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January 31, 2025Cell Death and Disease25 citationsOpen Access

Estrogen-dependent activation of TRX2 reverses oxidative stress and metabolic dysfunction associated with steatotic disease

ASAlfredo SmirigliaNLNicla LoritoMBMarina Bacci

Key Result

Estrogen treatment reduced reactive oxygen species levels and lipid droplet content in steatotic-induced liver cells by upregulating the mitochondrial thioredoxin 2 (TRX2) antioxidant system.

Structured PICO

Does 17β-estradiol reduce oxidative stress and lipid accumulation in preclinical in vitro models of steatotic liver disease?

P
Population
Preclinical in vitro study utilizing human and murine liver cell lines, supported by an in silico transcriptomic analysis of 243 female liver tissue samples across various stages of MASLD.
I
Intervention
17β-Estradiol (E2) 1 nM or 50 nM for 48 hours
C
Comparator
Vehicle/no estrogen in steatotic-induced cells
O
Outcome
Reactive oxygen species (ROS) levels, lipid droplet (LD) content, and mitochondrial integritysurrogate

Estrogen protects against oxidative stress and lipid accumulation in in vitro models of steatotic liver disease via upregulation of the mitochondrial antioxidant TRX2.

Limitations

  • Blinding was not implemented during the experimental processes.
  • In vitro models may not fully recapitulate the complexity of human liver tissue and the role of stromal/immune cells.
  • Lack of in vivo experimental models to confirm the specific mechanisms underlying TRX2 and estrogen receptor interactions.

Abstract

Metabolic dysfunction-associated steatotic liver disease (MASLD) encompasses a spectrum of hepatic disorders, ranging from simple steatosis to steatohepatitis, with the most severe outcomes including cirrhosis, liver failure, and hepatocellular carcinoma. Notably, MASLD prevalence is lower in premenopausal women than in men, suggesting a potential protective role of estrogens in mitigating disease onset and progression. In this study, we utilized preclinical in vitro models-immortalized cell lines and hepatocyte-like cells derived from human embryonic stem cells-exposed to clinically relevant steatotic-inducing agents. These exposures led to lipid droplet (LD) accumulation, increased reactive oxygen species (ROS) levels, and mitochondrial dysfunction, along with decreased expression of markers associated with hepatocyte functionality and differentiation. Estrogen treatment in steatotic-induced liver cells resulted in reduced ROS levels and LD content while preserving mitochondrial integrity, mediated by the upregulation of mitochondrial thioredoxin 2 (TRX2), an antioxidant system regulated by the estrogen receptor. Furthermore, disruption of TRX2, either pharmacologically using auranofin or through genetic interference, was sufficient to counteract the protective effects of estrogens, highlighting a potential mechanism through which estrogens may prevent or slow MASLD progression.

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Cite This Study

Smiriglia et al. (2025) studied Metabolic dysfunction-associated steatotic liver disease (MASLD) (n=243). 17β-estradiol (Estrogen) vs. Untreated/vehicle was evaluated on Reactive oxygen species (ROS) levels and lipid droplet accumulation. Estrogen treatment reduced reactive oxygen species levels and lipid droplet content in steatotic-induced liver cells by upregulating the mitochondrial thioredoxin 2 (TRX2) antioxidant system.

synapsesocial.com/papers/6a1ed567eed4f0c78fa44c43https://doi.org/10.1038/s41419-025-07331-7
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