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April 12, 2026Journal of Agricultural and Food Chemistry3 citations

Preventive Effect of Caffeic Acid Phenethyl Ester, an Active Component of Propolis, against TNF-α-Induced Endothelial Dysfunction through the β2-Adrenoceptor-Mediated eNOS/NO Signal Pathway

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SLSun‐Ho LeeSLSun‐Ho LeeABAnh Thi Ngoc Bui

Key Points

  • The central aim is to investigate the mechanisms by which caffeic acid phenethyl ester (CAPE) affects endothelial cells during TNF-α-induced dysfunction.
  • Examined the effects of CAPE on eNOS phosphorylation in endothelial cells.
  • Used in silico docking to study the interaction of CAPE with the β2-adrenergic receptor.
  • Conducted ex vivo studies on aortic rings to validate findings.
  • Measured NO production and assessed signaling pathways involved, including Akt, PKA, and ERK.
  • CAPE induces significant eNOS phosphorylation and NO production in TNF-α-stimulated endothelial cells.
  • Activation of β2AR leads to enhanced NO production via the Gαs/cAMP/Epac axis.
  • CAPE suppresses inflammatory cytokine activation through NO-dependent mechanisms.
  • Ex vivo studies using aortic rings confirmed the ability of CAPE to stimulate eNOS activation.

Abstract

Caffeic acid phenethyl ester (CAPE), a dietary phenolic compound derived from propolis, exhibits cardiovascular and anti-inflammatory effects; however, its mechanisms in endothelial cells remain unclear. In this study, we demonstrated that CAPE induces eNOS phosphorylation and NO production in TNF-α-stimulated endothelial cells. Mechanistically, CAPE-induced NO production is mediated by Akt, PKA, and ERK signaling pathways. In silico docking and pharmacological inhibition confirmed that CAPE directly engages the β2-adrenergic receptor (β2AR) to activate the Gαs/cAMP/Epac axis. Moreover, CAPE suppresses NF-κB activation and inflammatory cytokine expression through NO-dependent mechanisms. Ex vivo studies using aortic rings further validated that CAPE stimulates eNOS activation and NO production via β2AR/Gαs signaling. Collectively, these findings indicate that CAPE enhances endothelial function and exerts anti-inflammatory effects through the β2AR-mediated signaling, highlighting its potential as a therapeutic candidate for endothelial dysfunction and inflammation-related cardiovascular diseases.

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Cite This Study

Lee et al. (2026) studied this question.

synapsesocial.com/papers/69db380f4fe01fead37c633bhttps://doi.org/10.1021/acs.jafc.5c15918
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