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Diels-Alder and Stille Coupling Approach for the Short Protecting-Group-Free Synthesis of Mycophenolic Acid, Its Phenylsulfenyl and Phenylselenyl Analogues, and Reactive Oxygen Species (ROS) Probing Capacity in Water.

Mahesh B HalleTesla YudhistiraWoo-Hyun LeeSandip V MulayDavid G Churchill
Published in: Organic letters (2018)
A short, protecting-group-free synthesis is achieved. The synthesis is step-efficient and general. A Diels-Alder and Stille cross-coupling approach includes key transformations, allowing for a competitive synthesis which involves a rare halophenol Stille cross-coupling study. The phenylselenyl and phenylsulfenyl analogues were prepared as novel compounds in good overall yield. The applicability of one of the intermediates as a potential probe for reactive oxygen species (ROS) in water is investigated.
Keyphrases
  • reactive oxygen species
  • cell death
  • dna damage
  • molecular docking
  • oxidative stress
  • molecular dynamics simulations
  • high resolution
  • mass spectrometry