1392307-55-9Relevant academic research and scientific papers
Total synthesis and biological evaluation of (-)-atrop-abyssomicin C
Bihelovic, Filip,Karadzic, Ivanka,Matovic, Radomir,Saicic, Radomir N.
, p. 5413 - 5424 (2013/09/02)
Enantioselective synthesis of a marine antibiotic (-)-atrop-abyssomicin C was accomplished in 21 steps, in 1.8% overall yield (4%, based on the recovered starting material). The key steps of the synthesis are the formation of the functionalized cyclohexane core by an organocatalyzed Tsuji-Trost reaction, the formation of a tricyclic spirotetronate unit by a gold-catalyzed reaction sequence and the highly efficient eleven-membered ring closure by a Nozaki-Hiyama-Kishi reaction. Biological tests showed all abyssomicin derivatives to possess strong antibacterial activity against methicillin resistant S. aureus strains; however, they also proved to be cytotoxic, both to malignant and to normal somatic cells. The Royal Society of Chemistry.
Total synthesis of (-)-atrop-abyssomicin C
Bihelovic, Filip,Saicic, Radomir N.
, p. 5687 - 5691 (2012/07/01)
Rolling in the deep: An enantioselective synthesis of a marine antibiotic (-)-atrop-abyssomicin C (see scheme) is described. The key steps of the synthetic sequence are the application of dual catalysis in the formation of the cyclohexane core, the gold-catalyzed formation of a tricyclic spirotetronate unit, and a highly efficient eleven-membered ring closure by a Nozaki-Hiyama-Kishi reaction. Copyright
Organocatalyzed Tsuji-Trost reaction: a new method for the closure of five- and six-membered rings
Vulovic, Bojan,Bihelovic, Filip,Matovic, Radomir,Saicic, Radomir N.
supporting information; experimental part, p. 10485 - 10494 (2010/02/28)
A combination of organotransition metal catalysis and organocatalysis allows for Tsuji-Trost 5-exo- and 6-exo-cyclizations of aldehydes. This transformation can also be accomplished as a catalytic asymmetric reaction, which affords vinylcyclopentane deriv
