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Similarity-Based Virtual Screening to Find Antituberculosis Agents Based on Novel Scaffolds: Design, Syntheses and Pharmacological Assays.

Ángela García-GarcíaJesus Vicente de Julián-OrtizJorge GalvezDavid FontCarles AyatsMaría Del Remedio Guna SerranoCarlos Muñoz-ColladoRafael BorrásJosé Manuel Villalgordo
Published in: International journal of molecular sciences (2022)
A method to identify molecular scaffolds potentially active against the Mycobacterium tuberculosis complex (MTBC) is developed. A set of structurally heterogeneous agents against MTBC was used to obtain a mathematical model based on topological descriptors. This model was statistically validated through a Leave-n-Out test. It successfully discriminated between active or inactive compounds over 86% in database sets. It was also useful to select new potential antituberculosis compounds in external databases. The selection of new substituted pyrimidines, pyrimidones and triazolo[1,5- a ]pyrimidines was particularly interesting because these structures could provide new scaffolds in this field. The seven selected candidates were synthesized and six of them showed activity in vitro.
Keyphrases
  • tissue engineering
  • mycobacterium tuberculosis
  • high throughput
  • molecular docking
  • emergency department
  • big data
  • adverse drug
  • risk assessment
  • climate change
  • mass spectrometry