Literature DB >> 14614451

Silibinin upregulates the expression of cyclin-dependent kinase inhibitors and causes cell cycle arrest and apoptosis in human colon carcinoma HT-29 cells.

Chapla Agarwal1, Rana P Singh, Sivanandhan Dhanalakshmi, Anil K Tyagi, Marianne Tecklenburg, Robert A Sclafani, Rajesh Agarwal.   

Abstract

Silymarin, a defined mixture of natural flavonoid, has recently been shown to have potent cancer chemopreventive efficacy against colon carcinogenesis in rat model; however, the mechanism of such efficacy is not elucidated. Here, using pure active agent in silymarin, namely silibinin, we show its antiproliferative and apoptotic effects, and associated molecular alterations in human colon carcinoma HT-29 cells. Silibinin treatment of cells at 50-100 microg/ml doses resulted in a moderate to very strong growth inhibition in a dose- and a time-dependent manner, which was largely due to a G0/G1 arrest in cell cycle progression; higher dose and longer treatment time also caused a G2/M arrest. In mechanistic studies related its effect on cell cycle progression, silibinin treatment resulted in an upregulation of Kip1/p27 and Cip1/p21 protein as well as mRNA levels, and decreased CDK2, CDK4, cyclin E and cyclin D1 protein levels together with an inhibition in CDK2 and CDK4 kinase activities. In other studies, we observed that G2/M arrest by silibinin was associated with a decrease in cdc25C, cdc2/p34 and cyclin B1 protein levels, as well as cdc2/p34 kinase activity. In the studies assessing biological fate of silibinin-treated cells, silibinin-induced cell cycle arrest and growth inhibition were not associated with cellular differentiation, but caused apoptotic death. The quantitative apoptosis analysis showed up to 15% apoptotic cell death after 48 h of silibinin treatment. Interestingly, silibinin-induced apoptosis in HT-29 cells was independent of caspases activation, as all caspases inhibitor did not reverse silibinin-induced apoptosis. This observation was further confirmed by the findings showing a lack in caspases activity increase and caspases and PARP cleavage as well as a lack in cytochrome c release in cytosol following silibinin treatment of HT-29 cells. Additional studies conducted in mice showed that silibinin doses found effective in HT-29 cells are achievable in plasma, which increases the significance of the present findings and their possible translation in in vivo anticancer efficacy of silibinin against colon cancer. Together, these results identify molecular mechanisms of silibinin efficacy as a cell cycle regulator and apoptosis inducer in human colon carcinoma HT-29 cells, and justify further studies to investigate potential usefulness of this nontoxic agent in colon cancer prevention and intervention.

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Year:  2003        PMID: 14614451     DOI: 10.1038/sj.onc.1207158

Source DB:  PubMed          Journal:  Oncogene        ISSN: 0950-9232            Impact factor:   9.867


  72 in total

1.  Silibinin suppresses growth of human colorectal carcinoma SW480 cells in culture and xenograft through down-regulation of beta-catenin-dependent signaling.

Authors:  Manjinder Kaur; Balaiya Velmurugan; Alpna Tyagi; Chapla Agarwal; Rana P Singh; Rajesh Agarwal
Journal:  Neoplasia       Date:  2010-05       Impact factor: 5.715

2.  Enhanced inhibition of lung adenocarcinoma by combinatorial treatment with indole-3-carbinol and silibinin in A/J mice.

Authors:  Abaineh Dagne; Tamene Melkamu; Melissa M Schutten; Xuemin Qian; Pramod Upadhyaya; Xianghua Luo; Fekadu Kassie
Journal:  Carcinogenesis       Date:  2011-01-27       Impact factor: 4.944

3.  Wolfberry Water Soluble Phytochemicals Down-Regulate ER Stress Biomarkers and Modulate Multiple Signaling Pathways Leading To Inhibition of Proliferation and Induction of Apoptosis in Jurkat Cells.

Authors:  Yu Jiang; Yunong Zhang; Logan Wark; Edlin Ortiz; Soyoung Lim; Hui He; Weiqun Wang; Denis Medeiros; Dingbo Lin
Journal:  J Nutr Food Sci       Date:  2011-11-24

Review 4.  Cancer stem cells: a novel paradigm for cancer prevention and treatment.

Authors:  Dharmalingam Subramaniam; Satish Ramalingam; Courtney W Houchen; Shrikant Anant
Journal:  Mini Rev Med Chem       Date:  2010-05       Impact factor: 3.862

5.  Isolation and chemopreventive evaluation of novel naphthoquinone compounds from Alkanna tinctoria.

Authors:  Nguyen Huu Tung; Guang-Jian Du; Chun-Su Yuan; Yukihiro Shoyama; Chong-Zhi Wang
Journal:  Anticancer Drugs       Date:  2013-11       Impact factor: 2.248

6.  Effects and mechanisms of silibinin on human hepatoma cell lines.

Authors:  John-J Lah; Wei Cui; Ke-Qin Hu
Journal:  World J Gastroenterol       Date:  2007-10-28       Impact factor: 5.742

Review 7.  Molecular mechanisms of silibinin-mediated cancer chemoprevention with major emphasis on prostate cancer.

Authors:  Harold Ting; Gagan Deep; Rajesh Agarwal
Journal:  AAPS J       Date:  2013-04-16       Impact factor: 4.009

8.  Silibinin induced the apoptosis of Hep-2 cells via oxidative stress and down-regulating survivin expression.

Authors:  Xinxin Yang; Xiaoyu Li; Liangxiang An; Bo Bai; Jing Chen
Journal:  Eur Arch Otorhinolaryngol       Date:  2013-04-12       Impact factor: 2.503

9.  Silibinin suppresses growth of human prostate carcinoma PC-3 orthotopic xenograft via activation of extracellular signal-regulated kinase 1/2 and inhibition of signal transducers and activators of transcription signaling.

Authors:  Rana P Singh; Komal Raina; Gagan Deep; Daniel Chan; Rajesh Agarwal
Journal:  Clin Cancer Res       Date:  2009-01-15       Impact factor: 12.531

10.  Silibinin suppresses spontaneous tumorigenesis in APC min/+ mouse model by modulating beta-catenin pathway.

Authors:  Subapriya Rajamanickam; Manjinder Kaur; Balaiya Velmurugan; Rana P Singh; Rajesh Agarwal
Journal:  Pharm Res       Date:  2009-09-25       Impact factor: 4.200

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