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Hynek Danda

10 papers in the library · 129 citations · publishing 2017-2026

Papers

Pharmacokinetic, Ambulatory, and Hyperthermic Effects of 3,4-Methylenedioxy-N-Methylcathinone (Methylone) in Rats

Frontiers in Psychiatry November 17, 2017 Kristýna Štefková, Monika Židková, Rachel R. Horsley et al. 82 citations

Methylone, a synthetic cathinone analog of ecstasy, is marketed as relatively safe but has caused fatalities from hyperthermia, serotonin syndrome, and multi-organ failure. In adolescent male Wistar rats, methylone (5, 10, 20 mg/kg subcutaneously) dose-dependently increased locomotion, reduced time in the open field center at 20 mg/kg, and induced stereotyped circling; its metabolite nor-methylone showed similar behavioral potency. Both drugs peaked in serum and brain at 30 minutes, with a serum-to-brain ratio of 1:7.97. Methylone also caused hyperthermia, more pronounced in group-housed rats, and 40 mg/kg was lethal to some animals. The findings suggest methylone acts like MDMA or amphetamine but with higher toxicity, posing risks of serotonin syndrome, especially in crowded settings.

Pharmacokinetic, pharmacodynamic, and behavioural studies of deschloroketamine in Wistar rats.

British journal of pharmacology January 1, 2022 Kristýna Štefková-mazochová, Hynek Danda, Wim Dehaen et al. 13 citations

Deschloroketamine (DCK), a structural analogue of ketamine sold as a recreational drug, was tested in Wistar rats to examine its pharmacokinetics, acute effects, and addictive potential. DCK rapidly entered the brain, with peak levels at 30 minutes and sustained high levels for 2 hours. It blocks NMDA receptors similarly to ketamine, with the S-enantiomer more potent. DCK stimulated locomotion, induced place preference (a sign of reward), and strongly disrupted prepulse inhibition (PPI). Locomotor stimulation faded faster than PPI disruption. S-DCK had stronger stimulatory effects than R-DCK, but both equally disrupted PPI. DCK's behavioral and addictive profiles resemble ketamine's, with a slightly slower clearance, matching its reported longer duration. These findings clarify risks of illicit DCK use.

Naphyrone (naphthylpyrovalerone): Pharmacokinetics, behavioural effects and thermoregulation in Wistar rats

Addiction Biology May 7, 2020 Nikola Pinterová, Rachel R. Horsley, Hynek Danda et al. 13 citations

Naphyrone, a synthetic cathinone similar to pyrovalerone, potently blocks monoamine transporters and produces stimulant and entactogen-like effects. In male Wistar rats, a single subcutaneous dose of 1 mg/kg reached peak concentrations in blood and tissues within 30 minutes, with prolonged elevation in the brain relative to serum. A higher dose of 20 mg/kg caused modest increases in body temperature and lasting hyperactivity in an open field test, while transiently improving sensorimotor gating as measured by prepulse inhibition. No acute toxicity was observed. The drug crosses the blood-brain barrier rapidly and is eliminated slowly, with effects matching its pharmacokinetics. Harm-reduction guidance should follow that for other stimulants and cathinones.

Pharmacokinetics, systemic toxicity, thermoregulation and acute behavioural effects of 25CN‐NBOMe

Addiction Biology August 4, 2022 Klára Šíchová, Kateřina Syrová, Edita Kofroňová et al. 8 citations

25CN-NBOMe, a substance related to LSD, readily crosses the blood-brain barrier in rats. After a 5 mg/kg dose, drug concentration peaked in blood and brain at 1 hour, with half-lives of 1.88 and 2.28 hours. The drug is classified as toxicity category 3, with a lethal dose of 300 mg/kg and an estimated LD50 of 200 mg/kg. Histological findings suggest acute cardiovascular arrest from malignant arrhythmia at lethal doses. A 5 mg/kg dose reduced body temperature in individually housed rats. Lower doses (0.2 and 1 mg/kg) reduced locomotor activity and increased anxiety, while 5 mg/kg also impaired sensorimotor gating. The drug's behavioral effects are comparable to other NBOMes.

Mescaline-induced behavioral alterations are mediated by 5-HT2A and 5-HT2C receptors in rats.

Pharmacology, biochemistry, and behavior December 1, 2024 Lucie Olejníková-Ladislavová, Michaela Fujáková-Lipski, Klára Šíchová et al. 5 citations

Mescaline, a classical psychedelic, primarily acts on serotonin 5-HT2A/C receptors but also binds to 5-HT1A and 5-HT2B receptors. In adult male rats, the highest dose (100 mg/kg) caused hyperlocomotion, which was reversed by almost all antagonists tested. Sensorimotor gating deficits, measured as prepulse inhibition of acoustic startle, were selectively normalized by a 5-HT2A antagonist, while a 5-HT2C antagonist partially reversed deficits from lower doses. These findings indicate that mescaline's behavioral effects are mainly mediated by the 5-HT2A receptor subtype, with a lesser role for 5-HT2C receptors, and limited involvement of other subtypes.

Acute pharmacological profile of 2C-B-Fly-NBOMe in male Wistar rats-pharmacokinetics, effects on behaviour and thermoregulation.

Frontiers in pharmacology January 1, 2023 Kateřina Syrová, Klára Šíchová, Hynek Danda et al. 4 citations

2C-B-Fly-NBOMe, a new psychoactive substance related to the psychedelic entactogen 2C-B, was studied in adult male Wistar rats. After injection, peak drug levels in blood serum occurred at 30 minutes (28 ng/ml) and in brain tissue at 60 minutes (171 ng/g), with the compound still detectable in the brain after 8 hours. The drug dose-dependently reduced locomotor activity and strongly disrupted the acoustic startle response, with a weaker effect on prepulse inhibition. It did not cause significant changes in body temperature. The overall profile resembles that of 2C-B and other NBOMe substances, suggesting slow brain penetration and inhibitory effects on motor performance and sensorimotor gating.

The acute effects of methoxphenidine on behaviour and pharmacokinetics profile in animal model.

Progress in neuro-psychopharmacology & biological psychiatry March 20, 2025 Kristýna Štefková-mazochová, Hynek Danda, Vladimír Mazoch et al. 3 citations

Methoxphenidine (MXP), a new psychoactive substance, rapidly crosses the blood-brain barrier in Wistar rats, reaching peak concentrations in serum and brain 30 minutes after injection, with a half-life of 2.15 hours. Low to moderate doses (10-20 mg/kg) increase locomotor activity in an open field test, while a higher dose (40 mg/kg) decreases it. All doses disrupt sensorimotor gating (prepulse inhibition), an effect linked to psychosis. MXP shows moderate acute toxicity with an estimated LD50 of 500 mg/kg subcutaneously. The drug exhibits a profile similar to dissociative anesthetics, producing stimulant and anxiogenic effects at lower doses and sedative effects at higher doses, indicating risks of serious adverse health outcomes from recreational use.

Behavioural and pharmacological evaluation of the psilocybin analogue baeocystin in Wistar rats.

Progress in neuro-psychopharmacology & biological psychiatry July 5, 2025 Hynek Danda, Kristýna Mazochová, Klára Šíchová et al. 1 citation

Baeocystin, a compound found in psychoactive mushrooms, has minimal to no behavioral effects in rats, likely because it poorly crosses the blood-brain barrier. After subcutaneous doses of 1.25 or 5 mg/kg, baeocystin and its metabolite norpsilocin showed very limited brain penetration. Consistent with this, the compound had no significant effects on locomotor activity, exploratory behavior, anxiety-like responses, or sensorimotor gating in Wistar rats. The findings suggest baeocystin's negligible neurobiological and psychedelic activity is due to its poor permeability across the blood-brain barrier.

Chronic psilocin microdosing produces limited behavioral effects and does not enhance neurogenesis in rats.

Pharmacology, biochemistry, and behavior June 30, 2026 Lucie Ladislavová, Viera Kútna, Kristýna Mazochová et al.

Chronic microdosing of psilocin (0.05 or 0.075 mg/kg) in adult male Wistar rats over five weeks did not alter locomotor activity, depressive-like behavior, sociability, or novelty seeking, and did not increase cell proliferation in the dentate gyrus of the hippocampus. A small anxiogenic effect was detected in the Elevated Plus Maze. The findings suggest that, under this dosing schedule, psilocin microdosing produces limited behavioral effects and does not enhance hippocampal progenitor proliferation.

Behavioral pharmacology of mescaline - the role of serotonin 5-HT2A, 5-HT2B, 5-HT2C and 5-HT1A receptors

bioRxiv Preprint Server August 28, 2024 Lucie Olejníková-Ladislavová, Michaela Fujáková-Lipski, Klára Šíchová et al. preprint

Mescaline, a classical psychedelic with a phenylethylamine structure, primarily acts on serotonin 5-HT2A/C receptors but also binds to 5-HT1A and 5-HT2B receptors. Although it was the first psychedelic ever isolated and synthesized, the precise role of these different serotonin receptor subtypes in its behavioral pharmacology remains not fully understood.