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Towards novel tacrine analogues: Pd(dppf)Cl 2 ·CH 2 Cl 2 catalyzed improved synthesis, in silico docking and hepatotoxicity studies.

Aravinda BabuMuthipeedika Nibin JoyK SunilAyyiliath Meleveetil SajithSougata SantraGrigory V ZyryanovOlga A KonovalovaIlya I ButorinKeesaram Muniraju
Published in: RSC advances (2022)
A plethora of 6-(hetero)aryl C-C and C-N bonded tacrine analogues has been made accessible by employing palladium mediated (Suzuki-Miyaura, Heck, Sonogashira, Stille and Buchwald) cross-coupling reactions, starting from either halogenated or borylated residues. The successful use of Pd(dppf)Cl 2 ·CH 2 Cl 2 as a common catalytic system in realizing all these otherwise challenging transformations is the highlight of our optimized protocols. The analogues thus synthesized allow the available chemical space around the C-6 of this biologically relevant tacrine core to be explored. The in silico docking studies of the synthesized compounds were carried out against the acetylcholinesterase (AChE) enzyme. The hepatotoxicity studies of these compounds were done against complexes of CYP1A2 and CYP3A4 proteins with known inhibitors like 7,8-benzoflavone and ketoconazole, respectively.
Keyphrases
  • molecular docking
  • molecular dynamics simulations
  • room temperature
  • case control
  • molecular dynamics
  • protein protein
  • drug induced
  • structure activity relationship
  • small molecule
  • gold nanoparticles