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Antiproliferative and apoptotic effects of xanthohumol in cholangiocarcinoma
Daniel Walden1, Selvi Kunnimalaiyaan1, Kevin Sokolowski1
1Division of Surgical Oncology, Department of Surgery, MCW Cancer Center, Translational and Biomedical Research Center, Medical College of Wisconsin, Milwaukee, WI 53226, USA.
Abstract:
Cholangiocarcinoma remains the second most prevalent hepatic neoplasm in the United States with a 5-year survival rate of less than 10%. Currently, no systemic therapy has demonstrated efficacy. Therefore, an urgent need for the identification of molecularly targeted compound(s) remains. The Notch signaling pathway has been shown to be dysregulated in cholangiocarcinoma, exhibiting hyperactivity while also possibly mediating chemotherapeutic resistance. We analyzed the effects of xanthohumol, a prenylated chalcone, on cholangiocarcinoma proliferation utilizing human cholangiocarcinoma cell lines CCLP1, SG-231 and CC-SW-1 while gaining insight into the associated mechanism. Xanthohumol potently reduced cellular proliferation, colony formation, and cell confluency in all three cell lines. Xanthohumol induced cell cycle arrest as well as apoptosis through the reduction of cell cycle regulatory proteins as well as an increase in pro-apoptotic markers (cleaved poly ADP ribose polymerase, cleaved caspase-3) and a decrease in anti-apoptotic markers (X-linked inhibitor of apoptosis and survivin). At the molecular level, xanthohumol reduced Notch1 and AKT expression in a step-wise and time-dependent fashion, with Notch1 reductions preceding AKT. Additionally, xanthohumol reduced cholangiocarcinoma growth in both CCLP-1 and SG-231 derived mice xenografts. In summary, we show that xanthohumol significantly reduced cholangiocarcinoma growth through the Notch1/AKT signaling axis. Furthermore, known pharmacokinetics and bioavailability of XN supports continued development of treatment for cholangiocarcinoma.
Insights
Xanthohumol significantly inhibits cholangiocarcinoma growth by targeting the Notch1/AKT pathway. This natural compound reduces cell proliferation and induces apoptosis, offering a promising avenue for treating this aggressive liver cancer.
Area of Science:
- Hepatobiliary cancers
- Molecular oncology
- Cancer signaling pathways
Background:
- Cholangiocarcinoma (CCA) is a prevalent liver cancer with poor prognosis and limited treatment options.
- The Notch signaling pathway is implicated in CCA development and chemoresistance.
- Targeted therapies are urgently needed for cholangiocarcinoma.
Purpose of the Study:
- To investigate the anti-cancer effects of xanthohumol (XN) on cholangiocarcinoma.
- To elucidate the molecular mechanisms underlying xanthohumol's action.
- To evaluate xanthohumol's efficacy in preclinical cholangiocarcinoma models.
Main Methods:
- Treatment of human cholangiocarcinoma cell lines (CCLP1, SG-231, CC-SW-1) with xanthohumol.
- Assessment of cell proliferation, colony formation, and cell cycle.
- Analysis of apoptosis markers and key signaling proteins (Notch1, AKT).
- Evaluation of xanthohumol in mouse xenograft models.
Main Results:
- Xanthohumol significantly reduced cholangiocarcinoma cell proliferation, colony formation, and confluency.
- Xanthohumol induced cell cycle arrest and apoptosis by modulating pro- and anti-apoptotic markers.
- Xanthohumol decreased Notch1 and AKT expression, suggesting pathway inhibition.
- Xanthohumol suppressed tumor growth in cholangiocarcinoma xenografts.
Conclusions:
- Xanthohumol demonstrates potent anti-cancer activity against cholangiocarcinoma in vitro and in vivo.
- The Notch1/AKT signaling axis is a key target for xanthohumol's therapeutic effects.
- Xanthohumol's favorable pharmacokinetic profile supports its further development for cholangiocarcinoma treatment.
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