7-APBT
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7-APBT
7-APBT is a monoamine releasing agent (MRA) of the amphetamine and benzothiophene families. It acts specifically as a fairly well-balanced serotonin–norepinephrine–dopamine releasing agent (SNDRA), with values of 36.9nM for serotonin, 28.5nM for norepinephrine, and 16.8nM for dopamine in rat brain synaptosomes. 7-APBT was first described in the scientific literature by 2020. See also * 4-APBT * 5-APBT * 6-APBT 6-(2-Aminopropyl)-1-benzothiophene (6-APBT) is a monoamine releasing agent and serotonin receptor agonist of the amphetamine and benzothiophene families. It is related to MDA and other MDA bioisosteres like the benzofurans. The drug acts as a ... References External links 7-APBT - Isomer Design Amines Benzothiophenes Designer drugs Entactogens Substituted amphetamines {{Psychoactive-stub ...
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Substituted Benzothiophene
The substituted benzothiophenes are a class of chemical compounds based on benzothiophene. They are closely related to the substituted benzofurans, substituted tryptamines, and to other chemical groups such as the substituted benzodioxoles (or methylenedioxyphenyl compounds). Substituted benzothiophenes include the (2-aminopropyl)benzo �hiophenes (APBTs) 2-APBT, 3-APBT (SKF-6678), 4-APBT, 5-APBT, 5-MAPBT, 6-APBT, 6-MAPBT, and 7-APBT. These drugs have been found to act as serotonin–norepinephrine–dopamine releasing agents (SNDRAs) and, in some cases, as potent serotonin 5-HT2 receptor agonists, analogously to the entactogen MDMA. They do not produce hyperlocomotion in rodents, suggesting that they lack psychostimulant effects. However, those acting as serotonin 5-HT2 receptor agonists have been found to induce the head-twitch response, a behavioral proxy of psychedelic effects, in rodents. These findings suggest that substituted benzothiophenes may have entactogenic and/or ...
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Benzothiophenes
The substituted benzothiophenes are a class of chemical compounds based on benzothiophene. They are closely related to the substituted benzofurans, substituted tryptamines, and to other chemical class, chemical groups such as the substituted benzodioxoles (or methylenedioxyphenyl group, phenyl compounds). Substituted benzothiophenes include the (2-aminopropyl)benzo[β]thiophenes (APBTs) 2-APBT, 3-APBT (SKF-6678), 4-APBT, 5-APBT, 5-MAPBT, 6-APBT, 6-MAPBT, and 7-APBT. These drugs have been found to act as serotonin–norepinephrine–dopamine releasing agents (SNDRAs) and, in some cases, as potency (pharmacology), potent serotonin 5-HT2 receptor, 5-HT2 receptor agonists, analogously to the entactogen MDMA. They do not produce hyperlocomotion in rodents, suggesting that they lack psychostimulant effects. However, those acting as serotonin 5-HT2 receptor agonists have been found to induce the head-twitch response, a behavioral proxy of psychedelic drug, psychedelic effects, in rodents ...
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Monoamine Releasing Agent
A monoamine releasing agent (MRA), or simply monoamine releaser, is a drug that induces the release of one or more monoamine neurotransmitters from the presynaptic neuron into the synapse, leading to an increase in the extracellular concentrations of the neurotransmitters and hence enhanced signaling by those neurotransmitters. The monoamine neurotransmitters include serotonin, norepinephrine, and dopamine; MRAs can induce the release of one or more of these neurotransmitters. MRAs work by reversing the direction of the monoamine transporters (MATs), including the serotonin transporter (SERT), norepinephrine transporter (NET), and/or dopamine transporter (DAT), causing them to promote efflux of non-vesicular cytoplasmic monoamine neurotransmitter rather than reuptake of synaptic monoamine neurotransmitter. Many, but not all MRAs, also reverse the direction of the vesicular monoamine transporter 2 (VMAT2), thereby additionally resulting in efflux of vesicular monoamine neuro ...
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4-APBT
4-APBT, also known as 4-(2-aminopropyl)-1-benzothiophene, is a monoamine releasing agent (MRA) of the amphetamine and benzothiophene families. It acts specifically as a fairly well-balanced serotonin–norepinephrine–dopamine releasing agent (SNDRA), with values of 21.2nM for serotonin, 46.2nM for norepinephrine, and 66.6nM for dopamine in rat brain synaptosomes. 4-APBT was first described in the scientific literature by 2020. See also * 5-APBT * 6-APBT 6-(2-Aminopropyl)-1-benzothiophene (6-APBT) is a monoamine releasing agent and serotonin receptor agonist of the amphetamine and benzothiophene families. It is related to MDA and other MDA bioisosteres like the benzofurans. The drug acts as a ... * 7-APBT References External links 4-APBT - Isomer Design Amines Benzothiophenes Designer drugs Entactogens Substituted amphetamines {{Psychoactive-stub ...
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Serotonin–norepinephrine–dopamine Releasing Agent
A serotonin–norepinephrine–dopamine releasing agent (SNDRA), also known as a triple releasing agent (TRA), is a type of drug which induces the release of serotonin, norepinephrine/epinephrine, and dopamine in the brain and body. SNDRAs produce euphoriant, entactogen, and psychostimulant effects, and are almost exclusively encountered as recreational drugs. A closely related type of drug is a serotonin–norepinephrine–dopamine reuptake inhibitor (SNDRI). Examples of SNDRAs Examples of SNDRAs include specific amphetamines such as MDMA, MDA, 4-methylamphetamine, methamphetamine (in high doses), certain substituted benzofurans such as 5-APB and 6-APB, naphthylisopropylamine; cathinones such as mephedrone and methylone; tryptamines such as αMT and αET; along with agents of other chemical classes such as 4,4'-DMAR, and 5-IAI.Bruce E. Blough, Richard Rothman, Antonio Landavazo, Kevin M. Page, Ann Marie Decker. Phenylmorpholines and analogues thereof. US Patent 2013/0 ...
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Designer Drugs
A designer drug is a structural or functional analog of a controlled substance that has been designed to mimic the pharmacological effects of the original drug, while avoiding classification as illegal and/or detection in standard drug tests. Designer drugs include psychoactive substances that have been designated by the European Union, Australia, and New Zealand, as new psychoactive substances (NPS) as well as analogs of performance-enhancing drugs such as designer steroids. Some of these designer drugs were originally synthesized by academic or industrial researchers in an effort to discover more potent derivatives with fewer side effects and shorter duration (and possibly also because it is easier to apply for patents for new molecules) and were later co-opted for recreational use. Other designer drugs were prepared for the first time in clandestine laboratories. Because the efficacy and safety of these substances have not been thoroughly evaluated in animal and human tr ...
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Amines
In chemistry, amines (, ) are organic compounds that contain carbon-nitrogen bonds. Amines are formed when one or more hydrogen atoms in ammonia are replaced by alkyl or aryl groups. The nitrogen atom in an amine possesses a lone pair of electrons. Amines can also exist as hetero cyclic compounds. Aniline is the simplest aromatic amine, consisting of a benzene ring bonded to an amino group. Amines are classified into three types: primary (1°), secondary (2°), and tertiary (3°) amines. Primary amines (1°) contain one alkyl or aryl substituent and have the general formula RNH2. Secondary amines (2°) have two alkyl or aryl groups attached to the nitrogen atom, with the general formula R2NH. Tertiary amines (3°) contain three substituent groups bonded to the nitrogen atom, and are represented by the formula R3N. The functional group present in primary amines is called the amino group. Classification of amines Amines can be classified according to the nature and number o ...
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6-APBT
6-(2-Aminopropyl)-1-benzothiophene (6-APBT) is a monoamine releasing agent and serotonin receptor agonist of the amphetamine and benzothiophene families. It is related to MDA and other MDA bioisosteres like the benzofurans. The drug acts as a potent and well-balanced serotonin–norepinephrine–dopamine releasing agent (SNDRA) and full agonist of the serotonin 5-HT2 receptors. 6-APBT does not increase locomotor activity in rodents and hence does not appear to have stimulant-like effects. However, it does produce the head-twitch response, a behavioral proxy of psychedelic effects, and hence may have hallucinogenic effects. 6-APBT was first described in the scientific literature by 2020. See also * 5-APBT * 6-APB 6-APB (6-(2-aminopropyl)benzofuran) is an empathogenic psychoactive drug of the substituted benzofuran and substituted phenethylamine classes. 6-APB and other compounds are sometimes informally called "Benzofury" in newspaper reports. It is ... * 6-APDB * ...
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5-APBT
5-(2-Aminopropyl)-1-benzothiophene (5-APBT) is a monoamine releasing agent and serotonin receptor agonist of the amphetamine and benzothiophene families. It is related to MDA and other MDA bioisosteres like the benzofurans. The drug acts as a potent serotonin–norepinephrine–dopamine releasing agent (SNDRA) and full agonist of the serotonin 5-HT2 receptors. It has approximately 4- and 9-fold preference for induction of serotonin release over norepinephrine and dopamine release, respectively, in rat brain synaptosomes. 5-APBT does not increase locomotor activity in rodents and hence does not appear to have stimulant-like effects. However, it does produce the head-twitch response, a behavioral proxy of psychedelic effects, and hence may have hallucinogenic effects. 5-APBT was first described in the scientific literature by 2020. See also * 5-MAPBT * 6-APBT * 5-APB 5-APB (abbreviation of "5-(2-aminopropyl)benzofuran") is an empathogenic psychoactive compound of the phen ...
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Synaptosome
A synaptosome is an isolated synaptic terminal from a neuron. Synaptosomes are obtained by mild homogenization of nervous tissue under isotonic conditions and subsequent fractionation using differential and density gradient centrifugation. Liquid shear detaches the nerve terminals from the axon and the plasma membrane surrounding the nerve terminal particle reseals. Synaptosomes are osmotically sensitive, contain numerous small clear synaptic vesicles, sometimes larger dense-core vesicles and frequently one or more small mitochondria. They carry the morphological features and most of the chemical properties of the original nerve terminal. Synaptosomes isolated from mammalian brain often retain a piece of the attached postsynaptic membrane, facing the active zone. Synaptosomes were first isolated in an attempt to identify the subcellular compartment corresponding to the fraction of so-called bound acetylcholine that remains when brain tissue is homogenized in iso-osmotic sucrose. ...
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Scientific Literature
Scientific literature encompasses a vast body of academic papers that spans various disciplines within the natural and social sciences. It primarily consists of academic papers that present original empirical research and theoretical contributions. These papers serve as essential sources of knowledge and are commonly referred to simply as "the literature" within specific research fields. The process of academic publishing involves disseminating research findings to a wider audience. Researchers submit their work to reputable journals or conferences, where it undergoes rigorous evaluation by experts in the field. This evaluation, known as peer review, ensures the quality, validity, and reliability of the research before it becomes part of the scientific literature. Peer-reviewed publications contribute significantly to advancing our understanding of the world and shaping future research endeavors. Original scientific research first published in scientific journals co ...
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Dopamine
Dopamine (DA, a contraction of 3,4-dihydroxyphenethylamine) is a neuromodulatory molecule that plays several important roles in cells. It is an organic chemical of the catecholamine and phenethylamine families. It is an amine synthesized by removing a carboxyl group from a molecule of its precursor chemical, L-DOPA, which is synthesized in the brain and kidneys. Dopamine is also synthesized in plants and most animals. In the brain, dopamine functions as a neurotransmitter—a chemical released by neurons (nerve cells) to send signals to other nerve cells. The brain includes several distinct dopamine pathways, one of which plays a major role in the motivational component of reward-motivated behavior. The anticipation of most types of rewards increases the level of dopamine in the brain, and many addictive drugs increase dopamine release or block its reuptake into neurons following release. Other brain dopamine pathways are involved in motor control and in controllin ...
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