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Published on: June 7, 2022
Hop derived flavonoid xanthohumol inhibits endothelial cell functions via AMPK activation
Cristina Gallo1, Katiuscia Dallaglio1, Barbara Bassani2
1IRCCS "Istituto in Tecnologie Avanzate e Modelli Assistenziali in Oncologia" Arcispedale S. Maria Nuova, Reggio Emilia, Italy.
Abstract:
Angiogenesis, a process characterized by the formation of new blood vessels from pre-existing ones, is a crucial step in tumor growth and dissemination. Recently, increased attention has been addressed to the ability of flavonoids to prevent cancer by suppressing angiogenesis, strategy that we named "angioprevention". Several natural compounds exert their anti-tumor properties by activating 5' adenosine monophosphate-activated protein kinase (AMPK), a key regulator of metabolism in cancer cells. Drugs with angiopreventive activities, in particular metformin, regulate AMPK in endothelial cells. Here we investigated the involvement of AMPK in the anti-angiogenic effects of xanthohumol (XN), the major prenylated flavonoid of the hop plant, and mechanisms of action. The anti-angiogenic activity of XN was more potent than epigallocatechin-3-gallate (EGCG). Treatment of endothelial cells with XN led to increased AMPK phosphorylation and activity. Functional studies using biochemical approaches confirmed that AMPK mediates XN anti-angiogenic activity. AMPK activation by XN was mediated by CAMMKβ, but not LKB1. Analysis of the downstream mechanisms showed that XN-induced AMPK activation reduced nitric oxide (NO) levels in endothelial cells by decreasing eNOS phosphorylation. Finally, AKT pathway was inactivated by XN as part of its anti-angiogenic activity, but independently from AMPK, suggesting that these two signaling pathways proceed autonomously. Our study dissects the molecular mechanism by which XN exerts its potent anti-angiogenic activity, pointing out AMPK as a crucial signal transducer.
Insights
Xanthohumol (XN), a hop flavonoid, demonstrates potent anti-angiogenic effects by activating AMPK signaling in endothelial cells. This natural compound offers a promising strategy for cancer angioprevention.
Area of Science:
- Molecular Biology
- Cancer Research
- Pharmacology
Background:
- Angiogenesis is vital for tumor growth and metastasis.
- Flavonoids, like xanthohumol (XN), show potential for cancer prevention via 'angioprevention'.
- AMPK activation is a key mechanism for anti-tumor effects of natural compounds.
Purpose of the Study:
- To investigate the role of AMPK in the anti-angiogenic effects of xanthohumol (XN).
- To elucidate the molecular mechanisms underlying XN's angiopreventive activity.
Main Methods:
- Treatment of endothelial cells with XN.
- Measurement of AMPK phosphorylation and activity.
- Biochemical assays to confirm AMPK mediation.
- Analysis of downstream signaling pathways (CAMKKβ, LKB1, eNOS, AKT).
Main Results:
- XN exhibited stronger anti-angiogenic activity than EGCG.
- XN treatment increased AMPK phosphorylation and activity in endothelial cells.
- AMPK activation by XN was mediated by CAMKKβ, not LKB1.
- XN reduced nitric oxide (NO) levels by decreasing eNOS phosphorylation.
- XN inactivated the AKT pathway independently of AMPK.
Conclusions:
- AMPK is a crucial signal transducer for XN's potent anti-angiogenic activity.
- XN represents a promising candidate for angioprevention strategies in cancer therapy.
- XN acts through distinct, autonomous pathways involving AMPK and AKT.
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