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Microwave-Assisted Cu-Catalyzed Diaryletherification for Facile Synthesis of Bioactive Prenylated Diresorcinols. | LitMetric

Microwave-Assisted Cu-Catalyzed Diaryletherification for Facile Synthesis of Bioactive Prenylated Diresorcinols.

Molecules

College of Pharmacy, Research Institute of Pharmaceutical Sciences, Kyungpook National University, Daegu 41566, Republic of Korea.

Published: December 2022

AI Article Synopsis

  • Prenylated diresorcinols have diverse bioactivities, such as being cytotoxic, antibacterial, and antifungal, making their efficient synthesis important for drug development.
  • This study investigates microwave-assisted copper catalysis as a green and cost-effective method for creating these diresorcinols, achieving faster reactions and better yields.
  • The research highlights successful regioselective prenylation of phenols, with potential applications for synthesizing more complex bioactive compounds, enhancing the field of natural product chemistry.

Article Abstract

Prenylated diresorcinols exhibit various bioactivities, including cytotoxic, antibacterial, and antifungal activities. Therefore, establishing facile and efficient synthetic routes for prenylated diresorcinols facilitates their development as chemical probes or drugs with a novel mode of action. In this study, microwave-assisted copper catalysis was explored as a cost-effective and environmentally friendly method for the cross-coupling of sterically hindered -prenylated phenols and aryl halides to produce bioactive prenylated diresorcinols, diorcinol I and leotiomycene B. Notable advantages of microwave-assisted catalysis include not only operational simplicity and rapid heating but also shorter reaction times and higher chemical yields. In addition, highly regioselective prenylation of phenol was achieved for the preparation of -prenyl phenol via directed lithiation and subsequent alkylation. This study provides valuable insights for the preparation of other bioactive prenylated diresorcinols. Furthermore, considering that prenylated benzenoids are biosynthetic precursors of various polycyclic natural products, this synthetic route could be expanded to more complex bioactive compounds possessing diaryl ethers.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9821922PMC
http://dx.doi.org/10.3390/molecules28010062DOI Listing

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