Abstract
Daphniphyllum alkaloids are a growing group of secondary metabolites of great structural diversity, with complex polycyclic skeletons from Daphniphyllum plants. A large number of new Daphniphyllum alkaloids with novel frameworks have been isolated from Daphniphyllum species in the past decade. These unusual structural characteristics will attract the attention of scientists in the fields of organic synthesis, bioactivity evaluation and biosynthetic studies. This review lists all the Daphniphyllum alkaloids as well as their biosynthesis, bioactivity and synthesis reported by the end of first half of 2008.
Keywords: Daphniphyllum, alkaloids, secondary metabolites, polycyclic skeletons, organic synthesis, biosynthesis, bioactivity
Current Organic Chemistry
Title: The Daphniphyllum Alkaloids
Volume: 13 Issue: 6
Author(s): Mei Dong, Man-Li Zhang, Qing-Wen Shi, Yu-Cheng Gu and Hiromasa Kiyota
Affiliation:
Keywords: Daphniphyllum, alkaloids, secondary metabolites, polycyclic skeletons, organic synthesis, biosynthesis, bioactivity
Abstract: Daphniphyllum alkaloids are a growing group of secondary metabolites of great structural diversity, with complex polycyclic skeletons from Daphniphyllum plants. A large number of new Daphniphyllum alkaloids with novel frameworks have been isolated from Daphniphyllum species in the past decade. These unusual structural characteristics will attract the attention of scientists in the fields of organic synthesis, bioactivity evaluation and biosynthetic studies. This review lists all the Daphniphyllum alkaloids as well as their biosynthesis, bioactivity and synthesis reported by the end of first half of 2008.
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Cite this article as:
Dong Mei, Zhang Man-Li, Shi Qing-Wen, Gu Yu-Cheng and Kiyota Hiromasa, The Daphniphyllum Alkaloids, Current Organic Chemistry 2009; 13 (6) . https://dx.doi.org/10.2174/138527209787847345
DOI https://dx.doi.org/10.2174/138527209787847345 |
Print ISSN 1385-2728 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5348 |
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The major topic is the functionalization of heterocycles through catalyzed C-H bond activation. The strategies based on C-H activation not only provide straightforward formation of C-C or C-X bonds but, more importantly, allow for the avoidance of pre-functionalization of one or two of the cross-coupling partners. The beneficial impact of ...read more
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