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ADB-HEXINACA
ADB-HEXINACA (also known as ADB-HINACA and ADMB-HEXINACA) is a cannabinoid designer drug that has been found as an ingredient in some synthetic cannabis products, first appearing in early 2021. It is a longer chain homologue of previously encountered synthetic cannabinoid compounds such as ADB-BUTINACA and ADB-PINACA. See also * 4F-ADB * 5F-ADB-PINACA * ADB-CHMINACA * ADB-FUBINACA * ADB-4en-PINACA * JWH-019 JWH-019 is an analgesic chemical from the naphthoylindole family that acts as a cannabinoid agonist at both the CB1 and CB2 receptors. It is the ''N''-hexyl homolog of the more common synthetic cannabinoid compound JWH-018. Unlike the butyl hom ... References {{Cannabinoids Cannabinoids Designer drugs Indazolecarboxamides Tert-butyl compounds ...
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ADB-BUTINACA
ADB-BINACA is a cannabinoid designer drug that has been found as an ingredient in some synthetic cannabis products. It was originally developed by Pfizer as a potential analgesic, and is a potent agonist of the CB1 receptor with a binding affinity (Ki) of 0.33 nM and an EC50 of 14.7 nM. ADB-BUTINACA The analogue with a 1-butyl substitution on the indazole ring rather than 1-benzyl has also been sold as a designer drug under the name ADB-BINACA, but is now more commonly referred to as ADB-BUTINACA to avoid confusion with the benzyl compound. It is a similarly potent CB1 agonist, with an EC50 of 6.36 nM. See also * 4F-ADB * 5F-AB-PINACA * 5F-ADB * 5F-ADB-PINACA * ADB-CHMINACA * ADB-FUBICA * ADB-FUBINACA * ADB-HEXINACA * ADB-PINACA * ADB-4en-PINACA ADB-4en-PINACA is a cannabinoid designer drug that has been found as an ingredient in some synthetic cannabis products, first appearing in early 2021. It is a reasonably potent cannabinoid agonist ''in vitro'' but has not been ...
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ADB-PINACA
ADB-PINACA is a cannabinoid designer drug that is an ingredient in some synthetic cannabis products. It is a potent agonist of the CB1 receptor and CB2 receptor with EC50 values of 0.52 nM and 0.88 nM respectively. Like MDMB-FUBINACA, this compound contains an amino acid residue of tert-leucine. Side effects ADB-PINACA has been linked to multiple hospitalizations and deaths due to its use. Metabolism Nineteen ADB-PINACA major metabolites were identified in several incubations with cryopreserved human hepatocytes. Major metabolic reactions included pentyl hydroxylation, hydroxylation followed by oxidation (ketone formation), and glucuronidation. Legality ADB-PINACA is listed in the Fifth Schedule of the Misuse of Drugs Act (MDA) and therefore illegal in Singapore as of May 2015. In the United States, it is a Schedule I controlled substance. As of October 2015 ADB-PINACA is a controlled substance in China. See also * 5F-AB-PINACA * 5F-ADB * 5F-ADB-PINACA ...
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ADB-CHMINACA
ADB-CHMINACA (also known as MAB-CHMINACA) is an indazole-based synthetic cannabinoid. It is a potent agonist of the CB1 receptor with a binding affinity of ''K''i = 0.289 nM and was originally developed by Pfizer in 2009 as an analgesic medication. It was identified in cannabinoid blends in Japan in early 2015. Side effects There have been a number of reported cases of deaths and hospitalizations in relation to this synthetic cannabinoid. Legal status In the United States, ADB-CHMINACA is a Schedule I controlled substance. Prior to its listing at the federal level in 2018, Louisiana placed ADB-CHMINACA on its Schedule I list by emergency scheduling in 2014. Sweden's public health agency suggested to classify ADB-CHMINACA as hazardous substance on November 10, 2014. ADB-CHMINACA is listed in the Fifth Schedule of the Misuse of Drugs Act (MDA) and therefore illegal in Singapore as of May 2015. ADB-CHMINACA is illegal in Switzerland as of December 2015. M ...
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ADB-4en-PINACA
ADB-4en-PINACA is a cannabinoid designer drug that has been found as an ingredient in some synthetic cannabis products, first appearing in early 2021. It is a reasonably potent cannabinoid agonist ''in vitro'' but has not been so widely sold as related compounds such as ADB-PINACA and MDMB-4en-PINACA. See also * 5F-ADB-PINACA * ADB-BINACA * ADB-CHMINACA * ADB-FUBINACA * ADB-HEXINACA ADB-HEXINACA (also known as ADB-HINACA and ADMB-HEXINACA) is a cannabinoid designer drug that has been found as an ingredient in some synthetic cannabis products, first appearing in early 2021. It is a longer chain homologue of previously encou ... References {{Cannabinoids Cannabinoids Designer drugs Indazolecarboxamides Tert-butyl compounds ...
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Cannabinoid
Cannabinoids () are several structural classes of compounds found in the cannabis plant primarily and most animal organisms (although insects lack such receptors) or as synthetic compounds. The most notable cannabinoid is the phytocannabinoid tetrahydrocannabinol (THC) (delta-9-THC), the primary intoxicating compound in cannabis. Cannabidiol (CBD) is a major constituent of temperate Cannabis plants and a minor constituent in tropical varieties. At least 113 distinct phytocannabinoids have been isolated from cannabis, although only four (i.e., THCA, CBDA, CBCA and their common precursor CBGA) have been demonstrated to have a biogenetic origin. It was reported in 2020 that phytocannabinoids can be found in other plants such as rhododendron, licorice and liverwort, and earlier in Echinacea. Phytocannabinoids are multi-ring phenolic compounds structurally related to THC, but endocannabinoids are fatty acid derivatives. Nonclassical synthetic cannabinoids (cannabimimetics) include amin ...
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Designer Drug
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 as new psychoactive substances (NPS) as well as analogs of performance-enhancing drugs such as designer steroids. Some of these 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 trials, the use of some of these drugs may result i ...
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Synthetic Cannabis
Synthetic cannabinoids are a class of designer drug molecules that bind to the same receptors to which cannabinoids (THC, CBD and many others) in cannabis plants attach. These novel psychoactive substances should not be confused with synthetic phytocannabinoids (THC or CBD obtained by chemical synthesis) or synthetic endocannabinoids from which they are in many aspects distinct. Typically, synthetic cannabinoids are sprayed onto plant matter and are usually smoked, although they have also been ingested as a concentrated liquid form in the US and UK since 2016. They have been marketed as herbal incense, or "herbal smoking blends", and sold under common names like K2, spice, and synthetic marijuana. They are often labeled "not for human consumption" for liability defense. A large and complex variety of synthetic cannabinoids are designed in an attempt to avoid legal restrictions on cannabis, making synthetic cannabinoids designer drugs. Most synthetic cannabinoids are agonists of ...
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Homology (chemistry)
In chemistry, homology is the appearance of homologues. A homologue (also spelled as homolog) is a compound belonging to a series of compounds differing from each other by a repeating unit, such as a methylene bridge −−, a peptide residue, etc. A homolog is a special case of an analog. Examples are alkanes and compounds with alkyl side chains of different length (the repeating unit being a methylene group -CH2-). Periodic table On the periodic table, homologous elements share many electrochemical properties and appear in the same group (column) of the table. For example, all noble gases are colorless, monatomic gases with very low reactivity. These similarities are due to similar structure in their outer shells of valence electrons. Mendeleev used the prefix eka- for an unknown element below a known one in the same group. See also * Homologous series * Analog Analog or analogue may refer to: Computing and electronics * Analog signal, in which information is enco ...
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4F-ADB
-MDMB-BINACA (also known as 4F-MDMB-BUTINACA or 4F-ADB) is an indazole-based synthetic cannabinoid from the indazole-3-carboxamide family. It has been used as an active ingredient in synthetic cannabis products and sold as a designer drug since late 2018. 4F-MDMB-BINACA is an agonist of the CB1 receptor (EC50 = 7.39 nM), though it is unclear whether it is selective for this target. In December 2019, the UNODC announced scheduling recommendations placing 4F-MDMB-BINACA into Schedule II throughout the world. Related compounds The corresponding indole core analogue, 4F-MDMB-BICA or 4F-MDMB-BUTICA has also been widely sold as a designer drug by chemical providers on the net, first being identified in May 2020. Legal Status United Kingdom It's illegal to sell, distribute, supply, transport or trade the pharmaceutical drug under the Psychoactive Substances Act 2016. See also * 5F-MDMB-PINACA * 5F-MDMB-PICA * 5F-MMB-PINACA * 5F-MPP-PICA *AB-FUBINACA AB-FUBINACA is a drug that act ...
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5F-ADB-PINACA
5F-ADB-PINACA is a cannabinoid designer drug that is an ingredient in some synthetic cannabis products. It is a potent agonist of the CB1 receptor and CB2 receptor with EC50 values of 0.24 nM and 2.1 nM respectively. Metabolism Twelve 5F-ADB-PINACA major metabolites were identified in several incubations with cryopreserved human hepatocytes. Major metabolic reactions included oxidative defluorination followed by carboxylation. Legality 5F-ADB-PINACA is listed in the Fifth Schedule of the Misuse of Drugs Act (MDA) and therefore illegal in Singapore as of May 2015. See also * 5F-AB-PINACA * 5F-ADB * 5F-AMB * 5F-APINACA * AB-FUBINACA * AB-CHFUPYCA * AB-CHMINACA * AB-PINACA * ADB-CHMINACA * ADB-FUBINACA * ADB-PINACA * ADBICA * APICA * APINACA * APP-FUBINACA * MDMB-CHMICA * MDMB-CHMINACA * MDMB-FUBINACA * PX-1 * PX-2 * PX-3 PX-3 (also known as APP-CHMINACA) is an indazole-based synthetic cannabinoid. It is a potent agonist of the CB1 receptor with a binding a ...
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ADB-FUBINACA
ADB-FUBINACA is a designer drug identified in synthetic cannabis blends in Japan in 2013. In 2018, it was the third-most common synthetic cannabinoid identified in drugs seized by the Drug Enforcement Administration. The (''S'')-enantiomer of ADB-FUBINACA is described in a 2009 Pfizer patent and has been reported to be a potent agonist of the CB1 receptor and the CB2 receptor with EC50 values of 1.2 nM and 3.5 nM, respectively. ADB-FUBINACA features a carboxamide group at the 3-indazole position, like SDB-001 and STS-135. ADB-FUBINACA appears to be the product of rational drug design, since it differs from AB-FUBINACA only by the replacement of the isopropyl group with a ''tert''-butyl group. An analogue of ADB-FUBINACA, ADSB-FUB-187, containing a more functionalized carboxamide substituent was recently reported. Side effects One death through coronary arterial thrombosis has been linked to ADB-FUBINACA intoxication. At least an additional 8 deaths in Hungary ...
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JWH-019
JWH-019 is an analgesic chemical from the naphthoylindole family that acts as a cannabinoid agonist at both the CB1 and CB2 receptors. It is the ''N''-hexyl homolog of the more common synthetic cannabinoid compound JWH-018. Unlike the butyl homolog JWH-073, which is several times weaker than JWH-018, the hexyl homolog is only slightly less potent, although extending the chain one carbon longer to the heptyl homolog JWH-020 results in dramatic loss of activity. These results show that the optimum side chain length for CB1 binding in the naphthoylindole series is the five-carbon pentyl chain, shorter than in the classical cannabinoids where a seven-carbon heptyl chain produces the most potent compounds. This difference is thought to reflect a slightly different binding conformation adopted by the naphthoylindole compounds as compared to the classical cannabinoids, and may be useful in characterizing the active site of the CB1 and CB2 receptors. Legal status China As of Octobe ...
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