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Apoptotic effect of dibenzylideneacetone on oral cancer cells via modulation of specificity protein 1 and Bax

Cited 21 time in Web of Science Cited 20 time in Scopus
Authors

Yu, Hyun Ju; Shin, Ji Ae; Nam, Jeong Seok; Kang, Bong Seok; Cho, Sung Dae

Issue Date
2013-11
Publisher
Wiley-Blackwell
Citation
Oral Diseases, Vol.19 No.8, pp.767-774
Abstract
OBJECTIVE: Dibenzylideneacetone (DBA), an analogue of curcumin, has been shown to have potential anticancer effects against several cancers. However, the molecular mechanism underlying anticancer activity of DBA has not been well established yet. In this study, we investigated the function and molecular mechanism of DBA in human oral cancer cells. MATERIALS AND METHODS: The growth-inhibitory and apoptotic effects and related signaling pathways of DBA were evaluated using trypan blue exclusion assay, 4 '-6-diamidino-2-phenylindole staining, Western blot analysis, siRNA, and reverse transcription-polymerase chain reaction. RESULTS: DBA inhibited cell growth and induced apoptosis, as evidenced by PARP cleavage, activation of caspase-3, and nuclear condensation. DBA also decreased specificity protein 1 (Sp1) expression through facilitating protein degradation. In addition, DBA enhanced the induction of pro-apoptotic protein Bax, resulting in their conformational change, translocation into mitochondrial outer membrane, and its oligomerization. The downregulation of Sp1 by siRNA targeting Sp1 and mithramycin A increasingly activated Bax to trigger apoptosis. Moreover, DBA-induced growth inhibition and apoptosis in various human oral cancer cell lines were associated with Sp1 down-regulation and induction of Bax. CONCLUSION: These findings suggest that DBA may be a potential anticancer drug candidate to induce apoptosis through down-regulation of Sp1 in human oral cancer.
ISSN
1354-523X
URI
https://hdl.handle.net/10371/207541
DOI
https://doi.org/10.1111/odi.12062
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  • School of Dentistry
  • Department of Dentistry
Research Area Discovery of molecular targets related to oral cancer metastasis and identification of signal transduction system, Identifying the role of immunological tolerance in oral cancer, Presenting a new concept oral cancer prevention and treatment strategy through identification of major molecular targets and mechanisms related to oral cancer development, 구강암 발병관련 주요 분자표적 및 기전 규명을 통한 신개념 구강암 예방 및 치료전략 제시, 구강암 전이관련 분자표적 발굴 및 신호전달체계 규명, 구강암에서 면연관용의 역할 규명

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