Related Experiment Video
Updated: Feb 9, 2026

Neutron Spin Echo Spectroscopy as a Unique Probe for Lipid Membrane Dynamics and Membrane-Protein Interactions
Published on: May 27, 2021
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.
Abstract:
One of the greatest merit of the use of radiopeptides in oncology is their selectivity which, however, brings about the drawback that each radiopeptide is specific for a given tumor type. To overcome this problem the direction currently taken in drug design is that of radiolabelling peptide hormones (or their analogues), relying on their intrinsic ability to bind to specific receptors in precise areas of the human body, at the cost, however, of a poor selectivity against healthy cells. We present here an extensive Molecular Dynamics study of a promising alternative inspired by the mechanism through which antimicrobial peptides interact with the negatively charged bacterial membranes. Appropriately modifying the human antimicrobial peptide, LL-37, we designed a functionalized radionuclide carrier capable of binding more strongly to the negatively charged (model) tumor membranes than to the neutral healthy ones. The mechanism behind this behaviour relies on the fact that at the slight acidic pH surrounding tumor tissues the histidines belonging to the peptide get protonated thus making it positively charged. We have investigated by an extended numerical study the way in which this artificial peptide interacts with models of tumor and healthy cell membranes, proving by Potential Mean Force calculations that the affinity of the peptide to model tumor membranes is significantly larger than to healthy ones. These features (high affinity and generic tumor selectivity) recommend antimicrobial derived customized carriers as promising theranostic constructs in cancer diagnostic and therapy.
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.
More Related Videos
07:44Studying the Effects of Tumor-Secreted Paracrine Ligands on Macrophage Activation using Co-Culture with Permeable Membrane Supports
Published on: November 28, 2019
09:19In Vitro Microfluidic Disease Model to Study Whole Blood-Endothelial Interactions and Blood Clot Dynamics in Real-Time
Published on: May 24, 2020
Related Concept Videos
Bioavailability Study Design: Healthy Subjects Versus Patients
Molecular Models
Factorial Design
Study Designs in Epidemiology
Observational studies are those where the researcher does not intervene but rather observes natural variations. They include cross-sectional, cohort, and...
Study Design in Statistics
Does aspirin reduce the risk of heart attacks? Is one brand of fertilizer more effective at growing roses than another? Is fatigue as dangerous to a driver as the influence of alcohol? Questions like these are answered using randomized experiments with proper...
Group Design