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Comprehensive evaluation of the pharmacological and toxicological effects of γ-valerolactone as compared to γ-hydroxybutyric acid: Insights from in vivo and in silico models. | LitMetric

AI Article Synopsis

  • Γ-valerolactone (GVL), also sold as "Tranquilli-G" and compared to Valium, is a legal alternative to GHB but has limited research on its effects, with only one reported case of drug-facilitated sexual assault linked to it.
  • A study conducted on male mice found that GVL, when administered in doses ranging from 100-3000 mg/kg, significantly impaired neurological and motor functions, particularly at higher doses, indicating potential risks of cardiorespiratory depression.
  • The research suggests that GVL is 4-5 times less potent than GHB and highlights the need for its inclusion in forensic toxicology screenings due to its toxic similarities to GHB

Article Abstract

Γ-valerolactone (GVL), marketed online as "Tranquilli-G" and "excellent Valium", is used as a legal substitute for γ-hydroxybutyric acid (GHB); however, until now, GVL has only been connected to one Drug-Facilitated Sexual Assault (DFSA) case. Moreover, the pharmaco-toxicological effects of GVL are poorly studied. The aim of this study was to investigate the 1) in vivo effects of gavage administration of GVL (100-3000 mg/kg) on neurological (myoclonia, convulsions), sensorimotor (visual, acoustic, and overall tactile) responses, righting reflex, thermoregulation, motor activity (bar, drag, and accelerod test) and cardiorespiratory changes (heart rate, breath rate, oxygen saturation, and pulse distension) in CD-1 male mice and the 2) in silico ADMET profile of GVL in comparison to GHB and the open active form γ-hydroxyvaleric acid (GHV). The present study demonstrates that GVL inhibits, in a dose-dependent manner, sensorimotor and motor responses and induces cardiorespiratory depression (at a dose of 3000 mg/kg) in mice. The determination of the ED in sensorimotor and motor responses revealed that GVL is about 4-5 times less potent than GHB. In silico prediction of ADMET profiles revealed toxicokinetic similarities between GHB and GHV, and differences with GVL. These results suggest that GVL could be used as a substitute for GHB and should be added to forensic toxicology screenings.

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Source
http://dx.doi.org/10.1016/j.drugalcdep.2023.110951DOI Listing

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