Iron oxide nanoparticles induce ferroptosis via the autophagic pathway by synergistic bundling with paclitaxel

Qi Nie1, Wenqing Chen1, Tianmei Zhang1

  • 1Guangxi Clinical Medical Research Center for Neurological Diseases, Affiliated Hospital of Guilin Medical University, Guilin, Guangxi 541001, P.R. China.

Molecular Medicine Reports
|September 8, 2023
PubMed

Insights

Iron oxide nanoparticles loaded with paclitaxel (IONP@PTX) synergistically induce cancer cell death via ferroptosis. This nanotherapy enhances iron ion concentration, reactive oxygen species, and lipid peroxidation, primarily through the autophagic pathway.

Area of Science:

  • Biomedical Engineering
  • Nanomedicine
  • Cancer Therapy

Background:

  • Ferroptosis, a form of regulated cell death, is a promising target for cancer therapy.
  • Targeted nanotherapeutics offer potential for non-invasive cancer treatment.
  • The mechanism of paclitaxel-loaded iron oxide nanoparticles (IONP@PTX) in various tumors requires elucidation.

Purpose of the Study:

  • To prepare IONP@PTX for targeted cancer therapy.
  • To explore the mechanisms of IONP@PTX in inhibiting small cell lung cancer (NCI-H446) and glioblastoma (M059K) cells.
  • To investigate the role of autophagy in IONP@PTX-induced ferroptosis.

Main Methods:

  • Cell viability assays (CCK-8) and combination index evaluation.
  • Measurement of intracellular reactive oxygen species (ROS) and lipid peroxidation.
  • Western blotting to assess autophagy- and ferroptosis-related protein expression (Beclin 1, LC3, p62, HDAC6, mTORC1).

Main Results:

  • IONP@PTX demonstrated synergistic effects on cell viability compared to monotherapies or physical mixtures.
  • IONP@PTX significantly increased intracellular iron, ROS, and lipid peroxidation levels.
  • IONP@PTX modulated autophagy-related proteins (Beclin 1, LC3-II/I, p62) and HDAC6 expression, with rapamycin enhancing these effects.

Conclusions:

  • IONP@PTX effectively induces synergistic ferroptosis in cancer cells.
  • The observed ferroptosis is mediated through the modulation of the autophagic pathway.
  • IONP@PTX represents a promising nanotherapeutic strategy for targeted cancer treatment.

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