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February 12, 2026Perspectives on Integrative Medicine0 citations

Phytochemical Mechanisms of Action Against Obesity and Strategies to Overcome Limitations

NTNgoc Han Le ThiSPSo Young ParkJLJuni Lee

Key Points

  • The aim is to explore how phytochemicals influence obesity through metabolic pathways and their limitations for therapeutic use.
  • Reviewed various phytochemicals including synephrine, curcumin, capsaicin, and saponins.
  • Analyzed their mechanisms of action related to lipid metabolism and adipogenesis.
  • Discussed challenges such as bioavailability and toxicity in clinical applications.
  • Synephrine enhances fat oxidation and inhibits adipogenesis through specific signaling pathways.
  • Curcumin promotes fatty acid oxidation and influences insulin resistance.
  • Capsaicin activates mechanisms that induce browning of adipose tissue and boosts lipid catabolism.
  • Saponins modulate fat absorption and adipogenesis, aiding in obesity suppression.

Abstract

Phytochemicals - natural compounds such as synephrine, curcumin, capsaicin, and saponins - have gained significant attention for their potential anti-obesity effects through modulation of lipid metabolism and adipogenesis. Synephrine derived from Citrus aurantium exerts its anti-obesity effects by inhibiting adipogenesis (3T3-L1) and enhances fat oxidation through the adenosine monophosphate-activated protein kinase - forkhead box protein O1 signaling pathway. Similarly, curcumin, which is a polyphenolic compound from Curcuma longa, promotes fatty acid oxidation, inhibits preadipocyte differentiation, and modulates insulin resistance and hyperlipidemia. Capsaicin from Capsicum species, induces the browning of adipose tissue and enhances fat oxidation by activating channels, increasing sirtuin-1 expression, and promoting lipid catabolism. Saponins regulate fat absorption by inhibiting pancreatic lipase and modulate adipogenesis through the adenosine monophosphate-activated protein kinase signaling pathway, further contributing to the suppression of obesity. However, the clinical application of these phytochemicals is often limited by factors such as bioavailability, solubility, and potential toxicity. In this narrative review, the mechanisms by which these compounds affect metabolic pathways related to adipogenesis and lipid metabolism are discussed, as well as the challenges faced in their therapeutic use and potential strategies to overcome these limitations.

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Cite This Study

Thi et al. (2026) studied this question.

synapsesocial.com/papers/698d6e5a5be6419ac0d54069https://doi.org/10.56986/pim.2026.02.003
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