Iron-Chelation Treatment by Novel Thiosemicarbazone Targets Major Signaling Pathways in Neuroblastoma

Int J Mol Sci. 2021 Dec 29;23(1):376. doi: 10.3390/ijms23010376.

Abstract

Despite constant advances in the field of pediatric oncology, the survival rate of high-risk neuroblastoma patients remains poor. The molecular and genetic features of neuroblastoma, such as MYCN amplification and stemness status, have established themselves not only as potent prognostic and predictive factors but also as intriguing targets for personalized therapy. Novel thiosemicarbazones target both total level and activity of a number of proteins involved in some of the most important signaling pathways in neuroblastoma. In this study, we found that di-2-pyridylketone 4-cyclohexyl-4-methyl-3-thiosemicarbazone (DpC) potently decreases N-MYC in MYCN-amplified and c-MYC in MYCN-nonamplified neuroblastoma cell lines. Furthermore, DpC succeeded in downregulating total EGFR and phosphorylation of its most prominent tyrosine residues through the involvement of NDRG1, a positive prognostic marker in neuroblastoma, which was markedly upregulated after thiosemicarbazone treatment. These findings could provide useful knowledge for the treatment of MYC-driven neuroblastomas that are unresponsive to conventional therapies.

Keywords: DpC; EGFR; MYC; NDRG1; lipid droplet; neuroblastoma; thiosemicarbazone.

MeSH terms

  • Cell Cycle Proteins / metabolism
  • Cell Line, Tumor
  • Cell Shape / drug effects
  • Down-Regulation / drug effects
  • ErbB Receptors / metabolism
  • Gene Amplification / drug effects
  • Gene Silencing / drug effects
  • Humans
  • Intracellular Signaling Peptides and Proteins / metabolism
  • Iron Chelating Agents / pharmacology*
  • Models, Biological
  • N-Myc Proto-Oncogene Protein / metabolism
  • Neuroblastoma / metabolism*
  • Neuroblastoma / pathology
  • Phosphorylation / drug effects
  • Proto-Oncogene Proteins c-akt / metabolism
  • Pyridines / pharmacology*
  • Signal Transduction*
  • Stress, Physiological / drug effects
  • Thiosemicarbazones / pharmacology*
  • Up-Regulation / drug effects

Substances

  • Cell Cycle Proteins
  • Intracellular Signaling Peptides and Proteins
  • Iron Chelating Agents
  • N-Myc Proto-Oncogene Protein
  • N-myc downstream-regulated gene 1 protein
  • Pyridines
  • Thiosemicarbazones
  • di-2-pyridylketone 4-cyclohexyl-4-methyl-3-thiosemicarbazone
  • ErbB Receptors
  • Proto-Oncogene Proteins c-akt