Drug Testing and Analysis
December 3, 2024
Simon D. Brandt, Pierce V. Kavanagh, Sarah Gare et al.
5 citations
1-(2-furoyl)-lysergic acid diethylamide (1F-LSD, SYN-L-005) is a novel analog of the recently detected recreational drug 1-(thiophene-2-carbonyl)-LSD (1T-LSD). Both substances are N1-acylated LSD derivatives that bind to the 5-HT2A receptor, the primary site of action for psychedelic drugs. In C57BL/6J mice, 1F-LSD and 1T-LSD induced the head-twitch response, a 5-HT2A-mediated behavior, and were hydrolyzed to LSD after administration. These findings indicate that both compounds exhibit LSD-like properties and likely act as prodrugs for LSD, releasing the active drug in the body.
Drug Testing and Analysis
February 1, 2024
Simon D. Brandt, Pierce V. Kavanagh, Folker Westphal et al.
5 citations
N-ethyl-N-isopropyllysergamide (EIPLA), an isomer of the psychedelic lysergamide ETH-LAD, shows LSD-like properties in preclinical tests. Mass spectrometry, chromatography, and NMR spectroscopy distinguished EIPLA from ETH-LAD by their structural features. Blotter extracts contained 96.9 ± 0.5 μg and 85.8 ± 2.8 μg of EIPLA base. In mice, EIPLA induced head-twitch responses (ED50 = 234.6 nmol/kg), about half the potency of LSD (ED50 = 132.8 nmol/kg), consistent with serotonergic psychedelic effects. Analytical data are provided to aid forensic and clinical identification.
Drug Testing and Analysis
August 24, 2020
Simon D. Brandt, Pierce V. Kavanagh, Folker Westphal et al.
5 citations
N-ethyl-N-cyclopropyl lysergamide (ECPLA) produces LSD-like behavioral effects in mice and may act as a hallucinogen in humans. ECPLA is an isomer of the recreational drug LSZ. Several analytical methods—mass spectrometry, gas and liquid chromatography, nuclear magnetic resonance spectroscopy, and GC condensed-phase infrared spectroscopy—can differentiate ECPLA from LSZ. Key mass spectral differences include ion abundances at m/z 196, 207/208, 98, and 41. Electrospray ionization spectra show lysergamide-related ions, and LSZ (but not ECPLA) produces product ions at m/z 267 and 98 under the conditions used. These data support forensic and clinical detection of ECPLA.
Drug Testing and Analysis
April 1, 2025
Simon D. Brandt, Pierce V. Kavanagh, Sarah Gare et al.
4 citations
A newly developed LSD derivative, 1-hexanoyl-LSD (1H-LSD), was characterized analytically and tested in mice using the head-twitch response assay, a behavioral proxy for psychedelic activity. 1H-LSD induced head-twitch responses with a median effective dose of 192.4 μg/kg, making it roughly as potent as the known analog 1A-LSD (ALD-52) under similar conditions. Like other N1-acylated LSD derivatives, 1H-LSD is expected to be hydrolyzed to LSD in the body, acting as a prodrug. It is not yet known whether this compound has appeared on the recreational drug market or in research chemical supplies.
Toxicology
March 1, 2026
Lea Wagmann, Simon D. Brandt, Pierce V. Kavanagh et al.
Three recently identified psychedelics and entactogens—3-APBT, 5-APBT, and 6-APBT—activate serotonin 2 receptor subtypes and cause head-twitch responses in mice. Their toxicokinetics, metabolism, and monoamine oxidase (MAO) inhibition were characterized using liquid chromatography-high-resolution tandem mass spectrometry. Metabolites were identified in urine from male Wistar rats over 24 hours after oral administration (2 mg/kg) and in incubations with pooled human liver S9 fraction (25 µM). Hydroxylation, primarily catalyzed by CYP1A2, CYP2D6, CYP3A4, and CYP3A5, was the main phase I biotransformation; phase II reactions included N-acetylation, glucuronidation, and sulfation. All three isomers strongly inhibited MAO-A (IC50: 5-APBT 0.4 µM, 6-APBT 0.6 µM, 3-APBT 4 µM) but only weakly inhibited MAO-B (IC50 23-49 µM). Clinically relevant MAO-A inhibition and associated interaction risks cannot be excluded.
bioRxiv : the preprint server for biology
April 11, 2024
Ana Sofia Alberto-Silva, Selina Hemmer, Hailey A. Bock et al.
preprint
Three new chemical variants of MDMA—ODMA, TDMA, and SeDMA—show similar activity at serotonin and dopamine transporters but reduced activity at serotonin 5-HT2A/2B/2C receptors, which may lower the risk of off-target side effects. They also differ from MDMA in how they are broken down by the liver, with fewer metabolic pathways and no phase II metabolites. The analogs interact more weakly with certain organic cation transporters. These findings suggest the new compounds could be promising therapeutic alternatives to MDMA for conditions like PTSD, though further research is needed to confirm whether they pose lower risks.
Toxicology Letters
April 15, 2017
Lea Wagmann, Simon D. Brandt, Pierce V. Kavanagh et al.
Thirteen analogs of the psychoactive substance alpha-methyltryptamine (AMT) were tested for their ability to inhibit monoamine oxidase (MAO), an enzyme that breaks down neurotransmitters. All analogs inhibited MAO-A, with IC50 values ranging from 0.049 to 166 μM, and four also inhibited MAO-B (IC50 82–376 μM). 7-Me-AMT was the most potent MAO-A inhibitor, comparable to the known inhibitors harmine and harmaline, and acted competitively. Most analogs also inhibited MAO in human liver S9 fractions. These findings suggest that MAO inhibition by these compounds could contribute to dangerous serotonin- and adrenaline-related effects, especially when combined with other drugs that block monoamine reuptake.