Synthesis and Discovery Novel Anti-Cancer Stem Cells Compounds Derived from the Natural Triterpenoic Acids

Cancer stem cells (CSCs) have been reported to be involved in tumorigenesis, tumor recurrence, cancer invasion, metastasis, and drug-resistance. Therefore, the development of drug molecules targeting CSCs has become an attractive therapeutic approach. However, the molecules which can selectively abl...

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Veröffentlicht in:Journal of medicinal chemistry 2018-12, Vol.61 (23), p.10814-10833
Hauptverfasser: Liu, Xinhua, Li, Benlong, Zhang, Zhen, Wei, Yujiao, Xu, Zhongxin, Qin, Shuanglin, Liu, Ning, Zhao, Rui, Peng, Junya, Yang, Guang, Qi, Min, Liu, Tongtong, Xie, Maodun, Liu, Shuangwei, Gao, Xian, Lu, Cheng, Zhu, Lijun, Long, Xinyu, Kang, Hong, Sun, Tao, Zhou, Honggang, Wei, Mingming, Yang, Cheng
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container_end_page 10833
container_issue 23
container_start_page 10814
container_title Journal of medicinal chemistry
container_volume 61
creator Liu, Xinhua
Li, Benlong
Zhang, Zhen
Wei, Yujiao
Xu, Zhongxin
Qin, Shuanglin
Liu, Ning
Zhao, Rui
Peng, Junya
Yang, Guang
Qi, Min
Liu, Tongtong
Xie, Maodun
Liu, Shuangwei
Gao, Xian
Lu, Cheng
Zhu, Lijun
Long, Xinyu
Kang, Hong
Sun, Tao
Zhou, Honggang
Wei, Mingming
Yang, Guang
Yang, Cheng
description Cancer stem cells (CSCs) have been reported to be involved in tumorigenesis, tumor recurrence, cancer invasion, metastasis, and drug-resistance. Therefore, the development of drug molecules targeting CSCs has become an attractive therapeutic approach. However, the molecules which can selectively ablate CSCs are extremely rare. To explore the leading compounds targeting CSCs, 52 analogues of triterpenoic acids were synthesized in this study, whose biological activities were evaluated. On the basis of the results of tumorsphere assay, two compounds 48 and 51, derived from oleanolic acid, exhibited suppressive effect on elimination of different type of CSCs. Meanwhile, compounds 48 and 51 could significantly inhibit the growth of several tumors both in vitro and in vivo. Furthermore, treatment of cancer cells with both of two compounds would dramatically increase the level of ROS, which might eliminate the CSCs. Collectively, the leading compounds 48 and 51 were promising anti-CSCs agents that merited further validation as a novel class of chemotherapeutics.
doi_str_mv 10.1021/acs.jmedchem.8b01445
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title Synthesis and Discovery Novel Anti-Cancer Stem Cells Compounds Derived from the Natural Triterpenoic Acids
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