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Updated: Aug 9, 2025

An Adipocyte Cell Culture Model to Study the Impact of Protein and Micro-RNA Modulation on Adipocyte Function
Published on: May 4, 2021
The clock-modulatory activity of Nobiletin suppresses adipogenesis via Wnt signaling
Abstract:
The circadian clock machinery exerts transcriptional control to modulate adipogenesis and its disruption leads to the development of obesity. Here we report that Nobiletin, a clock amplitude-enhancing molecule, displays anti-adipogenic properties via activating a clock-controlled Wnt signaling pathway that suppresses adipocyte differentiation. Nobiletin augmented clock oscillation with period length shortening in the adipogenic mesenchymal precursor cells and preadipocytes, accompanied by an induction of Bmal1 and core clock components. Consistent with its circadian clock-modulatory activity, Nobiletin inhibited the lineage commitment and terminal differentiation of adipogenic progenitors. Mechanistically, we show that Nobiletin induced the re-activation of Wnt signaling during adipogenic differentiation via transcriptional up-regulation of key components of this pathway. Furthermore, Nobiletin administration in mice markedly reduced adipocyte hypertrophy, leading to a significant loss of fat mass and body weight reduction. Lastly, Nobiletin inhibited the maturation of primary preadipocytes and this effect was dependent on a functional clock regulation. Collectively, our findings uncover a novel activity of Nobiletin in suppressing adipocyte development, implicating its potential therapeutic application in countering obesity and its associated metabolic consequences.
Insights
Nobiletin, a molecule that enhances circadian clock function, suppresses fat cell development. This discovery offers a potential new strategy for combating obesity and related metabolic disorders.
Area of Science:
- Metabolic Regulation
- Chronobiology
- Obesity Research
Background:
- Circadian clock disruption is linked to obesity.
- Adipogenesis, or fat cell formation, is modulated by the circadian clock.
- Novel therapeutic targets for obesity are needed.
Approach:
- Investigated Nobiletin's effect on adipogenesis and circadian clock function.
- Examined Nobiletin's impact on Wnt signaling pathway activation.
- Assessed Nobiletin's efficacy in mouse models of obesity.
Key Points:
- Nobiletin enhances circadian clock oscillations and suppresses adipocyte differentiation.
- Nobiletin reactivates Wnt signaling, a key pathway inhibiting fat cell development.
- Nobiletin administration in mice reduced fat mass and body weight.
Conclusions:
- Nobiletin exhibits anti-adipogenic properties by modulating the circadian clock and Wnt signaling.
- Nobiletin demonstrates therapeutic potential for obesity and associated metabolic conditions.
- Clock regulation is crucial for Nobiletin's inhibitory effect on preadipocyte maturation.
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