1. Academic Validation
  2. Valeriana jatamansi constituent IVHD-valtrate as a novel therapeutic agent to human ovarian cancer: in vitro and in vivo activities and mechanisms

Valeriana jatamansi constituent IVHD-valtrate as a novel therapeutic agent to human ovarian cancer: in vitro and in vivo activities and mechanisms

  • Curr Cancer Drug Targets. 2013 May;13(4):472-83. doi: 10.2174/1568009611313040009.
Xiaoguang Li 1 Tao Chen Sheng Lin Jing Zhao Peizhan Chen Qian Ba He Guo Yanling Liu Jingquan Li Ruiai Chu Lei Shan Weidong Zhang Hui Wang
Affiliations

Affiliation

  • 1 Key Laboratory of Nutrition and Metabolism, Food Safety Research Center, Institute for Nutritional Sciences, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Graduate School of the Chinese Academy of Sciences, Shanghai, P. R. China.
Abstract

Identification of novel chemotherapeutic agents from traditional medicines and elucidation of the molecular basis of their Anticancer effects are critical and urgently needed for modern pharmacotherapy. We previously found that analogs of the compounds present in Valeriana jatamansi, a traditional medicine used to treat mental disorders, possess notable antitumor properties; however, the underlying molecular mechanisms have not been fully demonstrated. In this study, we evaluated the Anticancer effects of IVHD-valtrate, one of the most active Valeriana jatamansi derivatives, against human ovarian Cancer cells in vitro and in vivo. IVHD-valtrate inhibited the growth and proliferation of the A2780 and OVCAR-3 ovarian Cancer cell lines in a concentration-dependent manner, while relatively low cytotoxicity to immortalized non-tumorigenic human ovarian surface epithelial cells (IOSE-144) was observed. Treatment with IVHD-valtrate arrested the ovarian Cancer cells in the G2/M phase and induced Apoptosis, and significantly suppressed the growth of A2780 and OVCAR3 xenograft tumors in a dose-dependent manner. The detailed in vitro and in vivo study on the molecular mechanisms of this compound demonstrated that IVHD-valtrate exposure modulated the expression of numerous molecules involved in cell cycle progression and Apoptosis regardless of p53 status, leading to increase the level of p53, Rb, p21, p27 and decrease MDM2, E2F1, Cyclin B1, Cdc25C and Cdc2. It also down-regulated Bcl-2/Bax and Bcl-2/Bad ratio and enhanced the cleavage of PARP and Caspases. Our preclinical results indicated IVHD-valtrate is a potential therapeutic agent for ovarian Cancer, providing a basis for development of the compound as a novel chemotherapeutic agent.

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