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April 29, 2026Biomedicine & Pharmacotherapy0 citationsOpen Access

Preclinical demonstration of the efficacy and mechanisms of antitumor activity of dihydroartemisinin in cholangiocarcinoma xenograft: Induction of autophagy and reprogramming of metabolism

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STSuyanee ThongchotYKYingpinyapat KittiratBPBundit Promraksa

Key Points

  • The study aims to evaluate the efficacy and mechanisms of dihydroartemisinin (DHA) against cholangiocarcinoma.
  • Established cholangiocarcinoma xenografts in immunodeficient mice
  • Administered oral DHA at 50 mg/kg
  • Monitored tumor volume and body weight
  • Conducted histopathological and immunohistochemical analyses
  • Performed metabolomic profiling to assess treatment response
  • DHA treatment significantly reduced tumor volume in xenograft models
  • DHA induced apoptosis and activated the autophagy pathway
  • Metabolomic analysis showed alterations in key metabolites like pyridoxine and succinate
  • No significant weight loss or systemic toxicity observed in treated mice

Abstract

Cholangiocarcinoma (CCA) is a highly aggressive malignancy of the biliary tract with limited therapeutic options and poor prognosis. Dihydroartemisinin (DHA), a semi-synthetic derivative of artemisinin, has shown promising anticancer activity across various tumor types. In this study, we evaluated the anti-tumor efficacy and metabolic impact of DHA in a preclinical xenograft model of CCA. Human CCA cells were subcutaneously implanted into immunodeficient mice to establish tumor xenografts, which were then orally treated with various concentrations of DHA. Tumor volume and body weight were monitored throughout the treatment period. No signs of systemic toxicity or significant weight loss were noted in our treated mice. Our results demonstrated that DHA treatment at 50 mg/kg significantly reduced tumor volume compared to untreated controls. Histopathological analysis, immunohistochemistry, molecular assays, and metabolomic profiling were performed to assess treatment response and underlying mechanisms. Mechanistically, DHA inhibited CCA cell proliferation by inducing apoptosis and activating the autophagy pathway, as confirmed by increased apoptotic markers and autophagy-related proteins in tumor tissues. In addition, metabolomic analysis revealed that DHA significantly reduced the levels of key metabolites, including pyridoxine, D -threitol, and succinate, compared to control mice, indicating disruption of metabolic pathways critical for tumor growth and survival. These findings highlight the dual anti-cancer mechanisms of DHA, combining cell death induction and metabolic interference, and support further clinical investigation of DHA as a novel therapeutic agent for CCA. • DHA (50 mg/kg) suppresses CCA growth and metastasis in xenograft models. • DHA induces apoptosis and pro-death autophagy in tumors. • DHA inhibits NF-κB/mTOR signaling in vivo . • DHA reprograms tumor metabolism in CCA. • Metabolic disruption links autophagy activation and cell death.

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Cite This Study

Thongchot et al. (2026) studied this question.

synapsesocial.com/papers/69f154c0879cb923c4944e9ehttps://doi.org/10.1016/j.biopha.2026.119438
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