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Thyroid hormone receptor ligands induce regression of rat preneoplastic liver lesions causing their reversion to a
Andrea Perra1, Marta Anna Kowalik, Monica Pibiri
1Department of Toxicology, Oncology and Molecular Pathology Unit, University of Cagliari, Cagliari, Italy.
Unlabelled:
Triiodothyronine (T3), through interaction with its intracellular thyroid hormone receptors (TRs), influences various physiological functions, including metabolism, development, and growth. We investigated the effect of T3 and the selective TR-beta agonist GC-1 in two models of hepatocarcinogenesis. Preneoplastic lesions were induced in F-344 rats via a single dose of diethylnitrosamine, followed by a choline-deficient (CD) diet for 10 weeks. Rat subgroups were then fed the CD diet or a CD diet containing either 4 mg/kg T3 or 5 mg/kg GC-1 for another week. Rats fed a CD diet alone showed a large number (65/cm(2)) of preneoplastic lesions positive for the placental form of glutathione S-transferase (GSTP). Coadministration of T3 for the last week caused an almost complete disappearance of the foci (3/cm(2)). A reduction of GSTP-positive foci was also observed in rats fed a CD + GC-1 diet (28/cm(2) versus 75/cm(2) of rats fed a CD diet alone) in the absence of significant differences in labeling or apoptotic index of preneoplastic hepatocytes between the two groups. An antitumoral effect of GC-1 was also observed with the resistant hepatocyte model of hepatocarcinogenesis. Nodule regression was associated with a return to a fully differentiated phenotype, indicated by the loss of the fetal markers GSTP and gamma glutamyl transpeptidase, and reacquisition of the activity of glucose 6-phosphatase and adenosine triphosphatase, two enzymes expressed in normal hepatocytes.
Conclusion:
Our results indicate that activated TRs negatively influence the carcinogenic process through induction of a differentiation program of preneoplastic hepatocytes. The results also suggest that TRs could be a meaningful target in liver cancer therapy.
Insights
Thyroid hormone receptors (TRs) activation, using triiodothyronine (T3) or GC-1, reduced preneoplastic liver lesions. This suggests TRs are a promising target for liver cancer therapy.
Area of Science:
- Endocrinology
- Hepatology
- Cancer Research
Background:
- Triiodothyronine (T3) regulates physiological functions via thyroid hormone receptors (TRs).
- Hepatocarcinogenesis involves complex molecular and cellular changes.
Purpose of the Study:
- To investigate the effects of T3 and a selective TR-beta agonist (GC-1) on hepatocarcinogenesis models.
- To explore the potential of TRs as therapeutic targets in liver cancer.
Main Methods:
- Induction of preneoplastic lesions in F-344 rats using diethylnitrosamine and a choline-deficient (CD) diet.
- Treatment with T3 or GC-1 during theCD diet phase.
- Assessment of preneoplastic lesions (GSTP-positive foci) and hepatocyte differentiation markers.
Main Results:
- T3 administration significantly reduced GSTP-positive preneoplastic lesions.
- GC-1 also reduced these lesions, indicating TR activation's antitumoral effect.
- GC-1 treatment led to nodule regression and restoration of a differentiated hepatocyte phenotype.
Conclusions:
- Activated TRs negatively impact liver carcinogenesis by inducing preneoplastic hepatocyte differentiation.
- TRs represent a potential therapeutic target for liver cancer treatment.
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