| Literature DB >> 24069881 |
Zhenyuan Miao1, Lingjian Zhu, Guoqiang Dong, Chunlin Zhuang, Yuelin Wu, Shengzheng Wang, Zizao Guo, Yang Liu, Shanchao Wu, Shiping Zhu, Kun Fang, Jianzhong Yao, Jian Li, Chunquan Sheng, Wannian Zhang.
Abstract
Lactone is a common structural motif in biologically active natural products. However, the metabolic instability of lactone significantly reduces their in vivo potency. In the present investigation, a new strategy to improve the metabolic stability of lactone was provided by the design of α-fluoro ether as a novel bioisostere of lactone. The effectiveness of the α-fluoro ether/lactone replacement was validated by the discovery of (20S,21S)-21-fluorocamptothecins as hydrolytically stable topoisomerase I inhibitors. A highly potent camptothecin derivative, 8l, was successfully identified, which showed excellent in vitro and in vivo antitumor activities and represents a promising lead for the discovery of novel antitumor agents. Interestingly, this study also provided a new structure-activity relationship for the C21-carbonyl group of camptothecin, which has been regarded as an essential pharmacophore. Our results revealed that the conserved C21-carbonyl group can be replaced by a fluorine substituent. α-Fluoro ether may have general application in improving the metabolic stability of lactone.Entities:
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Year: 2013 PMID: 24069881 DOI: 10.1021/jm400906z
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446