4.8 Article

Radical aryl migration enables diversity-oriented synthesis of structurally diverse medium/macroor bridged-rings

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NATURE COMMUNICATIONS
卷 7, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms13852

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资金

  1. National Natural Science Foundation of China [215722096, 21302088]
  2. National Key Basic Research Program of China (973 Program) [2013CB834802]
  3. Shenzhen overseas high-level talents innovation plan of technical innovation project [KQCX20150331101823702]
  4. Shenzhen special funds for the development of biomedicine, Internet, new energy and new material industries [JCYJ20150430160022517]
  5. South University of Science and Technology of China

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Medium-sized and medium-bridged rings are attractive structural motifs in natural products and therapeutic agents. Due to the unfavourable entropic and/or enthalpic factors with these ring systems, their efficient construction remains a formidable challenge. To address this problem, we herein disclose a radical-based approach for diversity-oriented synthesis of various benzannulated carbon-and heteroatom-containing 8-11(14)-membered ketone libraries. This strategy involves 1,4-or 1,5-aryl migration triggered by radical azidation, trifluoromethylation, phosphonylation, sulfonylation, or perfluoroalkylation of unactivated alkenes followed by intramolecular ring expansion. Demonstration of this method as a highly flexible tool for the construction of 37 synthetically challenging medium-sized and macrocyclic ring scaffolds including bridged rings with diverse functionalities and skeletons is highlighted. Some of these products showed potent inhibitory activity against the cancer cell or derivative of human embryonic kidney line in preliminary biological studies. The mechanism of this novel strategy is investigated by control experiments and DFTcalculations.

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