Anticancer Activity of ZnO Nanoparticles against Human Small-Cell Lung Cancer in an Orthotopic Mouse Model.
Ryosuke TaninoYoshihiro AmanoXuexia TongRong SunYukari TsubataMamoru HaradaYasuhisa FujitaTakeshi IsobePublished in: Molecular cancer therapeutics (2019)
Small-cell lung cancer, a highly malignant form of lung cancer, often responds to first-line treatments but relapses in most cases with resistance to further treatments. We tested zinc oxide (ZnO) nanoparticles against small-cell lung cancer and other cancer cell lines, in light of reported anticancer effects in vitro Because of a strong safety record, ZnO nanoparticles are frequently used in biomedical research, including in cellular imaging and drug delivery, and have been used for many years in several commercial products such as skin care agents. Strikingly, ZnO nanoparticles were genotoxic against small-cell lung cancer cells, resulting in low viability, even in cells orthotopically grafted onto mouse models. However, the nanoparticles were less cytotoxic against normal lung-derived cells and did not elicit observable adverse effects after intravenous administration. ZnO nanoparticles were also found to induce highly reactive oxygen species and DNA leakage from nuclei. This study is the first comprehensive evaluation of the anticancer effects of ZnO nanoparticles in vitro and in vivo and highlights new therapeutic opportunities against small-cell lung cancer.
Keyphrases
- small cell lung cancer
- mouse model
- room temperature
- quantum dots
- induced apoptosis
- reduced graphene oxide
- healthcare
- endothelial cells
- brain metastases
- walled carbon nanotubes
- visible light
- cell cycle arrest
- high resolution
- stem cells
- signaling pathway
- low dose
- cell death
- chronic pain
- cell proliferation
- ionic liquid
- papillary thyroid
- pluripotent stem cells
- circulating tumor cells