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Delucemine
Delucemine (NPS-1506) is a drug which acts as an NMDA antagonist and a serotonin reuptake inhibitor, and has neuroprotective effects. It was originally investigated for the treatment of stroke and in 2004 was studied as a potential antidepressant. Origin The basic structure of Delucemine was based on argiotoxin 636, a NMDA antagonist isolated from the venom of the Araneid ''Argiope aurantia''. See also * AD-1211 * Budipine * Diphenidine * Ephenidine * Fluorolintane * Lanicemine * Methoxphenidine * MT-45 * Remacemide Remacemide is a drug which acts as a low-affinity NMDA antagonist with sodium channel blocking properties. It has been studied for the treatment of acute ischemic stroke, epilepsy, Huntington's disease, and Parkinson's disease. Because remacemi ... References NMDA receptor antagonists Fluoroarenes Serotonin reuptake inhibitors {{nervous-system-drug-stub ...
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NMDA Antagonist
NMDA receptor antagonists are a class of drugs that work to antagonize, or inhibit the action of, the ''N''-Methyl-D-aspartate receptor (NMDAR). They are commonly used as anesthetics for animals and humans; the state of anesthesia they induce is referred to as dissociative anesthesia. Several synthetic opioids function additionally as NMDAR-antagonists, such as pethidine, levorphanol, methadone, dextropropoxyphene, tramadol and ketobemidone. Some NMDA receptor antagonists, such as ketamine, dextromethorphan (DXM), phencyclidine (PCP), methoxetamine (MXE), and nitrous oxide (N2O), are sometimes used as recreational drugs, for their dissociative, hallucinogenic, and euphoriant properties. When used recreationally, they are classified as dissociative drugs. Uses and effects NMDA receptor antagonists induce a state called dissociative anesthesia, marked by catalepsy, amnesia, and analgesia. Ketamine is a favored anesthetic for emergency patients with unknown medical history and i ...
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NMDA Receptor Antagonists
NMDA receptor antagonists are a class of drugs that work to antagonize, or inhibit the action of, the ''N''-Methyl-D-aspartate receptor (NMDAR). They are commonly used as anesthetics for animals and humans; the state of anesthesia they induce is referred to as dissociative anesthesia. Several synthetic opioids function additionally as NMDAR-antagonists, such as pethidine, levorphanol, methadone, dextropropoxyphene, tramadol and ketobemidone. Some NMDA receptor antagonists, such as ketamine, dextromethorphan (DXM), phencyclidine (PCP), methoxetamine (MXE), and nitrous oxide (N2O), are sometimes used as recreational drugs, for their dissociative, hallucinogenic, and euphoriant properties. When used recreationally, they are classified as dissociative drugs. Uses and effects NMDA receptor antagonists induce a state called dissociative anesthesia, marked by catalepsy, amnesia, and analgesia. Ketamine is a favored anesthetic for emergency patients with unknown medical history and i ...
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Argiotoxin
Argiotoxins represent a class of polyamine toxins isolated from the orb-weaver spider (''Araneus gemma'' and ''Argiope lobata''). The orb-weaver spiders, also known aaraneids belong to the Araneidae spider family. This type of spider is found in almost every area of the world. : Classification Argiotoxin can be classified, according to the 1980s classification of spider venoms, as a toxin of the acylpolyamines family, which contains more than 100 different chemical structures of closely related toxins. Acylpolyamines are neurotoxic compounds that are found only in the venom glands of spiders at a picomolar level. Argiotoxins are classified into three different categories according to its chromophore's nature: the argiopine type, the argiopinine type and the pseudoargiopinine type. * Argiopine: contains 2,4-dihydroxyphenylacetic acid. It is also named Arg-636. * Argiopinines: (4-hydroxyindol-3-yl) acetic acid is carried as the chromophore. These molecules are: Arg-630, Arg-658, A ...
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Budipine
Budipine (brand name Parkinsan) is an antiparkinson agent marketed for the treatment of Parkinson's disease. While its exact mechanism of action is not well characterized, it is believed to be an NMDA receptor antagonist, but also promoting the synthesis of dopamine. Because it provides additional benefits relative to existing treatments, it probably does not precisely mimic the mechanism of an existing known treatment. Synthesis 4-Phenyl-1-t-butyl-4-piperidinol, (1) 1-t-butyl-3-benzoyl-4-phenyl-4-piperidinol 1831-81-4(3) See also * AD-1211 * Delucemine * Diphenidine * Ephenidine * Fluorolintane * Lanicemine * Methoxphenidine (MXP) * MT-45 * Remacemide Remacemide is a drug which acts as a low-affinity NMDA antagonist with sodium channel blocking properties. It has been studied for the treatment of acute ischemic stroke, epilepsy, Huntington's disease, and Parkinson's disease. Because remacem ... References Antiparkinsonian agents Drugs with unknown mechan ...
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Serotonin Reuptake Inhibitor
A serotonin reuptake inhibitor (SRI) is a type of drug which acts as a reuptake inhibitor of the neurotransmitter serotonin (5-hydroxytryptamine, or 5-HT) by blocking the action of the serotonin transporter (SERT). This in turn leads to increased extracellular concentrations of serotonin and, therefore, an increase in serotonergic neurotransmission. It is a type of monoamine reuptake inhibitor (MRI); other types of MRIs include dopamine reuptake inhibitors and norepinephrine reuptake inhibitors. SRIs are not synonymous with selective serotonin reuptake inhibitors (SSRIs), as the latter term is usually used to describe the class of antidepressants of the same name, and because SRIs, unlike SSRIs, can either be selective or non-selective in their action. For example, cocaine, which non-selectively inhibits the reuptake of serotonin, norepinephrine, and dopamine, is an SRI but not an SSRI. SRIs are used predominantly as antidepressants (e.g., SSRIs, SNRIs, and TCAs), though they ...
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Fluorolintane
Fluorolintane (also known as 2-FPPP and 2-F-DPPy) is a dissociative anesthetic drug that has been sold online as a designer drug. Fluorolintane and related diarylethylamines are antagonists of the NMDA receptor and have been studied ''in vitro'' as potential treatments for neurotoxic injury, depression and as sympathomimetic. See also * AD-1211 * Diphenidine * Ephenidine * Lanicemine * Methoxphenidine (MXP) * MT-45 * Prolintane * Remacemide Remacemide is a drug which acts as a low-affinity NMDA antagonist with sodium channel blocking properties. It has been studied for the treatment of acute ischemic stroke, epilepsy, Huntington's disease, and Parkinson's disease. Because remacem ... References Designer drugs Dissociative drugs NMDA receptor antagonists Diarylethylamines Fluoroarenes Pyrrolidines {{nervous-system-drug-stub ...
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Remacemide
Remacemide is a drug which acts as a low-affinity NMDA antagonist with sodium channel blocking properties. It has been studied for the treatment of acute ischemic stroke, epilepsy, Huntington's disease, and Parkinson's disease. Because remacemide has only a modest effect on seizure frequency and causes dizziness, it is no longer believed that remacemide will be an effective treatment for epilepsy. Although no such statement has been made about remacemide's potential for treating stroke, Huntington's, or Parkinson's, remacemide is no longer being developed for these conditions. Remacemide is also known as remacemide hydrochloride, (±)-2-amino-''N''-(1-methyl-1,2-diphenylethyl)-acetamide hydrochloride, or FPL 12924AA. Adverse effects *dizziness *nausea Lack of adverse effects Unlike many other treatments for epilepsy, remacemide does not appear to impair cognitive performance or driving performance in humans, although the evidence for effects on cognitive performance in animal ...
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MT-45
MT-45 (IC-6) is an opioid analgesic drug invented in the 1970s by Dainippon Pharmaceutical Co. It is chemically a 1-substituted-4-(1,2-diphenylethyl)piperazine derivative, which is structurally unrelated to most other opioid drugs. Racemic MT-45 has around 80% the potency of morphine, with almost all opioid activity residing in the (S) enantiomer (the opposite stereochemistry from the related drug lefetamine). It has been used as a lead compound from which a large family of potent opioid drugs have been developed, including full agonists, partial agonists, and antagonists at the three main opioid receptor subtypes. Fluorinated derivatives of MT-45 such as 2F-MT-45 are significantly more potent as μ-opioid receptor agonists, and one of its main metabolites 1,2-diphenylethylpiperazine also blocks NMDA receptors. ] Side effects Recreational use of MT-45 has been associated with unconsciousness and overdose, as well as a range of unusual side effects not typically seen with other ...
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Methoxphenidine
Methoxphenidine (methoxydiphenidine, 2-MeO-Diphenidine, MXP) is a dissociative of the diarylethylamine class that has been sold online as a designer drug. Methoxphenidine was first reported in a 1989 patent where it was tested as a treatment for neurotoxic injury. Shortly after the 2013 UK ban on arylcyclohexylamines methoxphenidine and the related compound diphenidine became available on the gray market, where it has been encountered as a powder and in tablet form. Though diphenidine possesses higher affinity for the NMDA receptor, anecdotal reports suggest methoxphenidine has greater oral potency. Of the three isomeric anisyl-substituents methoxphenidine has affinity for the NMDA receptor that is higher than 4-MeO-Diphenidine but lower than 3-MeO-Diphenidine, a structure–activity relationship shared by the arylcyclohexylamines. Side effects Acute methoxphenidine intoxication has been reported to produce confusion, hypertension, and tachycardia that was responsive to treat ...
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Lanicemine
Lanicemine (AZD6765) is a low-trapping NMDA receptor antagonist that was under development by AstraZeneca for the management of severe and treatment-resistant depression. Lanicemine differs from ketamine in that it is a ''low-trapping'' NMDA receptor antagonist, showing similar rapid-acting antidepressant effects to ketamine in clinical trials but with little or no psychotomimetic side effects. However, lanicemine did not meet study endpoints, and its development was terminated by AstraZeneca in 2013. See also * 4-Chlorokynurenine * AD-1211 * Apimostinel * CERC-301 * Diphenidine * Ephenidine * Esketamine * Lefetamine * Memantine * Methoxphenidine * MT-45 * Rapastinel Rapastinel () (former developmental code name GLYX-13) is a novel antidepressant that was under development by Allergan (previously Naurex) as an adjunctive therapy for the treatment of treatment-resistant depression. It is a centrally active ... References {{Ionotropic glutamate receptor modulators ...
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Diphenidine
Diphenidine (1,2-DEP, DPD, DND) is a dissociative anesthetic that has been sold as a designer drug. The synthesis of diphenidine was first reported in 1924, and employed a Bruylants reaction analogous to the one that would later be used to discover phencyclidine in 1956. Shortly after the 2013 UK ban on arylcyclohexylamines, diphenidine and the related compound methoxphenidine became available on the grey market. Anecdotal reports describe high doses of diphenidine producing "bizarre somatosensory phenomena and transient anterograde amnesia." Diphenidine and related diarylethylamines have been studied in vitro as treatments for neurotoxic injury and are antagonists of the NMDA receptor. In dogs diphenidine exhibits greater antitussive potency than codeine phosphate. Electrophysiological analysis demonstrates that the amplitude of NMDA-mediated fEPSPs are reduced by diphenidine and ketamine to a similar extent, with diphenidine displaying a slower onset of antagonism. The two en ...
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Ephenidine
Ephenidine (also known as NEDPA and EPE) is a dissociative anesthetic that has been sold online as a designer drug. It is illegal in some countries as a structural isomer of the banned opioid drug lefetamine, but has been sold in countries where it is not yet banned. Pharmacology Pharmacodynamics Ephenidine and related diarylethylamines have been studied in vitro as treatments for neurotoxic injuries, and are antagonists of the NMDA receptor (Ki = 66.4 nM for ephenidine). Ephenidine also possesses weaker affinity for dopamine and norepinephrine transporters (379 nM and 841 nM, respectively) as well as σ1R (629 nM) and σ2R (722 nM) binding sites. Pharmacokinetics Metabolism Ephenidine's metabolic pathway consists of N-oxidation, N-dealkylation, mono- and bis-hydroxylation of the benzene ring, and hydroxylation of the phenyl ring only after N-dealkylation. The dihydroxy metabolites were conjugated by methylation of one hydroxy group, and hydroxy metab ...
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