5-Methoxyharmalan
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5-Methoxyharmalan
5-Methoxyharmalan, also known as 5-methoxy-1-methyl-4,9-dihydro-3''H''-β-carboline, is a serotonin receptor modulator of the β-carboline family. It is a cyclized tryptamine analogue of 4-MeO-DMT and a positional isomer of 6-methoxyharmalan and harmaline (7-methoxyharmalan). Pharmacology The drug shows high affinity for the serotonin 5-HT2A and 5-HT2C receptors (Ki = 86–137nM and 69nM, respectively). It had higher affinity for these receptors than any other assessed β-carboline, with 1.7–4.6-fold, 57–58-fold, and >73–116-fold the affinity of harmine, harmaline, and tetrahydroharmine for the serotonin 5-HT2A receptor, respectively. However, like harmaline and 6-methoxyharmalan, 5-methoxyharmalan showed no agonist or antagonist activity at the serotonin 5-HT2A receptor in terms of phosphatidylinositol (PI) hydrolysis ''in vitro'' at concentrations of up to 10,000nM (and harmaline further showed no agonist activity in this assay at up to 20,000nM). It is unclear w ...
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Substituted β-carboline
A substituted β-carboline is a chemical compound featuring a β-carboline moiety (chemistry), moiety with one or more chemical substituent, substitutions. β-Carbolines include more than one hundred alkaloids and synthetic compounds. The effects of these substances depend on their respective substituent. Natural β-carbolines primarily influence brain functions but can also exhibit antioxidant effects. Synthetically designed β-carboline Derivative (chemistry), derivatives have recently been shown to have Neuroprotection, neuroprotective, Neuroenhancement, cognitive enhancing and anti-cancer properties. β-Carbolines are indole alkaloids featuring a fused pyridine and indole ring structure similar to tryptamine, forming a three-ringed system with variable saturation in the third ring. β-Carboline alkaloids naturally occur widely in prokaryotes, plants, animals, certain marine tunicates, and foods like coffee and smoked meats, and are also responsible for the fluorescence of sco ...
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Harmaline
Harmaline, also known as 7-methoxyharmalan or as 3,4-dihydro-7-methoxy-1-methyl-β-carboline, is a fluorescent indole alkaloid from the group of harmala alkaloids and β-carbolines. It is the partly hydrogenated form of harmine. It is a reversible monoamine oxidase inhibitor (RIMA). It produces vivid dream-like visual effects and physical discomfort at oral doses of 300 to 400mg, often leading users to seek solitude in a quiet, dark environment. Plants containing harmaline are combined in ayahuasca to inhibit monoamine oxidase, allowing orally ingested DMT to remain active in the brain and produce psychoactive effects. Harmala alkaloids, including harmaline, are psychoactive on their own in humans, with harmaline being particularly hallucinogenic, although other compounds such as harmine and tetrahydroharmine have also been reported to produce hallucinogenic effects as well. Harmaline exhibits weak affinity for 5-HT2A and 5-HT2C receptors, partially substitutes for the ...
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6-Methoxyharmalan
6-Methoxyharmalan, or 6-methoxyharmalane, also known as 6-methoxy-1-methyl-3,4-dihydro-β-carboline, is a naturally occurring serotonin receptor modulator, monoamine oxidase inhibitor, and hallucinogen of the β-carboline family related to harmaline (7-methoxyharmalan). It is a cyclized tryptamine and analogue of 5-MeO-DMT and melatonin (''N''-acetyl-5-methoxytryptamine). The compound has been isolated from '' Virola'' species. Use and effects 6-Methoxyharmalan has been reported to be hallucinogenic in humans at a dose of 1.5mg/kg (~100mg) orally, with slightly (1.5-fold) greater potency than harmaline. Its onset of action via oral administration is about 1hour. The drug also produces hallucinogenic effects at a dose of 1mg/kg intravenously and with a near-immediate onset by this route. Its hallucinogenic effects are described as similar to those of harmaline. The hallucinogenic effects of β-carbolines like harmaline and 6-methoxyharmalan have been described as qualitatively ...
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Imidazoline Receptor
Imidazoline receptors are the primary receptors on which clonidine and other imidazolines act. There are three main classes of imidazoline receptor: I1 is involved in inhibition of the sympathetic nervous system to lower blood pressure, I2 has as yet uncertain functions but is implicated in several psychiatric conditions, and I3 regulates insulin secretion. Classes As of 2017, there are three known subtypes of imidazoline receptors: I1, I2, and I3. I1 receptor The I1 receptor appears to be a G protein-coupled receptor that is localized on the plasma membrane. It may be coupled to PLA2 signalling and thus prostaglandin synthesis. In addition, activation inhibits the sodium-hydrogen antiporter and enzymes of catecholamine synthesis are induced, suggesting that the I1 receptor may belong to the neurocytokine receptor family, since its signaling pathways are similar to those of interleukins. It is found in the neurons of the reticular formation, the dorsomedial medulla oblo ...
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Hallucinogen
Hallucinogens, also known as psychedelics, entheogens, or historically as psychotomimetics, are a large and diverse class of psychoactive drugs that can produce altered states of consciousness characterized by major alterations in thought, mood, and perception as well as other changes. Hallucinogens are often categorized as either being psychedelics, dissociatives, or deliriants, but not all hallucinogens fall into these three classes. Examples of hallucinogens include psychedelics or serotonin 5-HT2A receptor agonists like LSD, psilocybin, mescaline, and DMT; dissociatives or NMDA receptor antagonists like ketamine, PCP, DXM, and nitrous oxide; deliriants or antimuscarinics like scopolamine and diphenhydramine; cannabinoids or cannabinoid CB1 receptor agonists like THC, nabilone, and JWH-018; κ-opioid receptor agonists like salvinorin A and pentazocine; GABAA receptor agonists like muscimol and gaboxadol; and oneirogens like ibogaine and harmaline, a ...
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Psychoactive Drug
A psychoactive drug, psychopharmaceutical, mind-altering drug, consciousness-altering drug, psychoactive substance, or psychotropic substance is a chemical substance that alters psychological functioning by modulating central nervous system activity. Psychoactive and psychotropic drugs both affect the brain, with psychotropics sometimes referring to psychiatric drugs or high-abuse substances, while “drug” can have negative connotations. Designer drug, Novel psychoactive substances are designer drugs made to mimic illegal ones and bypass laws. Psychoactive drug use dates back to prehistory for medicinal and consciousness-altering purposes, with evidence of widespread cultural use. Many animals intentionally consume psychoactive substances, and some traditional legends suggest animals first introduced humans to their use. Psychoactive substances are used across cultures for purposes ranging from medicinal and therapeutic treatment of Mental disorder, mental disorders and pain, ...
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Melatonin Receptor
Melatonin receptors are G protein-coupled receptors (GPCR) which bind melatonin. Three types of melatonin receptors have been cloned. The MT1 (or Mel1A or MTNR1A) and MT2 (or Mel1B or MTNR1B) receptor subtypes are present in humans and other mammals, while an additional melatonin receptor subtype MT3 (or Mel1C or MTNR1C) has been identified in amphibia and birds. The receptors are crucial in the signal cascade of melatonin. In the field of chronobiology, melatonin has been found to be a key player in the synchrony of biological clocks. Melatonin secretion by the pineal gland has circadian rhythmicity regulated by the suprachiasmatic nucleus (SCN) found in the brain. The SCN functions as the timing regulator for melatonin; melatonin then follows a feedback loop to decrease SCN neuronal firing. The receptors MT1 and MT2 control this process. Melatonin receptors are found throughout the body in places such as the brain, the retina of the eye, the cardiovascular system, the liv ...
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Serotonin Receptor Modulator
5-HT receptors, 5-hydroxytryptamine receptors, or serotonin receptors, are a group of G protein-coupled receptor and ligand-gated ion channels found in multiple tissues including the central and peripheral nervous systems. They mediate both excitatory and inhibitory neurotransmission. The serotonin (i.e., 5-hydroxytryptamine, hence "5-HT") receptors are activated by the neurotransmitter serotonin, which acts as their natural ligand. The serotonin receptors modulate the release of many neurotransmitters, including glutamate, GABA, dopamine, epinephrine / norepinephrine, and acetylcholine, as well as many hormones, including oxytocin, prolactin, vasopressin, cortisol, corticotropin, and substance P, among others. Serotonin receptors influence various biological and neurological processes such as aggression, anxiety, appetite, cognition, learning, memory, mood, nausea, sleep, and thermoregulation. They are the target of a variety of pharmaceutical and recreational drugs, includin ...
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I2 Receptor
Imidazoline receptors are the primary receptors on which clonidine and other imidazolines act. There are three main classes of imidazoline receptor: I1 is involved in inhibition of the sympathetic nervous system to lower blood pressure, I2 has as yet uncertain functions but is implicated in several psychiatric conditions, and I3 regulates insulin secretion. Classes As of 2017, there are three known subtypes of imidazoline receptors: I1, I2, and I3. I1 receptor The I1 receptor appears to be a G protein-coupled receptor that is localized on the plasma membrane. It may be coupled to PLA2 signalling and thus prostaglandin synthesis. In addition, activation inhibits the sodium-hydrogen antiporter and enzymes of catecholamine synthesis are induced, suggesting that the I1 receptor may belong to the neurocytokine receptor family, since its signaling pathways are similar to those of interleukins. It is found in the neurons of the reticular formation, the dorsomedial medulla oblongata, ...
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