AutoCRAT kicked off in January 2020 and concluded in June 2024. Throughout the project, we have successfully (i) delivered new cell-based therapies for OA and joint repair using a sustainable source of cells, and (ii) developed a closed, scalable, and regulatory-compliant automated system to facilitate the future production of therapeutic products.
We successfully generated and characterised human induced pluripotent stem cell (hiPSC)-derived mesenchymal stromal cells (hiMSCs) and chondrocytes (hiCHOs). These cells demonstrated strong potential for treating OA, as confirmed through extensive testing, including in human cartilage models. The hiMSCs showed significant benefits in promoting cartilage repair and exhibited anti-inflammatory properties.
The project also advanced the development of extracellular vesicle (EV)-based therapies derived from hiMSCs. These EVs were optimised and characterised, indicating their capacity to modulate inflammation and promote tissue regeneration in OA models. Their therapeutic potential was validated in preclinical studies, reinforcing their promise for clinical application.
In addition, a thermosensitive injectable hydrogel was developed and tested in preclinical OA models. This hydrogel proved to be an effective delivery system for hiMSCs and EVs, providing sustained release at the site of cartilage damage and enhancing therapeutic outcomes.
Results to date indicate improvements in cartilage regeneration in OA models, with enhanced therapeutic effects and prolonged retention of cells and EVs at the site when using a combination of hydrogel with cells or EVs. However, further studies are required to bring these results from the lab to the clinic.
We devised and validated scalable, automatable, and adaptive production processes for the cultivation and differentiation of hiPSCs into hiMSCs and hiCHOs, as well as the large-scale culture of these cells. These processes were rigorously tested to ensure they met the standards required for clinical use.
A prototype of ValitaCell’s MSC-specific ChemStress® characterisation tool was successfully manufactured, with ongoing testing yielding promising preliminary data indicating good plate quality.
The automated production systems developed during the project have been demonstrated to produce therapies of equivalent quality to those produced manually, with all processes documented in accordance with Good Manufacturing Practice (GMP) guidelines.
An economic evaluation of these automated processes confirmed their cost-effectiveness, highlighting their potential for broader clinical and commercial applications.
Throughout the project, ethical considerations were carefully managed, ensuring compliance with all relevant standards.
Finally, we have consistently disseminated our results and innovations to reach our target audiences. Further details are available on our website
https://www.autocrat.eu(s’ouvre dans une nouvelle fenêtre) and you can find us under 'AutoCRAT' on X, LinkedIn, and Zenodo.