Harmine D3

Product Name Harmine D3
CAT No. CS-T-55503
CAS No. 1216704-96-9
Category Stable Isotopes
Stock IN-Stock
Mol. Wt. 215.27 g/mol
Mol. For. C₁₃H₉D₃N₂O
Hazardous This is a Hazardous Compound
COA View Sample COA
MSDS View Sample MSDS
Smileys CC1=C(NC2=CC(OC([2H])([2H])[2H])=CC=C32)C3=CC=N1
Canonical Smiles CC1=NC=CC2=C1NC3=C2C=CC(=C3)OC
InchIKey BXNJHAXVSOCGBA-BMSJAHLVSA-N
Inchl InChI=1S/C13H12N2O/c1-8-13-11(5-6-14-8)10-4-3-9(16-2)7-12(10)15-13/h3-7,15H,1-2H3/i2D3
IUPAC 1-methyl-7-(trideuteriomethoxy)-9H-pyrido[3,4-b]indole
Controlled No
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Harmine D3 is a deuterated form of harmine, a natural beta-carboline alkaloid found in a variety of plants including Banisteriopsis caapi and Peganum harmala. It is a psychoactive compound that has been traditionally used in shamanic rituals and spiritual practices in South America and the Middle East. Harmine D3 is commonly used in neuroscience research as a selective inhibitor of the enzyme monoamine oxidase A (MAO-A), which is responsible for the metabolism of neurotransmitters such as serotonin, dopamine, and norepinephrine. By inhibiting MAO-A, harmine D3 increases the levels of these neurotransmitters in the brain, leading to mood enhancement, cognitive improvement, and neuroprotection. Additionally, harmine D3 has been shown to have anticancer properties, as it can induce apoptosis and inhibit cell proliferation in various cancer cell lines. It also has anti-inflammatory and antioxidant effects, which may contribute to its neuroprotective properties. Chemically, harmine D3 is a tricyclic indole alkaloid with a molecular formula of C13H10D3N3O. It has a melting point of 256-259°C and a boiling point of 393°C. Its structure consists of three rings, including a pyridine ring, a benzene ring, and an indole ring. Harmine D3 is slightly soluble in water and more soluble in organic solvents such as methanol, ethanol, and chloroform.

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