Dihydroartemisinin induces autophagy-dependent death in human tongue squamous cell carcinoma cells through DNA double-strand break-mediated oxidative stress

Oncotarget. 2017 Jul 11;8(28):45981-45993. doi: 10.18632/oncotarget.17520.

Abstract

Dihydroartemisinin is an effective antimalarial agent with multiple biological activities. In the present investigation, we elucidated its therapeutic potential and working mechanism on human tongue squamous cell carcinoma (TSCC). It was demonstrated that dihydroartemisinin could significantly inhibit cell growth in a dose- and time-dependent manner by the Cell Counting Kit-8 and colony formation assay in vitro. Meanwhile, autophagy was promoted in the Cal-27 cells treated by dihydroartemisinin, evidenced by increased LC3B-II level, increased autophagosome formation, and increased Beclin-1 level compared to dihydroartemisinin-untreated cells. Importantly, dihydroartemisinin caused DNA double-strand break with simultaneously increased γH2AX foci and oxidative stress; this inhibited the nuclear localization of phosphorylated signal transducer and activator of transcription 3 (p-STAT3), finally leading to autophagic cell death. Furthermore, the antitumor effect of dihydroartemisinin-monotherapy was confirmed with a mouse xenograft model, and no kidney injury associated with toxic effect was observed after intraperitoneal injection with dihydroartemisinin for 3 weeks in vivo. In the present study, it was revealed that dihydroartemisinin-induced DNA double-strand break promoted oxidative stress, which decreased p-STAT3 (Tyr705) nuclear localization, and successively increased autophagic cell death in the Cal-27 cells. Thus, dihydroartemisinin alone may represent an effective and safe therapeutic agent for human TSCC.

Keywords: DNA double-strand break; STAT3; autophagy; dihydroartemisinin; human tongue squamous cell carcinoma.

MeSH terms

  • Animals
  • Artemisinins / pharmacology*
  • Autophagy / drug effects*
  • Carcinoma, Squamous Cell / drug therapy
  • Carcinoma, Squamous Cell / genetics*
  • Carcinoma, Squamous Cell / metabolism*
  • Carcinoma, Squamous Cell / pathology
  • Cell Line, Tumor
  • Cell Proliferation / drug effects
  • DNA Breaks, Double-Stranded / drug effects*
  • Disease Models, Animal
  • Humans
  • Models, Biological
  • Oxidative Stress / drug effects*
  • STAT3 Transcription Factor / metabolism
  • Tongue Neoplasms / drug therapy
  • Tongue Neoplasms / genetics*
  • Tongue Neoplasms / metabolism*
  • Tongue Neoplasms / pathology
  • Tumor Burden / drug effects
  • Xenograft Model Antitumor Assays

Substances

  • Artemisinins
  • STAT3 Transcription Factor
  • artenimol