Modular branched neurotensin peptides for tumor target tracing and receptor-mediated therapy: a proof-of-concept

C Falciani1, B Lelli, J Brunetti

  • 1Department of Molecular Biology, University of Siena, Siena, Italy. chiarafalciani@unisi.it

Insights

Oligo-branched peptides selectively target and kill cancer cells by utilizing neurotensin receptors. This approach shows promise for developing targeted cancer therapies, improving drug efficacy, and reducing side effects.

Area of Science:

  • Oncology
  • Medicinal Chemistry
  • Molecular Biology

Background:

  • Cancer cells often overexpress specific peptide receptors.
  • Targeting these receptors offers a strategy for selective cancer therapy.

Purpose of the Study:

  • To evaluate oligo-branched peptides for targeting and killing cancer cells.
  • To demonstrate the versatility of a conserved receptor-targeting core by functional moiety exchange.

Main Methods:

  • Synthesis of tetra-branched peptides with neurotensin (NT) sequence.
  • Conjugation of fluorophores for tissue binding studies.
  • Conjugation of cytotoxic drugs (MTX, 5-FdU) for cytotoxicity assays.
  • In vitro cell line studies (HT-29, PANC-1, PC-3) and in vivo xenograft mouse models.

Main Results:

  • Neurotensin receptors validated as promising tumor biomarkers.
  • Branched NT peptides conjugated with MTX and 5-FdU showed high activity against colon and pancreas cancer cell lines.
  • In vivo studies demonstrated a 50% reduction in tumor growth with branched NT-5-FdU compared to the free drug.

Conclusions:

  • Oligo-branched peptides are effective for selective tumor cell targeting and killing.
  • The modular design allows for optimization of cancer targeting agents.
  • Branched peptides represent valuable tools for developing targeted cancer therapies.