The institute
FEMTO's news

You are here

Launch of the European i-Nano-T project

The Bourgogne Franche-Comté region is banking on regional scientific and industrial synergy to drive innovation in nanomedicine.

The i-NanoT (Innovations in Theranostic Nanovectors) project, certified and funded under the Burgundy-Franche-Comté ERDF-ESF+ program for the period 2025-2028, is set to be officially launched on December 2, 2025, in Dijon on the campus of the University of Burgundy Europe. This large-scale project, with a total budget of €18.4 million (including €15.6 million in ERDF funding), represents a major initiative for the development of nanomedicine in the region.

Scientific context and challenges

Nanomedicine represents a decisive step forward for personalized medicine by exploiting the unique properties of nanometric structures to improve the diagnosis and treatment of diseases. Theranostic nanovectors, which are at the heart of the i-NanoT project, represent a major innovation by enabling the specific targeting of pathological cells, the controlled administration of active ingredients, and real-time monitoring of therapeutic efficacy. These approaches are particularly relevant to the challenges posed by cancers, inflammatory and infectious diseases, where precision treatment is crucial to maximize efficacy while minimizing side effects.

The consortium and strategic contributions

The consortium brings together the driving forces of academic research, with the participation of ICB, ICMUB, FEMTO-ST, Chrono-environnement, and UMR Right. Added to this are industrial partners committed to therapeutic innovation: VIVEXIA, Delpharm, and SON. The project also involves renowned healthcare institutions (CGFL, CTM Dijon Inserm) and technology transfer players (SAYENS and Santenov) to ensure an integrated approach from research to clinical application.

FEMTO-ST makes an essential contribution to the i-NanoT project by addressing one of the major challenges of drug nanovectorization: the structural and functional characterization of nanovectors. Through the Nano2BIO team in the MN2S department, the institute is mobilizing its expertise to explore the targeting and stealth properties of nanovectors by developing specific biointerfaces for targeted pathologies on biochips and sensors. FEMTO-ST deploys cutting-edge biophysical instrumentation and applies its expertise in surface and interface physicochemistry. These resources enable the qualification of biomolecular interactions and the investigation of structures at the nanometric scale. This approach positions the institute as a key player in optimizing the functional properties of these innovative systems.

Technological challenges and prospects

The project addresses several major scientific and technological obstacles, including the standardization of synthesis processes, the detailed characterization of the physicochemical properties of nanovectors, and the transition to industrial scale through the implementation of “kilo-lab” procedures. The aim is to develop a comprehensive platform dedicated to theranostic nanovectors, from design to preclinical validation, ensuring reproducibility and pharmaceutical quality.

Following this institutional launch, work will continue according to an ambitious schedule. The scale and collaborative nature of the project illustrate the regional momentum in favor of precision medicine. The expected benefits are significant, with a 30% increase in turnover for partner companies. The project thus reinforces the region's attractiveness in the field of nanotechnology/health, positioning the Bourgogne Franche Comté region as a center of excellence in the field of innovative biotherapies.

Lien : https://www.linkedin.com/company/i-nanot/ 

From left to right : C. ELIE-CAILLE, A. AL ASSAAD, W. BOIREAU, J. DEJEU, A. ROULEAU (FEMTO-ST Team)

  • FEMTO-ST celebrates its 20th anniversary

    Surrounded by its co-supervisors and partners, the FEMTO-ST institute celebrated its 20th anniversary on Wednesday 26 June in Besançon.

    Read more
  • John Dudley appointed senior member of the institut universitaire de France

    A member of FEMTO-ST's Optics Department and professor at the University of Franche-Comté, John Dudley has been appointed to a Fundamental Chair in senior category of the Institut Universitaire de France

    Read more
  • Laser nanofabrication: nanopillars emerging from sapphire

    Femtosecond lasers are well known for their ability to cut materials with extreme precision and texture surfaces. A FEMTO-ST team has achieved a world first, opening up a new use for these lasers.

    Read more
  • Mayra Yucely Beb Caal awarded "Female Science Talents Intensive Track Champion 2024"

    A PhD student in FEMTO-ST's micro and nanorobotics team, she is one of 20 talented women from 15 countries, each making a significant contribution in their scientific field.

    Read more
  • Best paper award on BIOSEC 2024

    Raniya Ketfi, Zeina Al Masry, and Noureddine Zerhouni have been awarded the Best Paper Prize at the 17th International Joint Conference on Biomedical Engineering Systems and Technologies

    Read more
  • Two Best Paper awards at Photonics West

    Mathilde Hary and Maxime Romanet win two of the 5 awards for best oral presentations at the world's leading optics-photonics conference

    Read more
  • John Dudley awarded EPS Prize for Research into the Science of Light

    This award – jointly with Goëry Genty from Tampere University – recognizes their pioneering contributions to ultrafast nonlinear fibre optics.

    Read more
  • Michaël Gauthier, new director of FEMTO-ST

    A new team is taking over the management of the institute for a 5-year term starting in January 2024.

    Read more
  • Nadia YOUSFI STEINER awarded the Blondel 2023 medal

    This medal recognizes the decisive contributions of her work on the resilience of fuel cell and hydrogen systems

    Read more
  • Maxence Leveziel wins CNRS robotics thesis award

    His work has led to the development of a miniature robot capable of manipulating micrometric objects at unprecedented speeds.

    Read more

Pages