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.

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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