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April 18, 2026Journal of Cellular Physiology1 citations

Clock Modulation by Naringenin Suppresses Lipogenesis and Promotes Adipose Tissue Browning

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XXXuekai XiongJPJemima PangemananCity of HopeTKTali KipermanCity Of Hope National Medical Center

Key Points

  • This research aims to explore how naringenin influences lipogenesis and adipose browning through circadian modulation.
  • Used in vitro adipogenic progenitor and mature adipocyte models.
  • Administered naringenin in vivo to assess its effects on body weight and metabolism.
  • Measured expression levels of RORα and clock genes in treated adipocytes and tissues.
  • Naringenin suppressed lipogenesis and induced browning characteristics in adipocytes.
  • RORα activation was essential for naringenin's effects on lipogenesis.
  • In vivo treatment reduced body weight and fat mass while improving insulin signaling.

Abstract

The circadian clock orchestrates adipocyte development and lipid remodeling, with its disruption leading to the development of obesity and insulin resistance. Here we demonstrate that the flavonoid compound naringenin displays clock modulatory activity that suppresses adipocyte lipid storage while promoting browning. In adipogenic progenitors, naringenin activates RORα with induction of clock gene expression to promote circadian clock oscillation with protective effect against cytokine-induced dampening. The clock-enhancing properties of naringenin suppressed lipogenesis in mature adipocytes together with induction of browning characteristics. The inhibitory effect of naringenin on lipogenesis was dependent on clock modulation as it was abolished in RORα-deficient adipocytes. We further show that naringenin administration in vivo up-regulated RORα expression with clock gene induction together with browning of subcutaneous beige fat depot, resulting reduced fat mass and body weight. Naringenin treatment in vivo also lowered plasma glucose and free fatty acid levels, with markedly enhanced insulin signaling in adipose depots and skeletal muscle. Collectively, our findings uncover a new clock-activating mechanism of action in mediating the metabolic benefits of naringenin, suggesting its potential as a natural supplement for anti-obesity and metabolic disease interventions.

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Cite This Study

Xiong et al. (2026) studied this question.

synapsesocial.com/papers/69e321aa40886becb6540bcbhttps://doi.org/10.1002/jcp.70175
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