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September 19, 2022Scientific Reports104 citationsOpen Access

FASN inhibition targets multiple drivers of NASH by reducing steatosis, inflammation and fibrosis in preclinical models

MOMarie O’FarrellGDG M DukeRCR. Webster Crowley

Key Result

FASN inhibition decreased hepatic fibrosis and reduced the development of hepatocellular carcinoma tumors by 85% in a preclinical mouse model of NASH.

Structured PICO

Does FASN inhibition reduce steatosis, inflammation, and fibrosis in preclinical models of NASH?

P
Population
Preclinical study evaluating FASN inhibitors in human cell cultures and multiple diet-induced mouse models of NASH.
I
Intervention
FASN inhibitors (TVB-3664, TVB-3166, and TVB-2640/denifanstat)
O
Outcome
Markers of steatosis, inflammation, and fibrosis (including TG content, COL1α1, αSMA, IL-1β, NAFLD activity score, ALT, and HCC tumor development)surrogate

FASN inhibition attenuates inflammatory and fibrotic drivers of NASH in preclinical models, suggesting a potential therapeutic approach targeting multiple hallmarks of the disease.

Main Result

Effect estimate: 85% reduction

p-value: p=<0.05

Limitations

  • No single animal model of NASH is fully predictive of drug efficacy in humans.
  • Mechanisms underlying HCC inhibition by FASN inhibitors require further study to distinguish between indirect and direct effects.

Abstract

Fatty acid synthase (FASN) is an attractive therapeutic target in non-alcoholic steatohepatitis (NASH) because it drives de novo lipogenesis and mediates pro-inflammatory and fibrogenic signaling. We therefore tested pharmacological inhibition of FASN in human cell culture and in three diet induced mouse models of NASH. Three related FASN inhibitors were used; TVB-3664, TVB-3166 and clinical stage TVB-2640 (denifanstat). In human primary liver microtissues, FASN inhibiton (FASNi) decreased triglyceride (TG) content, consistent with direct anti-steatotic activity. In human hepatic stellate cells, FASNi reduced markers of fibrosis including collagen1α (COL1α1) and α-smooth muscle actin (αSMA). In CD4+ T cells exposed to NASH-related cytokines, FASNi decreased production of Th17 cells, and reduced IL-1β release in LPS-stimulated PBMCs. In mice with diet induced NASH l, FASNi prevented development of hepatic steatosis and fibrosis, and reduced circulating IL-1β. In mice with established diet-induced NASH, FASNi reduced NAFLD activity score, fibrosis score, ALT and TG levels. In the CCl4-induced FAT-NASH mouse model, FASN inhibition decreased hepatic fibrosis and fibrosis markers, and development of hepatocellular carcinoma (HCC) tumors by 85%. These results demonstrate that FASN inhibition attenuates inflammatory and fibrotic drivers of NASH by direct inhibition of immune and stellate cells, beyond decreasing fat accumulation in hepatocytes. FASN inhibition therefore provides an opportunity to target three key hallmarks of NASH.

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Cite This Study

O’Farrell et al. (2022) studied Non-alcoholic steatohepatitis (NASH). FASN inhibitors (TVB-3664, TVB-3166, TVB-2640) vs. Vehicle was evaluated on Development of hepatocellular carcinoma (HCC) tumors in the FAT-NASH mouse model (85% reduction, p=<0.05). FASN inhibition decreased hepatic fibrosis and reduced the development of hepatocellular carcinoma tumors by 85% in a preclinical mouse model of NASH.

synapsesocial.com/papers/6aa582bfc616a76b5feec6c8https://doi.org/10.1038/s41598-022-19459-z
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