期刊
CHEMISTRY-A EUROPEAN JOURNAL
卷 28, 期 22, 页码 -出版社
WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.202104278
关键词
C-H activation; C-H functionalization; heterocycles; natural products; total synthesis
资金
- Rutgers University
- NSF [CAREER CHE-1650766]
- NIH [R35GM133326]
Total synthesis is the perfect combination of art and science, and C-H functionalization provides a powerful platform for rapid synthesis of complex natural products and changes the design of retrosynthetic strategies, leading to natural product scaffolds with enhanced biological activities.
Total synthesis is considered by many as the finest combination of art and science. During the last decades, several concepts were proposed for achieving the perfect vision of total synthesis, such as atom economy, step economy, or redox economy. In this context, C-H functionalization represents the most powerful platform that has emerged in the last years, empowering rapid synthesis of complex natural products and enabling diversification of bioactive scaffolds based on natural product architectures. In this review, we present an overview of the recent strategies towards the total synthesis of heterocyclic natural products enabled by C-H functionalization. Heterocycles represent the most common motifs in drug discovery and marketed drugs. The implementation of C-H functionalization of heterocycles enables novel tactics in the construction of core architectures, but also changes the logic design of retrosynthetic strategies and permits access to natural product scaffolds with novel and enhanced biological activities.
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