenchymal stem cells. -
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