鬼臼毒素
化学
细胞毒性
依托泊苷
细胞培养
IC50型
阿霉素
G2水电站
药理学
生物化学
细胞凋亡
立体化学
体外
化疗
生物
内科学
医学
遗传学
作者
Desheng Cai,Shao-Yan Lou,Su Huo,Yuqin Yang,Feng Gao,Wenmin Pi,Ke-Dian Chen,Cheng Wang,Xiao‐Yun Yang,Jingyi Jiao,Bing Xu,Haimin Lei,Haimin Lei
标识
DOI:10.1016/j.bioorg.2022.106066
摘要
Podophyllotoxin's undifferentiated cytotoxicity and poor selectivity limit its clinical application. To improve above disadvantages, conjugation of bile acids with podophyllotoxin could improve cell line selectivity of liver cancer to achieve clinical translation further. Enlightened by the bile acids' moiety magic characters, thirty podophyllotoxin-linked bile acid derivatives had been designed and synthesized. The cytotoxicity of these compounds in vitro was evaluated on HepG2, HCT-116, A549 and MDCK cell lines. After conjunction with bile acids, most of the derivatives (IC50 = 0.066-0.831 μM) were more potent against above three types of tumor cells than Etoposide (VP-16, IC50 = 4.319-41.080 μM) and exhibited similar antitumor activity compared with doxorubicin (DOX, IC50 = 0.230-0.745 μM). Moreover, structure-activity relationship displayed the length of the linker chain between podophyllotoxin and bile acids affected the cytotoxicity. Especially, compound 23 exhibited strong activity against HepG2 cell lines (IC50 = 0.188 ± 0.01 μM) than MDCK cell lines (IC50 = 4.780 ± 0.50 μM) and its SI (IC50MDCK/IC50HepG2) value of compound 23 was 25.4. Further antitumor mechanism studies showed that compound 23 acted as Topo Ⅱ inhibition and induced cell apoptosis with S cell cycle arrest. In particular, compound 23 showed valid antitumor efficacy at 10 mg/kg by intraperitoneal administration with a tumor inhibition rate of 60.9% in the Hepa1-6 xenograft mice model. The current research displayed that introduction of bile acids contributed to improve selectivity and activity to cell, and compound 23 could be a promising anti-tumor candidate.
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