Differential effects of tetrahydropyridinol derivatives on beta-catenin signaling and invasion in human hepatocellular and breast carcinoma cellsopen access
- Authors
- Yadunandam, Anandam Kasin; Yoon, Jin-Soo; Jeong, Yeon Tae; Kim, Woe-Yeon; Lee, Sang-Yeol; Kim, Gun-Do
- Issue Date
- Aug-2015
- Publisher
- SPANDIDOS PUBL LTD
- Keywords
- beta-catenin; breast carcinoma; cell cycle; cell signaling; hepatocellular carcinoma; tetrahydropyridinol derivatives
- Citation
- INTERNATIONAL JOURNAL OF MOLECULAR MEDICINE, v.36, no.2, pp 577 - 587
- Pages
- 11
- Indexed
- SCI
SCIE
SCOPUS
- Journal Title
- INTERNATIONAL JOURNAL OF MOLECULAR MEDICINE
- Volume
- 36
- Number
- 2
- Start Page
- 577
- End Page
- 587
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/17095
- DOI
- 10.3892/ijmm.2015.2240
- ISSN
- 1107-3756
1791-244X
- Abstract
- In continuation of previous efforts to investigate the biological potency of tetrahydropyridinol derivatives, the present study synthesized three target compounds: N-(bromo-acetyl)-3-carboxyethyl-2,6-diphenyl-4-O-(penta-fluorobenzoyl)-Delta 3-tetra-hydropyridine (5a), N-(chloroacetyl)-3-carboxyethyl-2,6diphenyl-4-O-(penta-fluorobenzoyl)-Delta 3-tetrahydropyridine (5b) and N-(2-bromopropanoyl) 3-carboxyethyl-2,6-diphenyl-4-O-(penta-fluorobenzoyl)-Delta 3-tetrahydropyridine (5c), and examined their anticancer potency. Experiments were performed using the Sk-Hep1 and Hep3B human hepatocellular carcinoma cell lines and MDA-MB-231 breast adenocarcinoma cell line. Among the three compounds, 5a and 5b were comparably and significantly cytotoxic to the Sk-Hep1, Hep3B and MDA-MB-231 cells. The highest level of cytotoxicity was detected in theSk-Hep1 cells with half maximal inhibitory concentrations for compounds 5a and 5b at 12 and 6 mu M, respectively. These two compounds induced cell cycle arrest in the Sk-Hep1 and MDA-MB-231 cells through the downregulation of beta-catenin and upregulation of glycogen synthase kinase-3 beta and E-cadherin. By contrast, 5a and 5b induced G1 arrest in the Hep3B cells by modulating the p21 and p27 cell cycle regulatory molecules and cyclin-dependent kinase 2. In addition, 5a and 5b significantly inhibited the invasion of Sk-Hep1 and MDA-MB-231 cells. These results suggested that the 5a and 5b compounds induce cell cycle arrest by suppressing Wnt/beta-catenin signaling in highly invasive Sk-Hep1 and MDA-MB-231 cells, and by inducing p53 independent cell cycle arrest in Hep3B cells.
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