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CAS:499-44-5
Molecular Formula:C10H12O2
Isopropyltropolone; 2,4,6-Cycloheptatrien-1-One, 2-Hydroxy-4-(1-Methylethyl)-; β-Thujaplicine; Hinokitol; 2-Hydroxy-4-(1-Methylethyl)-2,4,6-Cycloheptatrien-1-One; 4-Isopropyltropolone; Hinokitiol; 2-Hydroxy-4-Isopropylcyclohepta-2,4,6-Trien-1-One; beta-Thujaplicin; 2-Hydroxy-4-Isopropyl-2,4,6-Cycloheptatrien-1-One; B-Thujaplicin; 2-Hydroxy-6-Propan-2-Ylcyclohepta-2,4,6-Trien-1-one
Brief Introduction
Beta-thujaplicin is a monoterpenoid that is cyclohepta-2,4,6-trien-1-one substituted by a hydroxy group at position 2 and an isopropyl group at position 4. Isolated from Thuja plicata and Chamaecyparis obtusa, it exhibits antimicrobial activities. It has a role as an antifungal agent, an antibacterial agent, an antiplasmodial drug, an antineoplastic agent and a plant metabolite. It is an enol, a cyclic ketone and a monoterpenoid. It derives from a hydride of a cyclohepta-1,3,5-triene.
CAS:50-36-2
Molecular Formula:C17H21NO4
Bernice; Eritroxilina; Coke; Cholly; Methyl (3S,4R)-3-Benzoyloxy-8-Methyl-8-Azabicyclo[3.2.1]Octane-4-Carboxylate; Methyl (1R,2R,3S,5S)-3-Benzoyloxy-8-Methyl-8-Azabicyclo[3.2.1]Octane-2-Carboxylate Hydrochloride; 8-Azabicyclo[3.2.1]Octane-2-Carboxylic Acid, 3-(Benzoyloxy)-8-Methyl-, Methyl Ester, [1R-(Exo,Exo)]-; Bernies; [3H]-Cocaine; Kokayeen; [1R-(Exo,Exo)]-3-(Benzoyloxy)-8-Methyl-8-Azabicyclo[3.2.1]Octane-2-Carboxylic Acid Methyl Ester; Burese; Corine; Erytroxylin; Cocanine; COCA
Brief Introduction
Cocaine is a benzoid acid ester that that was originally used as a local anesthetic, but is no longer used because of its potent addictive qualities. When given in high doses systemically, cocaine has mood elevating effects that have led to its widescale abuse. High doses of cocaine can be associated with toxic reactions including hyperthermia, rhabdomyolysis, shock and acute liver injury which can be severe and even fatal.
CAS:50-55-5
Molecular Formula:C33H40N2O9
Yohimban-16-Carboxylic Acid, 11,17-Dimethoxy-18-[(3,4,5-Trimethoxybenzoyl)Oxy]-, Methyl Ester, (3α,16α,17-,18α,20-)-; Serpasil; Methyl Reserpate 3,4,5-Trimethoxybenzoic Acid Ester; Serpivite; Methyl (1R,15S,17R,18R,19S,20S)-6,18-Dimethoxy-17-(3,4,5-Trimethoxybenzoyl)Oxy-1,3,11,12,14,15,16,17,18,19,20,21-Dodecahydroyohimban-19-Carboxylate; [3H]-Reserpine; Serpanray; Serpalan; Apoplon; Raupasil; Rausedil; Raunervil; Hiserpia
Brief Introduction
Reserpine can reduce blood pressure and heart rate. Its effect is slow, mild and lasting. It has a lasting stabilizing effect on the central nervous system. It is a good sedative. When treating patients with hypertension, it can be combined with external traditional Chinese medicine such as external medicine paste, antihypertensive application paste and hanging pressure paste to strengthen the effect of reducing blood pressure.
CAS:500-62-9
Molecular Formula:C15H14O4
4-Methoxy-6-((E)-4-Methoxystyryl)Pyran-2-One; 4-Methoxy-6-(P-Methoxystyryl)-2H-Pyran-2-One; Unii-R970U49V3C
Brief Introduction
Methoxycapsaicin is a lactone isolated from kava plant. The active ingredients of kava are a group of about. The 18 compounds are collectively referred to as kava lactone or kava pyrone. Kava lactone, dihydrokava lactone, methylkava lactone, dihydromethylkava lactone, methoxyzanthoxylin and demethoxyzanthoxylin are the six main kava lactones. Kava drinks and other preparations are considered anti anxiety and are used to treat anxiety disorders. Dietary supplements containing kava shrub roots have been involved in several cases of liver toxicity, including several people who need liver transplantation after using kava supplements.
CAS:500-64-1
Molecular Formula:C14H14O3
Kawain; 5,6-Dihydro-4-Methoxy-6-Styryl-2H-Pyran-2-One; 5,6-Dihydro-4-Methoxy-6-Styryl-2-Pyron; Gonosan; 2H-Pyran-2-One, 5,6-Dihydro-4-Methoxy-6-Styryl-, (+)-; Kavain
Brief Introduction
(+) - kavain is a major kava lactone extracted from kava pepper. It has anticonvulsant effect and weakens the contraction of vascular smooth muscle through the interaction of voltage dependent Na + and C2 + channels. Kavain can work with α four β two δ GABAA receptor binding enhances the efficacy of GABA. Kavain can be used in inflammatory disease research.
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