| Literature DB >> 29963209 |
Shimpei Watanabe1, Unnikrishnan Kuzhiumparambil1,2, Shanlin Fu1.
Abstract
PURPOSE: Identifying intake of synthetic cannabinoids generally requires the metabolism data of the drugs so that appropriate metabolite markers can be targeted in urine testing. However, the continuous appearance of new cannabinoids during the last decade has made it difficult to keep up with all the compounds including {1-[(1-methylpiperidin-2-yl)methyl]-1H-indol-3-yl}(naphthalen-1-yl)methanone (AM1220). In this study, metabolism of AM1220 was investigated with human liver microsomes and the fungus Cunninghamella elegans.Entities:
Keywords: AM1220; Cunninghamella elegans; High resolution mass spectrometry; Human liver microsomes; In vitro metabolism; Synthetic cannabinoid
Year: 2018 PMID: 29963209 PMCID: PMC6002424 DOI: 10.1007/s11419-018-0424-y
Source DB: PubMed Journal: Forensic Toxicol ISSN: 1860-8965 Impact factor: 4.096
Average percentage of the drug remaining and relative standard deviation (RSD, n = 3) at each time point for three human liver microsome (HLM) incubation samples for metabolic stability study
| Time (min) | Average percentage of the drug remaining (%) | RSD (%) | |
|---|---|---|---|
| Sample 1 | 0 | 100 | 0 |
| 3 | 44.4 | 0.9 | |
| 8 | 14.9 | 0.6 | |
| 13 | 4.6 | 2.1 | |
| 20 | 1.0 | 7.0 | |
| 30 | 0.2 | 14.7 | |
| Sample 2 | 0 | 100 | 0 |
| 3 | 46.9 | 0.3 | |
| 8 | 14.9 | 1.0 | |
| 13 | 5.3 | 1.1 | |
| 20 | 1.0 | 3.1 | |
| 30 | 0.3 | 30.2 | |
| Sample 3 | 0 | 100 | 0 |
| 3 | 55.9 | 1.5 | |
| 8 | 18.9 | 0.2 | |
| 13 | 6.7 | 0.6 | |
| 20 | 2.0 | 4.2 | |
| 30 | 0.8 | 4.6 |
Fig. 1Combined extracted ion chromatograms, from total ion current chromatogram, of AM1220 and its metabolites in human liver microsome (HLM) and fungus incubation
Fig. 2Product ion spectra of AM1220 and its metabolites at collision energy of 20 eV, and proposed metabolite structures with exact masses of fragmentation. Metabolites in brackets did not show all the product ions. The exact locations of dihydrodiol groups in (F1–F3 and H1–H5) were not determined
Fig. 3Proposed metabolic pathway of AM1220 in HLM and fungus C. elegans incubation in comparison with postmortem human data from the literature [10]. HP and HU refer to human plasma and human urine samples, while asterisk indicates that the origin of the metabolite is not confirmed to be AM1220. The exact positions of hydroxy groups in F4/F5 and H9 and dihydrodiol groups in F1–F3 and H1–H5 were not determined
AM1220 metabolites after HLM and fungus C. elegans incubation
| ID | Metabolites | RT (min) | Elemental composition [M + H] | Exact mass | Accurate mass | Mass error (ppm) | Diagnostic product ions | Area | ||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| HLM | Fungi | HLM | Fungi | HLM | Fungi | HLM | Fungi | |||||
| H1 | Dihydrodiol formation + demethylation | 3.9 | C25H27N2O3 | 403.2016 | 403.2015 | 0.17 | 84, 98, 171, 189, 320 | 5.55E + 06 | ||||
| C20H18NO3 | 320.1281 | 320.1273 | − 2.50 | |||||||||
| C11H9O3 | 189.0546 | 189.0544 | − 1.06 | |||||||||
| C11H7O2 | 171.0441 | 171.0438 | − 1.75 | |||||||||
| C6H12 N | 98.0964 | 98.0964 | 0 | |||||||||
| C5H10 N | 84.0808 | 84.0803 | − 5.95 | |||||||||
| H2 | F1 | Dihydrodiol formation | 3.9 | C26H29N2O3 | 417.2173 | 417.2173 | 417.2168 | 0.16 | 1.15 | 98, 112, 171, 189, 320 | 7.84E + 05 | 2.54E + 07 |
| C20H18NO3 | 320.1281 | 320.1275 | 320.1276 | − 1.87 | − 1.56 | |||||||
| C11H9O3 | 189.0546 | 189.0542 | 189.0545 | − 2.12 | − 0.53 | |||||||
| C11H7O2 | 171.0441 | 171.0434 | 171.0439 | − 4.09 | − 1.17 | |||||||
| C7H14 N | 112.1121 | 112.1121 | 112.1122 | 0 | 0.89 | |||||||
| C6H12 N | 98.0964 | 98.0963 | 98.0966 | − 1.02 | 2.04 | |||||||
| H3 | F2 | Dihydrodiol formation | 4.1 | C26H29N2O3 | 417.2173 | 417.2168 | 417.2171 | − 1.15 | − 0.84 | 98, 112, 171, 189, 320 | 1.93E + 07 | 4.56E + 06 |
| C20H18NO3 | 320.1281 | 320.1276 | 320.1275 | − 1.56 | − 1.87 | |||||||
| C11H9O3 | 189.0546 | 189.0545 | 189.0549 | − 0.53 | 1.59 | |||||||
| C11H7O2 | 171.0441 | 171.0439 | 171.0439 | − 1.17 | − 1.17 | |||||||
| C7H14 N | 112.1121 | 112.1121 | 112.1122 | 0 | 0.89 | |||||||
| C6H12 N | 98.0964 | 98.0964 | 98.0965 | 0 | 1.02 | |||||||
| H4 | Dihydrodiol formation + demethylation | 4.9 | C25H27N2O3 | 403.2016 | 403.2012 | − 0.83 | 84, 98, 171, 385 | 9.72E + 05 | ||||
| C25H25N2O2 | 385.1911 | 385.1902 | − 2.34 | |||||||||
| C11H7O2 | 171.0441 | 171.0444 | 1.75 | |||||||||
| C6H12 N | 98.0964 | 98.0963 | − 1.02 | |||||||||
| C5H10 N | 84.0808 | 84.0809 | 1.19 | |||||||||
| H5 | F3 | Dihydrodiol formation | 5.1 | C26H29N2O3 | 417.2173 | 417.2168 | 417.2158 | − 1.06 | 1.08 | 98, 112, 171, 189, 320 | 4.41E + 06 | 4.99E + 06 |
| C20H18NO3 | 320.1281 | 320.1270 | 320.1271 | − 3.44 | − 3.12 | |||||||
| C11H9O3 | 189.0546 | 189.0540 | 189.0546 | − 3.17 | 0 | |||||||
| C11H7O2 | 171.0441 | 171.0436 | 171.0436 | − 2.92 | − 2.92 | |||||||
| C7H14 N | 112.1121 | 112.1121 | 112.1121 | 0 | 0 | |||||||
| C6H12 N | 98.0964 | 98.0964 | 98.0965 | 0 | 1.02 | |||||||
| F4 | Hydroxylation | 8.8 | C26H27N2O2 | 399.2067 | 399.2066 | − 0.34 | 98, 112, 171, 302 | 3.43E + 07 | ||||
| C20H16NO2 | 302.1176 | 302.1215 | 12.91 | |||||||||
| C11H7O2 | 171.0441 | 171.0423 | − 10.52 | |||||||||
| C7H14 N | 112.1121 | 112.1109 | − 10.70 | |||||||||
| C6H12 N | 98.0964 | 98.0990 | 26.50 | |||||||||
| F5 | Hydroxylation | 10.6 | C26H27N2O2 | 399.2067 | 399.2067 | − 0.83 | 98, 112, 171, 302 | 8.07E + 06 | ||||
| C20H16NO2 | 302.1176 | 302.1158 | − 5.96 | |||||||||
| C11H7O2 | 171.0441 | 171.0447 | 3.51 | |||||||||
| C7H14 N | 112.1121 | 112.1102 | − 16.95 | |||||||||
| C6H12 N | 98.0964 | 98.0980 | 16.31 | |||||||||
| H6 | Dihydroxylation | 10.9 | C26H27N2O3 | 415.2016 | 415.2010 | 0.72 | 127, 144, 155, 272, 286 | 3.65E + 06 | ||||
| C20H16NO | 286.1226 | 286.1233 | 2.45 | |||||||||
| C19H14NO | 272.1070 | 272.1041 | − 10.66 | |||||||||
| C11H7O | 155.0491 | 155.0495 | 2.58 | |||||||||
| C7H14NO2 | 144.1019 | 144.1031 | 8.33 | |||||||||
| C10H7 | 127.0542 | 127.0542 | 0 | |||||||||
| H7 | F6 | Demethylation | 14.0 | C25H25N2O | 369.1961 | 369.1962 | 369.1961 | 0.25 | 0.16 | 84, 98, 127, 155, 272 | 1.19E + 07 | 1.36E + 07 |
| C19H14NO | 272.1070 | 272.1066 | 272.1063 | − 1.47 | − 2.57 | |||||||
| C11H7O | 155.0491 | 155.0492 | 155.0488 | 0.64 | − 1.93 | |||||||
| C10H7 | 127.0542 | 127.0544 | 127.0533 | 1.57 | − 7.08 | |||||||
| C6H12 N | 98.0964 | 98.0964 | 98.0964 | 0 | 0 | |||||||
| C5H10 N | 84.0808 | 84.0807 | 84.0807 | − 1.19 | − 1.19 | |||||||
| H8 | F7 | Hydroxylation | 14.8 | C26H27N2O2 | 399.2067 | 399.2061 | 399.2067 | 0.27 | 0.35 | 127, 155, 286a | 6.23E + 06 | 1.14E + 07 |
| C20H16NO | 286.1226 | 286.1260 | 11.88 | |||||||||
| C11H7O | 155.0491 | 155.0488 | 155.0490 | − 1.93 | -0.64 | |||||||
| C10H7 | 127.0542 | 127.0544 | 127.0547 | 1.57 | 3.94 | |||||||
| Parent | AM1220 | 15.1 | C26H27N2O | 383.2118 | 383.2118 | 383.2116 | 0.62 | − 0.22 | 98, 112, 127, 155, 286 | 1.03E + 07 | 2.21E + 08 | |
| C20H16NO | 286.1226 | 286.1222 | 286.1222 | − 1.40 | − 1.40 | |||||||
| C11H7O | 155.0491 | 155.0487 | 155.0487 | − 2.58 | − 2.58 | |||||||
| C10H7 | 127.0542 | 127.0529 | 127.0538 | − 10.23 | − 3.15 | |||||||
| C7H14 N | 112.1121 | 112.1119 | 112.1121 | − 1.78 | 0 | |||||||
| C6H12 N | 98.0964 | 98.0965 | 98.0965 | 1.02 | 1.02 | |||||||
| H9 | Hydroxylation | 15.8 | C26H27N2O2 | 399.2067 | 399.2058 | − 2.17 | 98, 112, 127, 155 | 5.57E + 05 | ||||
| C11H7O | 155.0491 | 155.0487 | − 2.58 | |||||||||
| C10H7 | 127.0542 | 127.0536 | − 4.72 | |||||||||
| C7H14 N | 112.1121 | 112.1103 | − 16.06 | |||||||||
| C6H12 N | 98.0964 | 98.0945 | − 19.37 | |||||||||
RT retention time
aNot found in F7