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Novel circadian clock activators display anti-obesity efficacy via suppression of adipocyte development and
Xuekai Xiong1, Jemima Pangemanan1, Tali Kiperman1
1Department of Diabetes Complications & Metabolism, Arthur Riggs Diabetes & Metabolism Research Institute, Beckman Research Institute of City of Hope, Duarte, CA 91010.
Abstract:
The circadian clock exerts temporal coordination of metabolic processes to maintain homeostasis, and its disruption predisposes to the development of obesity and insulin resistance. Despite the established genetic basis of clock modulation in adipocyte development, whether it can be targeted for anti-obesity interventions remains to be explored. Here we report the novel actions of clock-activating molecules, chlorhexidine and a new derivative CM002, on inhibiting adipocyte development and hypertrophy that results in anti-obesity efficacy in vivo. Both chlorhexidine and CM002 were sufficient to activate clock in adipocytes with induction of core clock components and shortening of clock period length. Consistent with their clock-activating properties, these compounds suppressed the distinct lineage commitment and terminal differentiation stages of adipogenic precursor cells mediated via activation of the Wnt signaling pathway. Furthermore, CM002 attenuated lipid storage and adipocyte hypertrophy by suppressing the lipogenic and adipogenic program in a clock-dependent manner. Most importantly, CM002 administration in mice with diet-induced obesity was sufficient to induce clock activation in adipose depots, leading to robust suppression of adipogenic factors and lipogenic enzymes with marked effect on reducing fat mass and promoting insulin sensitivity. Collectively, our findings uncovered the anti-adipogenic properties of novel small molecule clock activators with demonstrated anti-obesity efficacy. These compounds provide novel chemical probes to dissect clock function in metabolic regulations with translational potential toward development of first-in-class clock-targeting drugs for anti-obesity therapy.
Insights
Novel clock activators, chlorhexidine and CM002, inhibit adipocyte development and reduce obesity. CM002 shows anti-obesity effects in mice by activating the circadian clock in adipose tissue, improving insulin sensitivity.
Area of Science:
- Metabolic regulation
- Chronobiology
- Adipogenesis
Background:
- Circadian clock disruption is linked to obesity and insulin resistance.
- Targeting the circadian clock for anti-obesity interventions is an emerging area.
- The role of clock modulation in adipocyte development requires further exploration.
Purpose of the Study:
- To investigate the anti-adipogenic and anti-obesity effects of clock-activating molecules.
- To identify novel small molecules that can modulate adipocyte development.
- To explore the therapeutic potential of clock activators in obesity.
Main Methods:
- Treatment of adipocytes and mice with chlorhexidine and CM002.
- Assessment of clock gene expression and period length.
- Analysis of adipogenesis, lipid storage, and Wnt signaling pathway.
- Evaluation of anti-obesity efficacy and insulin sensitivity in a diet-induced obesity mouse model.
Main Results:
- Chlorhexidine and CM002 activated the circadian clock in adipocytes.
- These compounds suppressed adipocyte lineage commitment, differentiation, and hypertrophy.
- CM002 attenuated lipid accumulation and adipocyte size in a clock-dependent manner.
- CM002 administration reduced fat mass and improved insulin sensitivity in obese mice.
Conclusions:
- Novel small molecule clock activators, chlorhexidine and CM002, possess anti-adipogenic properties.
- These compounds demonstrate efficacy in reducing obesity and improving metabolic health.
- Clock-targeting molecules offer a promising therapeutic strategy for obesity treatment.
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