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Molecular Docking Assessment of Cathinones as 5-HT 2A R Ligands: Developing of Predictive Structure-Based Bioactive Conformations and Three-Dimensional Structure-Activity Relationships Models for Future Recognition of Abuse Drugs.

Nevena TomaševićMaja VujovićEmilija KostićVenkatesan RagavendranBiljana B ArsićSanja Lj MatićMijat BožovićRossella FioravantiEleonora ProiaRino RagnoMilan Mladenović
Published in: Molecules (Basel, Switzerland) (2023)
Commercially available cathinones are drugs of long-term abuse drugs whose pharmacology is fairly well understood. While their psychedelic effects are associated with 5-HT 2A R, the enclosed study summarizes efforts to shed light on the pharmacodynamic profiles, not yet known at the receptor level, using molecular docking and three-dimensional quantitative structure-activity relationship (3-D QSAR) studies. The bioactive conformations of cathinones were modeled by AutoDock Vina and were used to build structure-based (SB) 3-D QSAR models using the Open3DQSAR engine. Graphical inspection of the results led to the depiction of a 3-D structure analysis-activity relationship (SAR) scheme that could be used as a guideline for molecular determinants by which any untested cathinone molecule can be predicted as a potential 5-HT 2A R binder prior to experimental evaluation. The obtained models, which showed a good agreement with the chemical properties of co-crystallized 5-HT 2A R ligands, proved to be valuable for future virtual screening campaigns to recognize unused cathinones and similar compounds, such as 5-HT 2A R ligands, minimizing both time and financial resources for the characterization of their psychedelic effects.
Keyphrases
  • molecular docking
  • molecular dynamics simulations
  • structure activity relationship
  • healthcare
  • drug induced
  • single molecule
  • data analysis