HEDoctoral network2023–2026

MultiSMART · Multi-component Soft Materials Advanced Research Training Network

Horizon Europe — Marie Skłodowska-Curie Actions

Duration
2023-01-01 → 2026-12-31
EU contribution
€2,377,289
Participants
10
Scheme
HORIZON-TMA-MSCA-DN

Lines connect the coordinator with its partners.

Results in brief

Multi-component Soft Materials Advanced Research Training Network

MultiSMART, Multi-component Soft Materials Advanced Research Training Network, is a Doctoral Network of six Universities, one private non-for-profit Research Institute, and two large companies. It involves training, fundamental research and development of applications in the field of molecular soft materials. It aims at tackling society's needs in very diverse areas: (1) the widespread and evolving areas of Personal Care, Cosmetics and Home Care (impacting billions of people); (2) delivery of bio-active molecules for medicinal applications; (3) high-end emerging applications of Tissue Engineering for Regenerative Medicine.To reach this, research on innovative soft materials, essential constituents of these products, needs to be coupled to so-far unavailable training of researchers in materials design and formulation technologies within a multidisciplinary and multisectoral consortium, developing and relating more tightly Research&Innovation, Industry and Training (E.U. Green Deal). A cohort of 11 doctoral candidates will be involved throughout the whole process, from design to application, providing them with a training to become the next generation of experts in the field. Although it might sound surprising, the aforementioned applications rely partially on related scientific approaches, and might even have ‘ingredients’ in common. Our research is based on the use of small molecules or macromolecules that “transform” water into a more solid-like material, such as a gel. It is common to find gels in our daily life, as it makes many applications more efficient and practical: shampoos, gels for laundry or dishwashing, cosmetic creams, some food; all contain water and ingredients leading to gel-like behaviour. However, there is still a lot of work to be done to further reduce the environmental impact of such products used by billions of people all around the world: exploit natural resources to fabricate new ingredients; reduce water-consumption in their production, transport and use; improve efficiency, biodegradability and biocompatibility. In medicine, gels are explored since they can be a vector to carry and deliver bio-active ingredients, or act as an environment in which living cells can thrive and develop before being delivered into living beings. For example, much like little drops of gels that are used in ‘molecular cuisine’ to carry and deliver a flavour in your mouth, tiny microdrops can be used in medicine to carry and release a medicine in your eye or in your blood-stream. Water-based gels are also well-documented media for the growth of living cells. However, living cells are very delicate to grow, and are very sensitive to the environment in which they are. To be able to use these cells for therapeutic applications, it is essential to develop new growth environments that allow cells to proliferate and be healthy outside of a living being. Only then, these cells can be injected into a living being to cure illnesses or traumatic injuries. Our project focuses on developing gels for the differentiation and growth of nerve cells, which are destined to be used, at a future stage, in human beings to regenerate damaged spinal cords and give back mobility to thousands of heavily incapacitated people. There is still a lot of work to do. Currently, the gelators studied are inspired from nature: much like proteins are constituted of a long chain of amino-acids, some of the gelators in our projects are constituted of small chains of amino-acids.

Data: CORDIS, © European Union

Project objective

MultiSMART, Multi-component Soft Materials Advanced Research Training Network, is a Doctoral Network of six Universities, one private nonprofit Research Institute, two large Companies and an SME, involving training, fundamental research and applications in the field of molecular soft materials. These have substantial societal and economic impact, but require innovation to ensure sustainable development. The primary research objectives are defined as (i) the innovation in soft materials through multi-component self-assemblies; (ii) the application of these materials in the formulation of actives with elevated performance in the large-scale industries of personal care and home care, as well as high-added value regenerative therapies. Multi-component systems based on low molecular weight gelators have considerable potential to achieve these goals with the key advantages of programmability and responsiveness. However, their development hinges upon the formation of an inter-disciplinary network with well-trained researchers. MultiSMART proposes: (1) the training of the future generation of researchers; (2) the tight integration between academic projects and private sector needs; (3) a network-wide, seamless multidisciplinary, international and inter-sectoral training that is not available at any one institution. MultiSMART will be formed around 9 hired researchers who will have the opportunity to become scientists employable in both the industrial and academic sectors. In an integrated approach, they will be trained to bridge the gap between chemistry, physics, biology and formulation technology, as well as to acquire transferable skills through their research and specifically designed network-wide schools and workshops. The participation of three industrial participants in research and training programmes will guarantee extensive inter-sectoral experience for the trainees and maximise the impact of the network.

Original text from CORDIS.

Participants

  • UNIVERSITE DE BORDEAUX · BordeauxCoordinatorFrance
  • BEIERSDORF AG · HAMBURGGermany
  • FUNDACION DE LA COMUNIDAD VALENCIANA CENTRO DE INVESTIGACION PRINCIPE FELIPE · ValenciaSpain
  • HENKEL KGaA · DusseldorfGermany
  • POIETIS · PessacFrance
  • TECHNISCHE UNIVERSITEIT DELFT · DelftNetherlands
  • UNIVERSITAT JAUME I DE CASTELLON · Castellon De La PlanaSpain
  • UNIVERSITY OF STRATHCLYDE · GlasgowUnited Kingdom
  • UNIVERSITY OF STUTTGART · StuttgartGermany
  • UNIVERSITY OF YORK · YORK NORTH YORKSHIREUnited Kingdom

Links

Data: CORDIS, © European Union