GUTVIBRATIONS
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gutvibrations.bsky.social
GUTVIBRATIONS
@gutvibrations.bsky.social
Developing a gut-brain axis organ-on-chip and pushing organ-on-chip technology forward into the biomedical industry.
How do you bring innovation to life in the lab? Within #GUTVIBRATIONS, we’ve developed an FN-silk membrane system, an innovation that paves the way for better in vitro models and potential applications in regenerative medicine. Click here to see how it’s made! www.jove.com/v/202386 #KTH #DTU #Spiber
Cell Seeding of Recombinant Spider Silk Membranes for Improved In Vitro Barrier Models
79 Views. To begin, remove the FN-silk vials from the minus 80 degrees Celsius freezer, and place them in dry ice for transportation. Bring the vials to a biological safety cabinet, and place them in ...
www.jove.com
January 29, 2025 at 6:46 PM
We wish you a merry christmas and a happy new year! #GUTVIBRATIONS
December 25, 2024 at 8:09 PM
#GUTVIBRATIONS is revolutionizing #OrganonChip tech with a user-friendly gut-brain axis model. This next-gen system, developed by Amsterdam UMC and 6 global partners, aims to advance virology, minimize animal testing, and save lives. This project is funded by the EU. More here: shorturl.at/HaqKj
Press Release: The Future of Life Science Research | GUTVIBRATIONS
GUTVIBRATIONS has launched its project to develop a new and easy-to-use human model system that will innovate complex Organ-on-Chip technology for virology.
shorturl.at
December 21, 2024 at 11:07 AM
🧍 Skin models are key for drug testing and clinical solutions, but a “golden standard” is still missing. Our researchers at KTH & DTU used FN-silk to create advanced skin models, combining 3D networks for dermal support and nanomembranes for the epidermis. Read more: shorturl.at/RjeyK #GUTVIBRATIONS
Standalone single- and bi-layered human skin 3D models supported by recombinant silk feature native spatial organization - IOPscienceSearch
Standalone single- and bi-layered human skin 3D models supported by recombinant silk feature native spatial organization, Savvini Gkouma, Nayanika Bhalla, Solène Frapard, Alexander Jönsson, Hakan GÃ...
shorturl.at
December 18, 2024 at 10:59 AM
🌟 Exciting research! Thin suspended hydrogels (50–500 µm) mimic inter-capillary distances & support in vivo-like cell densities (up to 1000M cells/mL). A breakthrough for tissue engineering! Read more: lnkd.in/eRBgM_Dy.

🌱 GUTVIBRATIONS: gutvibrations.org
#Hydrogels #TissueEngineering #GUTVIBRATIONS
Tissue Like Density Sheets of Hepatoblastoma Cultures Obtained with Thin Suspended Hydrogels Mimicking In Vivo Inter‐Capillary Distances
Inserts for standard well plates are produced using vacuum forming, resulting in well-defined bottom thicknesses down to 50 µm. After opening apertures through the bottom, hydrogels can be cast to si....
onlinelibrary.wiley.com
December 11, 2024 at 11:02 AM
🌱 #GUTVIBRATIONS is now on Bluesky! 🌟 Follow us for exciting updates on our groundbreaking work in organ-on-chip technology, bioengineering, virology, and cell culture. Follow us as we explore new possibilities for personalized treatments and healthier lives! 🔗 Learn more here: gutvibrations.org
Developing a next-generation gut-brain axis organ-on-chip
GUTVIBRATIONS will lead innovation in the fields of complex organ-on-chip technology for virology with our team of experts.
gutvibrations.org
December 10, 2024 at 11:49 AM