Designing effective anticancer-radiopeptides. A Molecular Dynamics study of their interaction with model tumor and

E Capozzi1, S Aureli1, V Minicozzi1

  • 1University of Rome Tor Vergata and INFN, Via della Ricerca Scientifica 1, 00133 Roma, Italy.

Insights

Researchers developed a novel radionuclide carrier inspired by antimicrobial peptides. This carrier selectively targets tumor membranes over healthy cells, offering a promising new approach for cancer theranostics.

Area of Science:

  • Oncology
  • Biophysics
  • Molecular Biology

Background:

  • Radiopeptides offer tumor selectivity but are specific to tumor types.
  • Current radiolabeled peptide hormones lack selectivity for healthy cells.
  • Antimicrobial peptides (AMPs) interact with bacterial membranes via charge-based mechanisms.

Purpose of the Study:

  • To design and evaluate a novel, broadly tumor-selective radionuclide carrier.
  • To investigate the interaction mechanism of a modified AMP with tumor and healthy cell membranes.
  • To assess the potential of AMP-derived constructs for cancer theranostics.

Main Methods:

  • Extensive Molecular Dynamics (MD) simulations.
  • Design of a functionalized antimicrobial peptide (LL-37 analogue).
  • Potential Mean Force (PMF) calculations to quantify binding affinity.

Main Results:

  • The modified peptide exhibits stronger binding to negatively charged tumor membrane models than neutral healthy cell membrane models.
  • Protonation of histidine residues at acidic tumor pH enhances peptide-host membrane interaction.
  • PMF calculations confirm significantly higher affinity for model tumor membranes.

Conclusions:

  • Antimicrobial peptide-derived carriers demonstrate high affinity and generic tumor selectivity.
  • These constructs show promise as versatile theranostic agents for cancer.
  • The charge-based interaction mechanism offers a new strategy for targeted cancer therapy and diagnostics.

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