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Use of descending thin layer chromatography for identification of cannabinoids.

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The article describes a technique that uses descending thin layer chromatography (TLC) for identification of cannabinoids. The technique employs a partition system of two-dimensional descending TLC, in which toluene is used as the eluting solvent. The quantity of cannabinoids obtained by TLC has

[Neurologic complications of drug addiction. General aspects. Complications caused by cannabis, designer drugs and volatile substances].

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When a patient presents a neurological disorder, it is important to consider drugs is a possible cause. The risk to suffer neurological complications by drugs is unknown. It is difficult to calculate the number of drug addicts or the number of occasional drug users. It is important take into account

Iodine-mediated cyclization of cannabigerol (CBG) expands the cannabinoid biological and chemical space.

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Electrophilic attack to a double bond, the classic trigger of intramolecular isoprenoid cyclizations, is apparently silent in Cannabis and the diversity of the cannabinome can be ultimately traced to the oxidative cyclization of cannabigerolic acid (CBGA, 1a), a process triggered by the generation

Enzymatic synthesis of anandamide, an endogenous ligand for the cannabinoid receptor, by brain membranes.

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Anandamide, an endogenous eicosanoid derivative (arachidonoylethanolamide), binds to the cannabinoid receptor, a member of the G protein-coupled superfamily. It also inhibits both adenylate cyclase and N-type calcium channel opening. The enzymatic synthesis of anandamide in bovine brain tissue was

Cannabis extract, but not delta 1-tetrahydrocannabinol, inhibits human brain and liver monoamine oxidase.

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Mitochondrial monoamine oxidase (MAO) of human brain and liver was inhibited by low concentrations of cannabis extract (CE) and a cannabinoid fraction isolated from it. delta 1-Tetrahydrocannabinol (THC) did not elicit any inhibitory effect on the enzyme. The inhibition of MAO activity by CE and by
The use of novel synthetic cannabinoids as intoxicants continues in spite of associated health risks. These compounds are typically smoked or vaporized, but many synthetic cannabinoids contain thermally labile chemical moieties. This study investigated the thermal stability six
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