细胞毒性T细胞
化学
CYP3A4型
基因亚型
赫尔格
细胞凋亡
效力
药理学
微粒体
细胞生长
细胞色素P450
体外
生物化学
生物
酶
生物物理学
钾通道
基因
作者
Natalya I. Vasilevich,Hongbin Jiang,Haihua Xiao,Kunxian Feng,Chengfang Jian,Changfeng Chen,Min Li,Zhenhua Chen,Li Pang,Chun‐Zhu Li,А. В. Честков,Alexander Sun,Xu Wang,Joseph A. Fuselier,David H. Coy,Lichun Sun
标识
DOI:10.1016/j.bbrc.2024.149483
摘要
Highly cytotoxic maytansine derivatives are widely used in targeted tumor delivery. Structure-activity studies published earlier suggested the C9 carbinol to be a key element necessary to retain the potency. However, in 1984 a patent was published by Takeda in which the synthesis of 9-thioansamitocyn (AP3SH) was described and its activity in xenograft models was shown. In this article we summarize the results of an extended study of the anti-tumor properties of AP3SH. Like other maytansinoids, it induces apoptosis and arrests the cell cycle in the G2/M phase. It is metabolized in liver microsomes predominately by C3A4 isoform and doesn't inhibit any CYP isoforms except CYP3A4 (midazolam, IC50 7.84 μM). No hERG inhibition, CYP induction or mutagenicity in Ames tests were observed. AP3SH demonstrates high antiproliferative activity against 25 tumor cell lines and tumor growth inhibition in U937 xenograft model. Application of AP3SH as a cytotoxic payload in drug delivery system was demonstrated by us earlier.
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