6-CAT
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6-CAT
6-Chloro-2-aminotetralin (6-CAT) is a drug which acts as a selective serotonin releasing agent (SSRA) and is a putative entactogen in humans. It is a rigid analogue of ''para''-chloroamphetamine (PCA). According to Nichols ''et al.'', 6-CAT is a non-neurotoxic analog of PCA. See also * 2-Aminotetralin 2-Aminotetralin (2-AT), also known as 1,2,3,4-tetrahydronaphthalen-2-amine (THN), is a stimulant drug with a chemical structure consisting of a tetralin group combined with an amine. 2-AT is a rigid analogue of phenylisobutylamine and fully sub ... References {{DEFAULTSORT:Chloroaminotetralin Entactogens and empathogens Aminotetralins Chloroarenes Serotonin releasing agents ...
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Selective Serotonin Releasing Agent
A serotonin releasing agent (SRA) is a type of drug that induces the releasing agent, release of serotonin into the neuronal synaptic cleft. A selective serotonin releasing agent (SSRA) is an SRA with less significant or no efficacy in producing neurotransmitter wikt:efflux, efflux at other types of monoamine neurons. SSRAs have been used clinically as appetite suppressants, and they have also been proposed as novel antidepressants and anxiolytics with the potential for a faster onset of action and superior efficacy relative to the selective serotonin reuptake inhibitors (SSRIs). A closely related type of drug is a serotonin reuptake inhibitor (SRI). Examples and use of SRAs Substituted amphetamine, Amphetamines like MDMA, 3,4-Methylenedioxy-N-ethylamphetamine, MDEA, methylenedioxyamphetamine, MDA, and MBDB, among other relatives (see substituted methylenedioxyphenethylamine, MDxx), are recreational drugs termed entactogens. They act as serotonin-norepinephrine-dopamine releasing ...
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2-Aminotetralin
2-Aminotetralin (2-AT), also known as 1,2,3,4-tetrahydronaphthalen-2-amine (THN), is a stimulant drug with a chemical structure consisting of a tetralin group combined with an amine. 2-AT is a rigid analogue of phenylisobutylamine and fully substitutes for d-amphetamine in rat discrimination tests, although at one eighth the potency. It has been shown to inhibit the reuptake of serotonin and norepinephrine, and likely induces their release as well. It is also likely to act on dopamine on account of its full substitution of d-amphetamine in rodent studies. Chemical derivatives A number of derivatives of 2-aminotetralin exist, including: See also * 2-Aminodilin 2-Amino-1,2-dihydronapthalene (2-ADN), also known as 2-aminodilin (2-AD), is a stimulant drug. It is a rigid analogue of phenylisobutylamine and substitutes for amphetamine Amphetamine (contracted from alpha- methylphenethylamine) is a st ... * 2-Aminoindane References {{DEFAULTSORT:Aminotetral ...
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Mouth
In animal anatomy, the mouth, also known as the oral cavity, or in Latin cavum oris, is the opening through which many animals take in food and issue vocal sounds. It is also the cavity lying at the upper end of the alimentary canal, bounded on the outside by the lips and inside by the pharynx. In tetrapods, it contains the tongue and, except for some like birds, teeth. This cavity is also known as the buccal cavity, from the Latin ''bucca'' ("cheek"). Some animal phyla, including arthropods, molluscs and chordates, have a complete digestive system, with a mouth at one end and an anus at the other. Which end forms first in ontogeny is a criterion used to classify bilaterian animals into protostomes and deuterostomes. Development In the first multicellular animals, there was probably no mouth or gut and food particles were engulfed by the cells on the exterior surface by a process known as endocytosis. The particles became enclosed in vacuoles into which enzymes were secr ...
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Drug
A drug is any chemical substance that causes a change in an organism's physiology or psychology when consumed. Drugs are typically distinguished from food and substances that provide nutritional support. Consumption of drugs can be via insufflation (medicine), inhalation, drug injection, injection, smoking, ingestion, absorption (skin), absorption via a dermal patch, patch on the skin, suppository, or sublingual administration, dissolution under the tongue. In pharmacology, a drug is a chemical substance, typically of known structure, which, when administered to a living organism, produces a biological effect. A pharmaceutical drug, also called a medication or medicine, is a chemical substance used to pharmacotherapy, treat, cure, preventive healthcare, prevent, or medical diagnosis, diagnose a disease or to promote well-being. Traditionally drugs were obtained through extraction from medicinal plants, but more recently also by organic synthesis. Pharmaceutical drugs may be used ...
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Structural Analog
A structural analog (analogue in modern traditional English; Commonwealth English), also known as a chemical analog or simply an analog, is a compound having a structure similar to that of another compound, but differing from it in respect to a certain component. It can differ in one or more atoms, functional groups, or substructures, which are replaced with other atoms, groups, or substructures. A structural analog can be imagined to be formed, at least theoretically, from the other compound. Structural analogs are often isoelectronic. Despite a high chemical similarity, structural analogs are not necessarily functional analogs and can have very different physical, chemical, biochemical, or pharmacological properties. In drug discovery, either a large series of structural analogs of an initial lead compound are created and tested as part of a structure–activity relationship study or a database is screened for structural analogs of a lead compound. Chemical analogues of il ...
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Chloroarenes
In organic chemistry, an aryl halide (also known as haloarene) is an aromatic compound in which one or more hydrogen atoms, directly bonded to an aromatic ring are replaced by a halide. The haloarene are different from haloalkanes because they exhibit many differences in methods of preparation and properties. The most important members are the aryl chlorides, but the class of compounds is so broad that there are many derivatives and applications. Preparation The two main preparatory routes to aryl halides are direct halogenation and via diazonium salts. Direct halogenation In the Friedel-Crafts halogenation, Lewis acids serve as catalysts. Many metal chlorides are used, examples include iron(III) chloride or aluminium chloride. The most important aryl halide, chlorobenzene is produced by this route. Monochlorination of benzene is always accompanied by formation of the dichlorobenzene derivatives. Arenes with electron donating groups react with halogens even in the absence of ...
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