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Synthesis of Cyclobutane-Fused Tetracyclic Scaffolds via Visible-Light Photocatalysis for Building Molecular Complexity.
Oderinde, Martins S; Mao, Edna; Ramirez, Antonio; Pawluczyk, Joseph; Jorge, Christine; Cornelius, Lyndon A M; Kempson, James; Vetrichelvan, Muthalagu; Pitchai, Manivel; Gupta, Anuradha; Gupta, Arun Kumar; Meanwell, Nicholas A; Mathur, Arvind; Dhar, T G Murali.
Afiliação
  • Oderinde MS; Department of Discovery Synthesis , Bristol-Myers Squibb Research & Development , Route 206 & Province Line Road , Princeton , New Jersey 08543 . United States.
  • Mao E; Department of Discovery Synthesis , Bristol-Myers Squibb Research & Development , Route 206 & Province Line Road , Princeton , New Jersey 08543 . United States.
  • Ramirez A; Chemical & Synthetic Development , Bristol-Myers Squibb , 1 Squibb Drive , New Brunswick , New Jersey 08903 , United States.
  • Pawluczyk J; Department of Discovery Synthesis , Bristol-Myers Squibb Research & Development , Route 206 & Province Line Road , Princeton , New Jersey 08543 . United States.
  • Jorge C; Department of Pharmaceutical Candidate Optimization , Bristol-Myers Squibb Research & Development , Route 206 & Province Line Road , Princeton , New Jersey 08543 . United States.
  • Cornelius LAM; Department of Discovery Synthesis , Bristol-Myers Squibb Research & Development , Route 206 & Province Line Road , Princeton , New Jersey 08543 . United States.
  • Kempson J; Department of Discovery Synthesis , Bristol-Myers Squibb Research & Development , Route 206 & Province Line Road , Princeton , New Jersey 08543 . United States.
  • Vetrichelvan M; Department of Discovery Synthesis , Biocon Bristol-Myers Squibb Research Centre , Plot 2 & 3, Bommasandra Industrial Estate - Phase-IV, Bommasandra-Jigani Link Road , Bengaluru , Karnataka 560099 , India.
  • Pitchai M; Department of Discovery Synthesis , Biocon Bristol-Myers Squibb Research Centre , Plot 2 & 3, Bommasandra Industrial Estate - Phase-IV, Bommasandra-Jigani Link Road , Bengaluru , Karnataka 560099 , India.
  • Gupta A; Department of Discovery Synthesis , Biocon Bristol-Myers Squibb Research Centre , Plot 2 & 3, Bommasandra Industrial Estate - Phase-IV, Bommasandra-Jigani Link Road , Bengaluru , Karnataka 560099 , India.
  • Gupta AK; Department of Discovery Synthesis , Biocon Bristol-Myers Squibb Research Centre , Plot 2 & 3, Bommasandra Industrial Estate - Phase-IV, Bommasandra-Jigani Link Road , Bengaluru , Karnataka 560099 , India.
  • Meanwell NA; Department of Discovery Synthesis , Bristol-Myers Squibb Research & Development , Route 206 & Province Line Road , Princeton , New Jersey 08543 . United States.
  • Mathur A; Department of Discovery Synthesis , Bristol-Myers Squibb Research & Development , Route 206 & Province Line Road , Princeton , New Jersey 08543 . United States.
  • Dhar TGM; Department of Discovery Synthesis , Bristol-Myers Squibb Research & Development , Route 206 & Province Line Road , Princeton , New Jersey 08543 . United States.
J Am Chem Soc ; 142(6): 3094-3103, 2020 02 12.
Article em En | MEDLINE | ID: mdl-31927959
We describe the synthesis through visible-light photocatalysis of novel functionalized tetracyclic scaffolds that incorporate a fused azabicyclo[3.2.0]heptan-2-one motif, which are structurally interesting cores with potential in natural product synthesis and drug discovery. The synthetic approach involves an intramolecular [2 + 2] cycloaddition with concomitant dearomatization of the heterocycle via an energy transfer process promoted by an iridium-based photosensitizer, to build a complex molecular architecture with at least three stereogenic centers from relatively simple, achiral precursors. These fused azabicyclo[3.2.0]heptan-2-one-based tetracycles were obtained in high yield (generally >99%) and with excellent diastereoselectivity (>99:1). The late-stage derivatization of a bromine-substituted, tetracyclic indoline derivative with alkyl groups, employing a mild Negishi C-C bond forming protocol as a means of increasing structural diversity, provides additional modularity that will enable the delivery of valuable building blocks for medicinal chemistry. Density functional theory calculations were used to compute the T1-S0 free energy gap of the olefin-tethered precursors and also to predict their reactivities based on triplet state energy transfer and transition state energy feasibility.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article