The institute
FEMTO's news

You are here

Understanding the cytotoxicity of metallic nanoparticles

A recent study published in the journal "Chemical Science" and involving FEMTO-ST gives new insights into the understanding of the mechanisms of DNA alteration in cells by metallic nanoparticles.

Oxidative stress is one of the processes often incriminated in the genesis of many diseases, such as cancers. This oxidative stress is characterized by the production in cells of oxidizing species called ROS (reactive oxygen species), which can alter DNA. The production of ROS results from electron transfer processes involving metal cations. Fortunately, most cells have effective self-defense systems that prevent the formation of ROS. Molecules from the catechol family (aromatic molecules with at least two adjacent alcohol functions) act as ROS defense agents. These well-known electron exchange mechanisms are the perfect explanation for the toxicity of metal oxide nanoparticles. However, the mechanism of action of metal oxide nanoparticles is still unknown, even though they are more toxic than their oxide-based alter-ego or the corresponding metal cations in solution.

Researchers from the Néel Institute (CNRS/University Grenoble Alpes), the FEMTO-ST Institute (CNRS/University Bourgogne-Franche-Comté), the Institute of Materials Science in Madrid (Spain) and the Institute of Materials Science in Trieste (Italy) have discovered sources of cytoxicity for metallic nanoparticles.

To understand and model the role of the surface of nanoparticles, the researchers focused their study on a low-energy (particularly stable) surface of copper interacting with a molecular layer under ultra-high vacuum. Observations of individual molecules, using scanning tunneling microscopy, high-resolution analysis of the composition of each molecule, and ab initio calculations, revealed how the molecules are gradually transformed. The main result shows that the copper surface is the site of a very particular oxidation-reduction reaction, known as "intramolecular": the catechol molecules see their alcohol functions oxidized while other functions are reduced, thanks to a transfer of electrons between the substituents of the same molecule. This transformation is governed by the alignment of the electronic levels of the copper surface and the molecules, the copper surface "forcing" the molecule to transform itself to allow its adsorption.

This study proposes a mechanism of action of the surfaces of metallic nanoparticles to transform cell defense agents into ROS-type agents that can alter cellular DNA and thus cause cancer. The metal plays a catalytic role here, i.e. a minute quantity of copper surface can oxidize a very large quantity of catechol-type molecules. The study illustrates the power of the paraphernalia of surface science techniques to uncover the evolution of a priori very complex systems, including living systems. The work will be extended to validate in a biological environment the mechanism of action of the metallic nanoparticles discovered and to open up new perspectives in the understanding of the mechanisms of DNA alteration.

Online article

DOI : 10.1039/D0SC04883F

 Contact : Frédéric Chérioux

  • FEMTO-ST is closed

    Within the framework of Coronavirus (COVID-19) epidemic and  following the measures announced by the President of the French Republic,  all the premises of our laboratory in Besançon, Belfort and Montbéliard cities are closed to the public from this Tuesday March 17.

    Read more
  • I-PhD Innovation Competition: 2 winners from FEMTO-ST

    Maya Geagea (ANIO-PAC project: micro fuel cells), and Gaël Matten (VIBISCUS project: noise reduction system), special jury prize, are winners of the 2019 innovation awards.

    Read more
  • Sarah Benchabane winner of an ERC Consolidator grant 2019

    CNRS Research Fellow at the FEMTO-ST Institute, Sarah is awarded with a prestigious €2M European Research Council (ERC) grant for her  project : Nanophonics for Quantum Information Processing.

    Read more
  • Stardust Odyssey : A new world record !

    Discover the smallest volume character ever animated in stop-motion (frame by frame) through a short film made thanks to FEMTO-ST's high-tech robotic equipments and researchers.

    Read more
  • Final report of the DATAZERO project

    A national project to design and manage medium power data centers powered exclusively by renewable energy sources

    Read more
  • Vladimir GAUTHIER is national winner of the PEPITE competition for young creators of innovative companies

    Entrepreneurial PhD at FEMTO-ST, Vladimir Gauthier is developing a company project on the microrobotic sorting of biological cells, which has received national price !

    Read more
  • Two young regional researchers awarded by the CNRS bronze medal

    Aude Bolopion (microrobotics) and Nadia Yousfi-Steiner (electrical engineering), two young researchers from FEMTO-ST Institute, were awarded by the CNRS bronze medal for their contribution to the advancement of French research.

    Read more
  • Secure and certify time

    Inauguration on Tuesday, July 9 of a joint laboratory between FEMTO-ST and Gorgy Timing to develop secure and certified time and frequency broadcasting systems for wireless and computer networks.

    Read more
  • Micro-soufflage de verre pour la réalisation de composants optiques miniatures

    A team of researchers from FEMTO-ST has developed miniature conical lenses by revisiting glass-blowing techniques practiced since Roman times.

    Read more
  • Detecting problems of the anti-bleeding system of patients in 60 minutes

    Researchers from FEMTO-ST institue and the Universitiy of Geneva  have developed an innovative device that investigates a patient’s platelet capacity in near real-life conditions so that bleeding can be stopped.

    Read more

Pages