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Pseudolaric Acid B Induces Growth Inhibition and Caspase-Dependent Apoptosis on Head and Neck Cancer Cell lines through Death Receptor 5

Cited 8 time in Web of Science Cited 8 time in Scopus
Authors

Choi, Su-Jung; Ahn, Chi-Hyun; Yang, In-Hyoung; Jin, Bohwan; Lee, Won Woo; Kim, Ji-Hoon; Ahn, Min-Hye; Swarup, Neeti; Hong, Kyoung-Ok; Shin, Ji-Ae; Woo, Nam-Tae; Hong, Seong Doo; Lee, Jae-Il; Cho, Sung-Dae

Issue Date
2019-10
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Citation
Molecules, Vol.24 No.20, p. 3715
Abstract
Pseudolaric Acid B (PAB), diterpenoid isolated from the root bark of Pseudolarix kaempferi Gordon tree (Pinaceae), exhibits an anti-proliferative and apoptotic activity in various cancer cell lines but to date, the effects of PAB on head and neck cancer (HNC) cell lines remain to be elucidated. In this study, we showed that PAB significantly inhibited the viability and caspase-dependent apoptosis in HN22 cell line. PAB-induced apoptosis is through inducing death receptor 5 (DR5) together with the increase in the expression of cleaved caspase-8. It also inhibited the proliferations and induced apoptosis through DR5 in other three HNC cell lines (HSC3, Ca9.22, and HSC4). Extending our in vitro findings, we found that ethanol extract of Pseudolarix kaempferi (2.5 mg/kg/day) reduced tumor growth in a xenograft model bearing HN22 cell line without any change in body weight. DR5 were also found to be increased in tumors tissue of PAB-treated mice without any apparent histopathological changes in liver or kidney tissues. Taken together, PAB may be a potential lead compound for chemotherapeutic agents against head and neck cancer.
ISSN
1420-3049
URI
https://hdl.handle.net/10371/206151
DOI
https://doi.org/10.3390/molecules24203715
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  • 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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