Un nou repte i una oportunitat de generar sinergies i oportunitats d'internacionalització pel sistema de recerca i innovació!!
linkedin.com/posts/fraunhofe…
🚨 Excited to share our new paper: “Long-range organization of intestinal 2D-crypts using exogenous Wnt3a micropatterning”! 🔗 doi.org/10.1038/s41467-024-5…
Let’s dive into how we used Wnt3a micropatterning to control intestinal epithelial organization. 🧵👇
Congratulations to @ainaabad on successfully defending her thesis! 🎉📚 Your hard work, dedication, and passion for your research have paid off, and we're thrilled to see you achieve this milestone. #ThesisDefense#PhDSuccess
Very excited to share our new results about 3D bioprinting! With our customized DLP-SLA system we created cell-laden soft-hydrogel costructs resembling human intestinal tissue by means of visible-light photopolymerization.
Our structures sustain long-time cell co-cultures, promoting the growth and proliferation of cells in both intestinal compartments, mimicking the distribution and co-localization resembling native tissue.
Have you ever wondered what happens when topographical patterns are as soft as 3 kPa? Would cells experience contact guidance in a stiffness-dependent manner? #cellmigration#contactguidance#softtopography
On very stiff non-physiological patterns, T47D epithelial cells barely migrate, but on soft patterns they experience contact guidance in a stiffness-dependent manner, both as single cells and as clusters.