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Updated: Jun 22, 2026

A Rat Methyl-Seq Platform to Identify Epigenetic Changes Associated with Stress Exposure
Published on: October 24, 2018
Actein activates stress- and statin-associated responses and is bioavailable in Sprague-Dawley rats
Linda Saxe Einbond1, Morando Soffritti, Davide Degli Esposti
1Columbia Universty College of Physicians and Surgeons, New York, NY 10032, USA. le2012@columbia.edu
Abstract:
The purpose of this study was to assess in rats the pharmacological parameters and effects on gene expression in the liver of the triterpene glycoside actein. Actein, an active component from the herb black cohosh, has been shown to inhibit the proliferation of human breast cancer cells. To conduct our assessment, we determined the molecular effects of actein on livers from Sprague-Dawley rats treated with actein at 35.7 mg/kg for 6 and 24 h. Chemogenomic analyses indicated that actein elicited stress and statin-associated responses in the liver; actein altered expression of cholesterol and fatty acid biosynthetic genes, p53 pathway genes, CCND1 and ID3. Real-time RT-PCR validated that actein induced three time-dependent patterns of gene expression in the liver: (i) a decrease followed by a significant increase of HMGCS1, HMGCR, HSD17B7, NQO1, S100A9; (ii) a progressive increase of BZRP and CYP7A1 and (iii) a significant increase followed by a decrease of CCND1 and ID3. Consistent with actein's statin- and stress-associated responses, actein reduced free fatty acid and cholesterol content in the liver by 0.6-fold at 24 h and inhibited the growth of human HepG2 liver cancer cells. To determine the bioavailability of actein, we collected serum samples for pharmacokinetic analysis at various times up to 24 h. The serum level of actein peaked at 2.4 microg/mL at 6 h. Actein's ability to alter pathways involved in lipid disorders and carcinogenesis may make it a new agent for preventing and treating these major disorders.
Insights
Actein, derived from black cohosh, impacts liver gene expression and lipid metabolism in rats. This study suggests actein
Area of Science:
- Pharmacology
- Molecular Biology
- Hepatology
Background:
- Actein, a triterpene glycoside from black cohosh, exhibits anti-cancer properties.
- Understanding actein's liver effects is crucial for its therapeutic potential.
Purpose of the Study:
- To evaluate the pharmacological parameters of actein in rats.
- To investigate actein's impact on liver gene expression and cellular processes.
Main Methods:
- Sprague-Dawley rats were administered actein (35.7 mg/kg).
- Chemogenomic analysis and real-time RT-PCR were used to assess gene expression.
- Pharmacokinetic analysis determined serum actein levels over 24 hours.
Main Results:
- Actein altered expression of genes involved in cholesterol, fatty acid biosynthesis, and the p53 pathway.
- Observed time-dependent gene expression patterns, including changes in HMGCS1, HMGCR, and CYP7A1.
- Reduced hepatic free fatty acid and cholesterol levels, and inhibited HepG2 liver cancer cell growth.
Conclusions:
- Actein demonstrates statin- and stress-associated responses in the liver.
- Actein's modulation of lipid and cancer-related pathways suggests potential for treating lipid disorders and cancer.
