Related Experiment Video
Updated: Apr 7, 2026

The Influence of Liver Resection on Intrahepatic Tumor Growth
Published on: April 9, 2016
Amarogentin regulates self renewal pathways to restrict liver carcinogenesis in experimental mouse model
Subhayan Sur1, Debolina Pal1, Kaustav Banerjee1
1Department of Oncogene Regulation, Chittaranjan National Cancer Institute, Kolkata, India.
Abstract:
Amarogentin, a secoiridoid glycoside isolated from medicinal plant Swertia chirata, was found to restrict CCl4 /N-nitrosodiethyl amine (NDEA) induced mouse liver carcinogenesis by modulating G1/S cell cycle check point and inducing apoptosis. To understand its therapeutic efficacy on stem cell self renewal pathways, prevalence of CD44 positive cancer stem cell (CSC) population, expressions (mRNA/protein) of some key regulatory genes of self renewal Wnt and Hedgehog pathways along with expressions of E-cadherin and EGFR were analyzed during the liver carcinogenesis and in liver cancer cell line HepG2. It was observed that amarogentin could significantly reduce CD44 positive CSCs in both pre and post initiation stages of carcinogenesis than carcinogen control mice. In Wnt pathway, amarogentin could inhibit expressions of β-catenin, phospho β-catenin (Y-654) and activate expressions of antagonists sFRP1/2 and APC in the liver lesions. In Hedgehog pathway, decreased expressions of Gli1, sonic hedgehog ligand, and SMO along with up-regulation of PTCH1 were seen in the liver lesions due to amarogentin treatment. Moreover, amarogentin could up-regulate E-cadherin expression and down-regulate expression of EGFR in the liver lesions. Similarly, amarogentin could inhibit HepG2 cell growth along with expression and prevalence of CD44 positive CSCs. Similar to in vivo analysis, amarogentin could modulate the expressions of the key regulatory genes of the Wnt and hedgehog pathways and EGFR in HepG2 cells. Thus, our data suggests that the restriction of liver carcinogenesis by amarogentin might be due to reduction of CD44 positive CSCs and modulation of the self renewal pathways. © 2015 Wiley Periodicals, Inc.
Insights
Amarogentin from Swertia chirata restricts liver cancer by reducing cancer stem cells (CSCs) and modulating self-renewal pathways like Wnt and Hedgehog. This natural compound shows therapeutic potential against liver carcinogenesis.
Area of Science:
- Pharmacology
- Hepatology
- Cancer Biology
Background:
- Hepatocellular carcinoma (HCC) remains a significant health challenge.
- Cancer stem cells (CSCs) play a crucial role in tumor initiation and progression.
- Targeting self-renewal pathways is a promising strategy for cancer therapy.
Purpose of the Study:
- To investigate the therapeutic effect of amarogentin on liver carcinogenesis.
- To analyze amarogentin's impact on cancer stem cell populations and self-renewal pathways.
- To evaluate amarogentin's efficacy in both in vivo and in vitro liver cancer models.
Main Methods:
- CCl4/NDEA-induced mouse liver carcinogenesis model.
- Analysis of CD44 positive CSCs population.
- Gene expression analysis (mRNA/protein) of Wnt, Hedgehog pathways, E-cadherin, and EGFR.
- In vitro studies using HepG2 liver cancer cell line.
Main Results:
- Amarogentin significantly reduced CD44 positive CSCs in pre and post-initiation stages.
- Amarogentin modulated Wnt pathway by inhibiting β-catenin and activating antagonists.
- Amarogentin modulated Hedgehog pathway by altering Gli1, sonic hedgehog, SMO, and PTCH1 expressions.
- Amarogentin upregulated E-cadherin and downregulated EGFR expression.
- Amarogentin inhibited HepG2 cell growth and CSC prevalence, modulating key gene expressions.
Conclusions:
- Amarogentin restricts liver carcinogenesis by reducing CSCs.
- Modulation of Wnt and Hedgehog self-renewal pathways contributes to amarogentin's anti-cancer effects.
- Amarogentin demonstrates therapeutic potential for liver cancer treatment.
More Related Videos
08:50In Vitro Cultivation Techniques for Modeling Liver Organogenesis, Building Assembloids, and Designing Synthetic Tissues using Human Cell Lines
Published on: April 18, 2025
06:38An Oncogenic Hepatocyte-Induced Orthotopic Mouse Model of Hepatocellular Cancer Arising in the Setting of Hepatic Inflammation and Fibrosis
Published on: September 12, 2019
Related Concept Videos
mTOR Signaling and Cancer Progression
The mTOR pathway or the...
Replicative Cell Senescence