Bioaction

@bioaction.eu

EIC-funded project making bio-hydrogels to reform bacteria biofilms into bio-factories for tissue regeneration. We aim to reduce antimicrobial resistance and better care for patients. Grant agreement 10109897 Visit us at https://bioaction.eu/

Awesome to see our @horizoneu.bsky.social project partner had such a presence at @eutermis.bsky.social! 🇪🇺 @ibecbarcelona.eu was also represented by Elisabeth Engel, who co-chaired the symposium “Engineering Living Materials: a new frontier at the intersection of biology and materials science”! 🙌

IBEC | Institute for Bioengineering of Catalonia@ibecbarcelona.eu · 4mo ago

🔬 IBEC shines at #TERMIS_EU2026 with strong scientific contributions and leadership. 8 research groups and key talks highlight its role as a European leader in bioengineering and regenerative medicine. 🌍

Today, our symposium at @eutermis.bsky.social 2026 filled the room! Lost of participants joined to learn more about “Engineering Living Materials (ELMs): a new frontier at the intersection of biology and materials science”! Thank you to everyone who joined and for making this afternoon a success!

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Our consortium has just wrapped up another meeting! This time, our @horizoneu.bsky.social team was hosted by our Lithuanian partners, Ferentis, in the beautiful city of Vilnius. 🇱🇹 The team shared updates on the public perception study and new strategies for hydrogel development.

Group of people in warm clothing posing for a picture in front of a baroque looking building. Four flags are visible: the one for the European Union, Lithuania, NATO, and Vilnius.

Most biotech training focuses on what you can do. The ELSA Summer School on Engineered Living Materials will focus on how to integrate ethical, legal, and social points into your research and how to communicate evolving science to the public and policymakers. prism-livingtissues.eu/elsa-summer-...

ELSA Summer School on Engineered Living Materials, 13–17 Jul 2026, UK

Five-day residential summer school on the ethics, law and society of engineered living materials. Glasgow & Loch Lomond. Apply by 22 March.

prism-livingtissues.eu

Interested in tissue engineering? Then check out these free webinars with top international researchers on bio fabrication, regeneration, bio mimicry, and much more! 🎟️ The first one is this Friday, February 13, at 09:00 WET (Lisbon time) Registration and more info at topicscteng.web.ua.pt

International Webinars: Topics on Cell and Tissue Engineerin

Join the 5th Edition of the International Webinars: Topics on Cell and Tissue Engineering (CTEng), a series of free, cutting-edge online seminars organized by COMPASS RG - CICECO, University of Aveiro, Portugal.

topicscteng.web.ua.pt

From 24-26 Nov., the LoopOfFun consortium gathered at the partner LUMA for its 2nd internal hands-on workshop dedicated to the strains and substrates used in our ongoing research on mycomaterials. We exhanged insights, research updates, and explored LUMA Arles research and artistic programme.

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LoopOfFun was at the trade fair Formnext, 18-21 November 2025 in Frankfurt, Germany! Dr. Achim Weber (partner Fraunhofer IGB) showcased our 3D-printed fungal-based ELM samples and presented our first prototype, the LoopOfFun stool. Great interest and inspiring exchanges! #EIC #ELMs

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Our mouth’s microbiome is basically the sum of all interactions between around one thousand species of microorganisms and ourselves. 😛🦠 Usually, these interactions are balanced and keep us healthy, but sometimes they can get out of whack and make us sick. www.sciencedirect.com/science/arti...

The oralome and its dysbiosis: New insights into oral microbiome-host interactions

The oralome is the summary of the dynamic interactions orchestrated between the ecological community of oral microorganisms (comprised of up to approx…

sciencedirect.com

Back in July, the LoopOfFun consortium met in Groningen for its 3rd Annual Meeting! We reviewed progress, shared insights, aligned research goals, and enjoyed a team excursion. The two-day meeting brought great energy, great collaboration! We are very much looking forward to the next steps!

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Did you know that some bacteria on our skin communicate with our cells and help to defend against infections by other bacteria! It’s only when this “conversation” goes out of whack that beneficial bacteria can “switch sides”. Artwork by @lucyreadingikkanda.bsky.social www.nature.com/articles/d41...

The skin microbiome and its relationship with the human body explained

The gut is not the only part of the human body that hosts an important microbiome. The surface of the skin is home to a sprawling and complex microbial ecosystem, which interacts with the immune syste...

nature.com

A month ago, our team met at AO Research Institute Davos (ARI) to share updates and discuss our next steps! Our #HorizonEU project continues to build on the natural partnership between people & bacteria to improve implant healthcare. 🦠🧬🦷🦾 Thanks again AO Research Institute Davos for having us. 🙌

New publication from our Bone Cements group: Clinically applicable antibiotic modification of ready-to-use calcium phosphate cement pastes link.springer.com/article/10.1...

Clinically applicable antibiotic modification of ready-to-use calcium phosphate cement pastes - Journal of Orthopaedic Surgery and Research

Background Ready-to-use non-aqueous cement pastes consist of an organic, water-miscible liquid phase in which cement powder is dispersed. While the modification of classical aqueous powder/liquid cement pastes with antibiotics has been extensively investigated, only a few studies previously published aimed at drug modification of premixed cement pastes. Methods A simple method for modifying such ready-to-use pastes with the model antibiotic vancomycin is described. It was demonstrated that mixing the cement paste and vancomycin solution multiple times using an adapter between two syringes resulted in macroscopically homogeneous pastes. The antibiotic-loaded cements were thoroughly characterized with regard to their physicochemical properties and their drug release profile. Results Drug modification with vancomycin had no adverse effects on cement properties in terms of mechanical performance, phase composition, porosity and pore size distribution. Drug release from ready-to-use pastes exhibited a lower initial burst release of 14.5% compared to 47.9% for aqueous powder/liquid cement pastes after 24 h. At later time points, the initial exponential release kinetics slowed down due to both a decreased concentration gradient and structural changes of the cement matrix during setting. This resulted in sustained release of the antibiotic for more than 30 days. The released vancomycin maintained high antimicrobial activity against S. aureus with inhibition zones of 5.4–6.8 mm in an agar diffusion test. Conclusion The results demonstrated that modification of ready-to-use cement pastes with vancomycin is a potential candidate for clinical application, as it preserves both the material’s properties and the antibiotic’s activity.

link.springer.com

We are at the third annual meeting of Engineered Living Materials European Innovation Council portfolio! We’ll be sharing results and networking with other partners at InnoRenew CoE in Izola, Slovenia. 🇸🇮 Thank you REMEDY EIC for hosting us!

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