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Technical Information
Formal Name
(4-methyl-1-naphthalenyl)(1-pentyl-1H-indol-3-yl)-methanone
CAS Number
619294-47-2
Molecular Formula
C25H25NO
Formula Weight
Purity
≥98%
Formulation
A crystalline solid
DMF: 15 mg/mlDMSO: 15 mg/mlEthanol: 5 mg/ml
λmax
221, 247, 316 nm
SMILES
CCCCCN1C2=C(C=CC=C2)C(C(C3=CC=C(C)C4=C3C=CC=C4)=O)=C1
InChi Code
InChI=1S/C25H25NO/c1-3-4-9-16-26-17-23(21-12-7-8-13-24(21)26)25(27)22-15-14-18(2)19-10-5-6-11-20(19)22/h5-8,10-15,17H,3-4,9,16H2,1-2H3
InChi Key
HUKJQMKQFWYIHS-UHFFFAOYSA-N
Regulatory Information
DEA Schedule
I
Shipping & Storage Information
Storage
-20°C
Shipping
Room temperature in continental US; may vary elsewhere
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Certificates of Analysis & Batch Specific Data

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    Product Description

    JWH 122 is a synthetic cannabinoid (CB) that displays high-affinities for both CB1 (Ki = 0.69 nM) and CB2 (Ki = 1.2 nM) receptors.1,2 This product is intended for research and forensic applications.

    WARNING This product is not for human or veterinary use.

    References & Product Citations
    Product Description References

    1. Huffman, J.W., Zengin, G., Wu, M.J., et alStructure-activity relationships for 1-alkyl-3-(1-naphthoyl)indoles at the cannabinoid CB1 and CB2 receptors: Steric and electronic effects of naphthoyl substituents. New highly selective CB2 receptor agonists. Bioorg. Med. Chem. 13(1), 89-112 (2005).

    2. Huffman, J.W., Mabon, R., Wu, M.J., et al3-indolyl-1-naphthylmethanes: New cannabimimetic indoles provide evidence for aromatic stacking interactions with the CB1 cannabinoid receptor. Bioorgan. Med. Chem. 11(4), 539-549 (2003).

    Product Citations

    Cho, B., Cho, H.S., Kim, J., et alSimultaneous determination of synthetic cannabinoids and their metabolites in human hair using LC-MS/MS and application to human hair. Forensic Sci. Int. 306, 110058 (2020).

    Marino, M.A., Voyer, B., Cody, R.B., et alRapid identification of synthetic cannabinoids in herbal incenses with DART-MS and NMR. J. Forensic Sci. 61(S1), S82-S91 (2016).

    Ciolino, L.A. Quantitation of synthetic cannabinoids in plant materials using high performance liquid chromatography with UV detection (validated method). J. Forensic Sci. 60(5), 1171-1181 (2015).