#Biofabrication
Here are some impressions of the exhibited works.

#exhibition #biofabrication #visuals #photography #fungi
September 28, 2026 at 5:45 PM
Yay🎉 Manuscript got accepted for publication! We developed a matrix-adhered complex coacervation method for artificial/synthetic cell-embedded 3D bioprinting. It'll be out soon, cannot wait to share!
#bioprinting #coacervate #artificialcell #syntheticcell #tissueengineering #biofabrication
September 25, 2026 at 10:28 PM
Ses travaux renforceront les capacités du pays en biofabrication et en sciences de la vie en plus d’élargir les options thérapeutiques offertes aux personnes atteintes de cancers parmi les plus difficiles à traiter.
September 21, 2026 at 6:31 PM
Latest issue of curated #engineeredlivingmaterials feed:
biomed.news/bims-enlima/... #ELMs
via @biomednews.bsky.social #livingmaterials

includes research on: viscoelastic nanomechanical devices, hydrogel-based hollow biomaterials, engineered protein hydrogels, multimaterial 4D printing, & more🧪
Topological tracks patterned via 3D printing vascularize murine organ-scale constructs
Prado, Malkani, et al. develop TRACKS, a biofabrication platform combining 3D-printed sacrificial templates with vascular self-assembly to pattern vessel networks in mouse organ-scale tissues. By arch...
www.cell.com
September 20, 2026 at 7:12 AM
If you find yourself in Hackney, London and would like to come visit a community centered bio lab, dm me.

The website makes it look very fancy but it's actually a bunch of very friendly people in a warehouse.

https://lifefabs.bio/
Lifefabs Institute
Community Biofabrication Lab and R&D; Studio
lifefabs.bio
September 19, 2026 at 8:08 AM
Defining a Biofabrication Window for Visible-Light Photocrosslinkable Protein Bioinks in Extrusion Bioprinting https://www.biorxiv.org/content/10.64898/2026.09.15.751762v1
September 17, 2026 at 5:45 PM
Defining a Biofabrication Window for Visible-Light Photocrosslinkable Protein Bioinks in Extrusion Bioprinting https://www.biorxiv.org/content/10.64898/2026.09.15.751762v1
September 17, 2026 at 5:45 PM
mushlume co-creates with living organisms to grow design objects at MADE: bush terminal
MADE: Bush Terminal, a revitalized public landmark, reopens its historic doors as a productive workspace designed to fuel local innovation and economic growth. Inside the renewed space, designboom speaks with Danielle Trofe, founder of MushLume, one of the resident studios shaping the hub combining biofabrication laboratory, and production. Awarded for its sustainable lighting and acoustic panels, MushLume grows its collection using living mycelium and agricultural hemp, pioneering a design approach that treats nature as a true partner rather than a simple material resource. ‘The story of how I came across this material really shaped my relationship with this living organism. I began my design studio in 2011 and was working mainly in hydroponics. Then, I found this material in a materials library that was grown using living mycelium and hemp. Just that concept alone was so intriguing: that I didn’t have to take an inert material and shape it into something; I could actually co-create with a living organism to grow an object. It really changed my whole design approach,’ Danielle Trofe starts the exclusive interview with designboom. MushLume sound-absorbing lighting fixtures | image © Rob Frost, Chance Productions LEARNING FROM NATURE, NOT EXTRACTING FROM IT Grounded in the philosophy...
www.designboom.com
September 17, 2026 at 10:14 AM
Bioprinted patch for congenital diaphragmatic hernia - cells shielded by microscaffolds. (Biofabrication, via PubMed) https://doi.org/10.1088/1758-5090/ae9599
September 15, 2026 at 4:02 PM
September 6, 2026 at 11:01 AM
Open Access UCL Research: Editorial: Advancements in biofabrication and materials innovations for osteochondral tissue regeneration: from bench to bedside discovery.ucl.ac.uk/id/eprint/10...
Editorial: Advancements in biofabrication and materials innovations for osteochondral tissue regeneration: from bench to bedside - UCL Discovery
UCL Discovery is UCL's open access repository, showcasing and providing access to UCL research outputs from all UCL disciplines.
discovery.ucl.ac.uk
September 1, 2026 at 1:50 PM
Bioprinted patch for congenital diaphragmatic hernia - cells shielded by microscaffolds. (Biofabrication, via PubMed) https://doi.org/10.1088/1758-5090/ae9599
August 26, 2026 at 11:00 PM
Can tequila industry waste help replace EPS packaging?🌱

Ganoderma lucidum mycelium was combined w/ agave bagasse to create lightweight #biopackaging w/ promising H2O resistance, self-extinguishing behavior, & mechanical performance comparable to EPS.
buff.ly/JVgJjWo

#BioResJournal #CircularEconomy
Biofabrication of composites based on mycelium and agave fiber (Agave tequilana Weber var. azul :: BioResources
Expanded polystyrene (EPS), widely used in plastic packaging, poses recycling challenges and contributes to environmental pollution due to its persistence. As an alternative, biopackaging materials…
bioresources.cnr.ncsu.edu
August 26, 2026 at 1:43 AM
🔬 Speaker spotlight: Andrew Lee, Co-Founder & Senior Scientist at FluidForm Bio.
Join us for New Approach Methodologies: From Theory to Validation
👉 Register: https://3dheals.com/new-approach-methodologies-from-theory-to-validation/
#NAMs #Biofabrication #DrugDevelopment #TissueEngineering
August 20, 2026 at 4:42 AM
The authors included RRIDs in their in Biofabrication paper! Thanks for making your methods matter! #reproducibility #ReproducibleResearch #accelerateopenscience
Modeling the synovium on a chip for studying the interactions between lymphatic vasculature and synoviocytes in rheumatoid arthritis
Read the full paper: Modeling the synovium on a chip for studying the interactions between lymphatic vasculature and synoviocytes in rheumatoid arthritis
doi.org
August 16, 2026 at 7:00 AM
RRIDs were included in this in Trends in Biotechnology paper. We value the author's support of reproducibility. #reproducibility #OpenResearch #BetterScience
Scalable 4D biofabrication process for the manufacture of scaffold-free bone-forming callus implants
Read the full paper: Scalable 4D biofabrication process for the manufacture of scaffold-free bone-forming callus implants
doi.org
August 14, 2026 at 7:00 AM
AI is becoming part of the discovery workflow, accelerating design, optimization & prediction across tissue engineering, drug delivery & biofabrication. Check out www.sciencedirect.com/special-issu... to see the latest articles on AI in biomaterials & medical research by Matter, CRMed and CelBio, 🤖
AI-assisted biomaterials advancement | ScienceDirect.com by Elsevier
This collection by Cell Biomaterials, Cell Reports Medicine, and Matter aims to emphasize the importance of AI in the advancement of biomaterials and biomedical fields.
www.sciencedirect.com
August 12, 2026 at 3:15 PM
2 Ph.D. Student positions with high ambition, resilience, and motivation to discover #mechanobiology paths to control #stemcell activity @merln-um.bsky.social @maastrichtu.bsky.social in @erc.europa.eu MECCANO project. Do you have what it takes? lnkd.in/eVvRgUnu
#iPSCs #biofabrication #stimulation
LinkedIn
This link will take you to a page that’s not on LinkedIn
lnkd.in
August 11, 2026 at 4:31 PM
SCGE researchers developed a pressure-tunable microfluidic platform that enables the rapid, high-throughput generation of collagen microbeads with controlled size, fibrillar architecture, and mechanical properties for versatile downstream biofabrication. (3/4)

pmc.ncbi.nlm.nih.gov/articles/PMC...
High-throughput Generation of Collagen Microbeads for Extracellular Vesicle Production and Therapeutic Delivery
Collagen type I, a key component of the extracellular matrix, underpins cellular organization and regeneration but remains challenging to process into scalable, reproducible, and biologically faithful...
pmc.ncbi.nlm.nih.gov
August 11, 2026 at 12:55 PM
New paper! Light-based bioprinting goes beyond controlling only tissue architecture. Optogenetic volumetric bioprinting activates protein expression and photoswitches deep within cell-laden hydrogels

advanced.onlinelibrary.wiley.com/doi/10.1002/...

@utrechtuniversity.bsky.social @erc.europa.eu
Spatial Control of Light‐Responsive Proteins and Optogenetics Within Hydrogels via Volumetric Bioprinting
Spatiotemporal control over cell behavior within bioprinted constructs remains a key challenge in biofabrication. Volumetric bioprinting using multi-wavelength light sources permits to activate light...
advanced.onlinelibrary.wiley.com
August 11, 2026 at 8:50 AM
BIOFORGE works with advanced biofabrication tools to develop smart biomaterials and 3D tissue scaffolds for biomedical applications. 🧬

➡️ ladis.uva.es

#ladis #uva #scienceimpact #biomaterials #bioengineering
August 11, 2026 at 8:03 AM
Engineered cell-like vesicles instruct keratocyte differentiation for corneal biofabrication and regeneration https://www.biorxiv.org/content/10.64898/2026.08.06.743353v1
August 7, 2026 at 12:48 PM
Engineered cell-like vesicles instruct keratocyte differentiation for corneal biofabrication and regeneration https://www.biorxiv.org/content/10.64898/2026.08.06.743353v1
August 7, 2026 at 12:48 PM