4.3 Article

Casticin induces caspase-mediated apoptosis via activation of mitochondrial pathway and upregulation of DR5 in human lung cancer cells

Journal

ASIAN PACIFIC JOURNAL OF TROPICAL MEDICINE
Volume 6, Issue 5, Pages 372-378

Publisher

WOLTERS KLUWER MEDKNOW PUBLICATIONS
DOI: 10.1016/S1995-7645(13)60041-3

Keywords

Lung cancer; Casticin; Apoptosis; Cytochrome c; p53; DR5

Funding

  1. National Natural Scientific Foundation of China [30760248, 81072161, 81172139, 81060183]
  2. Programs for Changjiang Scholars and Innovative Research Team in University [IRT1119]
  3. Programs for Guangxi Innovative Research Team [2011GXNSFF018005]
  4. Program of Science and Technology of Guangxi [1140003A-16]
  5. Project of Scientific Research of Hunan Province the Administration Bureau of Traditional Chinese Medicine [2010081]
  6. Project of Scientific Research of Hunan Province the Department of Education [10C0975]
  7. Major Project of Scientific Research of Hunan Province the Department of Education [09A054]

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OBJECTIVE: To assess if casticin induces caspase-mediated apoptosis via activation of mitochondrial pathway and upregulation of DR5 in human lung cancer cells. METHODS: Human non-small-cell lung carcinoma cell lines H460, A549 and H157 were cultured in vitro. The cytotoxic activities were determined using MTT assay. The apoptotic cells death was examined by flow cytometry using PI staining and DNA agarose gel electrophoresis. The activities of caspase-3, -8 and -9 were measured via ELISA. Cellular fractionation was determined by flow cytometry to assess release of cytochrome c and the mitochondrial transmembrane potential. Bcl-2/Bcl-XL/XIAP/Bid/DR5 and DR4 proteins were analyzed using western blot. RESULTS: The concentrations required for a 50% decrease in cell growth (IC50) ranged from 1.8 to 3.2 mu M. Casticin induced rapid apoptosis and triggered a series of effects associated with apoptosis by way of mitochondrial pathway, including the depolarization of the mitochondrial membrane, release of cytochrome c from mitochondria, activation of procaspase-9 and -3, and increase of DNA fragments. Moreover, the pan caspase inhibitor zVAD-FMK and the caspase-3 inhibitor zDEVD-FMK suppressed casticin-induced apoptosis. In addition, casticin induced XIAP and Bcl-XL down-regulation, Bax upregulation and Bid clearage. In H157 cell line, casticin increased expression of DR5 at protein levels but not affect the expression of DR4. The pretreatment with DR5/Fc chimera protein effectively attenuated casticin-induced apoptosis in H157 cells. No correlation was found between cell sensitivity to casticin and that to p53 status, suggesting that casticin induce a p53-independent apoptosis. CONCLUSIONS: Our results demonstrate that casticin induces caspase-mediated apoptosis via activation of mitochondrial pathway and upregulation of DR5 in human lung cancer cells.

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