| In vitro | HMN-214, an oral prodrug of HMN-176, exhibits superior oral bioavailability. In nude mouse models carrying multi-drug resistant KB-A.1 cells, HMN-214 (10 mg/kg-20 mg/kg) significantly inhibits the expression of MDR1 mRNA. Additionally, in mouse xenograft models of PC-3, A549, and WiDr cells, HMN-214 (10 mg/kg-20 mg/kg) effectively suppresses tumor growth. |
| In vivo | HMN-214 is an orally administered prodrug that quickly converts to HMN-176, with limited in vitro data available. The active metabolite, HMN-176, demonstrates effective and broad-spectrum antitumor activity against a variety of cancer cell lines including HeLa, PC-3, DU-145, MIAPaCa-2, U937, MCF-7, A549, and WiDr, with an average IC50 value of 118 nM. HMN-176 at concentrations ranging from 250 nM to 2.5 μM inhibits mitotic spindle assembly and at 2.5 μM also impedes microtubule formation from the centrosome. These outcomes suggest that HMN-176's anticancer activity is, in part, mediated by disrupting centrosome-driven microtubule (MT) assembly during mitosis. Additionally, at 2.5 μM, HMN-176 delays the formation of the proper spindle assembly checkpoint in human RPE1 and CFPAC-1 cells. By disrupting the interaction between the NF-Y transcription factor and the MDR1 promoter, HMN-176 (3 μM) downregulates the expression of the multidrug resistance gene (MDR1). In HeLa cells, HMN-176 (3 μM) blocks cell cycle progression at the G2/M phase. HMN-176 also exhibits cytotoxic effects on both human and murine cell lines resistant to various treatments, including P388/CDDP, P388/VCR, K2/CDDP, and K2/VP-16, with IC50 values ranging from 143 nM to 265 nM. |