Leiden University Scholarly Publications

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Long-term controlled growth factor release using layer-by-layer assembly for the development of In vivo tissue-engineered blood vessels
Control delivery of multiple growth factors to actively steer differentiation and extracellular matrix protein production
Sustained delivery of growth factors with high loading efficiency in a layer by layer assembly
A novel method for engineering autologous non-thrombogenic in situ tissue-engineered blood vessels for arteriovenous grafting
Biological activity of human mesenchymal stromal cells on polymeric electrospun scaffolds
Contribution of bone marrow-derived cells to in situ engineered tissue capsules in a rat model of chronic kidney disease
Layered PEGDA hydrogel for islet of Langerhans encapsulation and improvement of vascularization
Micro-fabricated scaffolds lead to efficient remission of diabetes in mice
Utilizing the Foreign Body Response to Grow Tissue Engineered Blood Vessels in Vivo
Promoting Tropoelastin Expression in Arterial and Venous Vascular Smooth Muscle Cells and Fibroblasts for Vascular Tissue Engineering
Hybrid Polycaprolactone/Alginate Scaffolds Functionalized with VEGF to Promote de Novo Vessel Formation for the Transplantation of Islets of Langerhans
CHRONIC KIDNEY DISEASE DOES NOT IMPACT THE MORPHOLOGY AND CELLULAR COMPOSITION OF IN VIVO TISSUE ENGINEERED BLOOD VESSELS IN RATS
Development and evaluation of in vivo tissue engineered blood vessels in a porcine model
Extrahepatic islet transplantation using bioengineered advanced microfabricated thin-film macroporous microwell scaffolds leads to rapid recovery of normoglycemia in diabetic mice
EXTRAHEPATIC ISLET TRANSPLANTATION USING BIOENGINEERED ADVANCED MICROFABRICATED THIN-FILM MACROPOROUS MICROWELL SCAFFOLDS LEADS TO RAPID RECOVERY OF NORMOGLYCEMIA IN DIABETIC MICE
Development and Evaluation of an In Vivo Tissue Engineered Blood Vessel in a Porcine Model
Bioengineering of a Microfabricated Porous Bioartificial Endocrine Pancreas for Extrahepatic Islet Transplantation
Fabrication of three-dimensional bioplotted hydrogel scaffolds for islets of Langerhans transplantation
Tailoring the Foreign Body Response for In Situ Vascular Tissue Engineering
Towards an in vitro model mimicking the foreign body response: tailoring the surface properties of biomaterials to modulate extracellular matrix

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