• Title of article

    Organotin (IV) based complexes as promiscuous antibacterials: Synthesis, in vitro, in silico pharmacokinetic and docking studies

  • Author/Authors

    Rehman، نويسنده , , Wajid and Haq، نويسنده , , Sirajul and Muhammad، نويسنده , , Bakhtiar and Hassan، نويسنده , , Syed Fahad and Badshah، نويسنده , , Amin and Waseem، نويسنده , , Syed Muhammad Akmal Rahim، نويسنده , , Fazal and Abid، نويسنده , , Obaid-ur-Rahman and Ansari، نويسنده , , Farzana Latif and Rashid، نويسنده , , Umer، نويسنده ,

  • Issue Information
    دوفصلنامه با شماره پیاپی سال 2014
  • Pages
    10
  • From page
    91
  • To page
    100
  • Abstract
    Five novel triorganotin (IV) compounds have been synthesized and characterized. The tin atom is penta-coordinated to assume trigonal-bipyramidal geometry. Using in silico derived parameters; the objective of our study is to design and synthesize promiscuous antibacterials potent enough to combat resistance. Among various synthesized organotin (IV) complexes, compound 5 was found as potent antibacterial agent against various bacterial strains. Further lead optimization of drug-like properties was evaluated through in silico predictions. Data mining and computational analysis were utilized to derive compound promiscuity phenomenon to avoid drug attrition rate in designing antibacterials. Xanthine oxidase and human glucose- 6-phosphatase were found as only true positive off-target hits by ChEMBL database and others utilizing similarity ensemble approach. Propensity towards α-3 receptor, human macrophage migration factor and thiazolidinedione were found as false positive off targets with E-value => 10−4 for compound 1, 3 and 4. Further, displaying positive drug–drug interaction of compound 1 as uricosuric was validated by all databases and docked protein targets with sequence similarity and compositional matrix alignment via BLAST software. Promiscuity of the compound 5 was further confirmed by in silico binding to different antibacterial targets.
  • Keywords
    Metallo-pharmaceutical , Antimicrobial resistance , Drug promiscuity , Antibacterial activity , ADMET prediction
  • Journal title
    Journal of Organometallic Chemistry
  • Serial Year
    2014
  • Journal title
    Journal of Organometallic Chemistry
  • Record number

    1458877