Bioassay-guided fractionation of the antiproliferative chloroform extract of the traditional Chinese medicine Qiang-Huo (Notopterygium incisum) led to the isolation of nine linear furocoumarins (1- 9). All the isolates were tested against two human cancer cell lines (HepG-2 and MCF-7) and a rat cancer cell line (C6) using the MTT assay method. Among them, notopol (1), notopterol (2), 5-[(2 E,5 Z)-7-hydroxy-3,7-dimethyl-2,5-octadienoxy]psoralene (3), and 5-[(2,5)-epoxy-3-hydroxy-3,7-dimethyl-6-octenoxy]psoralene (4) showed significant antiproliferative activity against the HepG-2 and C6 cancer cell lines, with IC(50) values of 7.7-24.8 microg/mL (5-FU: ca. 5 microg/mL). Compounds 1- 3 also showed moderate cytotoxicity against the MCF-7 cancer cell line, with IC(50) values of 39.4-61.3 microg/mL (5-FU: 17.3 microg/mL). The cell cycle-specific inhibition and apoptosis induced by compounds 1 and 2 were determined using flow cytometry. The structure-activity relationship (SAR) is briefly discussed herein. It was found that the presence of a free hydroxy at the lipophilic side chain linked to C-5 of the linear furocoumarins was essential for their in vitro antiproliferative activity.
Liver cancer is one of leading causes of cancer-related deaths. A deeper mechanistic understanding of liver cancer could lead to the development of more effective therapeutic strategies. In our previous work, we screened 646 miRNAs and identified 11 that regulate liver cancer cell migration. The current study shows that miR-525-3p is frequently up-regulated in liver cancer tissues, and enhanced expression of miR-525-3p can promote liver cancer cell migration and invasion. Zinc finger protein 395 (ZNF395) is the direct functional target gene for miR-525-3p, and it is frequently down-regulated in liver cancer tissues. High expression of ZNF395 can significantly inhibit while knockdown of ZNF395 expression can markedly enhance the migration and invasion of liver cancer cells, suggesting that ZNF395 suppresses metastasis in liver cancer. Down-regulation of ZNF395 can mediate miR-525-3p induced liver cancer cell migration and invasion. In conclusion, miR-525-3p promotes liver cancer cell migration and invasion by directly targeting ZNF395, and the fact that miR-525-3p and ZNF395 both play important roles in liver cancer progression makes them potential therapeutic targets.
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