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CELLINK BIOPRINTING AB
CELLINK BIOPRINTING AB – Unternehmen mit Aktivitäten in Forschung und Innovation.
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Computationally and experimentallY BioEngineeRing the next generation of Growing HEARTs
Congenital Heart Disease (CHD) results when the heart abnormally develops before birth. With diminished cardiac function, the hea… Beitrag ansehen →
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Plant based 4D biohybrid systems
Modern technology relies on fully artificial systems. While in many cases these systems are high performing there have been appro… Beitrag ansehen →
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Better Bioprinting by Light-sheet Lithography
Bioprinting is considered the most promising method to produce functional engineered tissues with physiological properties. Succe… Beitrag ansehen →
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A novel support material for 3D bioprinting and post-printing tissue growth: Print and Grow
"Three-dimensional (3D) bioprinting holds great promise for tissue engineering, with extrusion bioprinting in suspended hydrogels… Beitrag ansehen →
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Engineering a living human Mini-heart and a swimming Bio-robot
Cardiovascular disease (CVD) is still the N1 cause of death worldwide despite the significant efforts of academia and pharmaceuti… Beitrag ansehen →
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Closed-loop control of fungal materials
In an interdisciplinary approach, LoopOfFun will develop a conceptual and technological framework for the efficient and effective… Beitrag ansehen →
Passend zu diesem Beitrag
Forschungsprojekte
- PRInted Symbiotic Materials as a dynamic platform for Living Tissues production The PRISM-LT aims at creating a flexible platform for next generation living tissue manufacturing based on Hy… →
- Biointelligent Production Sensor to Measure Viral Activity We aim to transform virus biomanufacturing processes and enable new quality control strategies by a continuou… →
- Opto-Electronic Neural Connectoid Model Implemented for Neurodegenerative Disease A major challenge facing Europe is its ageing population and associated increase in diagnosed cases of neurod… →
- Development & characterisation of a pre-vascularised tubular scaffold for tracheal regeneration that supports the formation of an iPSC-derived epithelium Tracheal damage is often life-threatening, and its incidence has increased due to invasive mechanical intubat… →
- Revolutionary silk-based bioink for 3D printing of ex vivo bone marrow models to advance drug development and personalized medicine Aim: The SILKink project aims to develop a breakthrough biocompatible hydrogel, i.e., a bioink, to 3D print b… →