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One or more keywords matched the following items that are connected to Joddar, Binata
Item TypeName
Academic Article The effects of covalently immobilized hyaluronic acid substrates on the adhesion, expansion, and differentiation of embryonic stem cells for in vitro tissue engineering.
Academic Article Spatial gradients of chemotropic factors from immobilized patterns to guide axonal growth and regeneration.
Academic Article Development of functionalized multi-walled carbon-nanotube-based alginate hydrogels for enabling biomimetic technologies.
Academic Article A Contact-Based Method for Differentiation of Human Mesenchymal Stem Cells into an Endothelial Cell-Phenotype.
Academic Article A Bioactive Hydrogel and 3D Printed Polycaprolactone System for Bone Tissue Engineering.
Academic Article The applicability of furfuryl-gelatin as a novel bioink for tissue engineering applications.
Academic Article 3D Bioprinting of cardiac tissue and cardiac stem cell therapy.
Academic Article Fragment size- and dose-specific effects of hyaluronan on matrix synthesis by vascular smooth muscle cells.
Academic Article A surface-tethered model to assess size-specific effects of hyaluronan (HA) on endothelial cells.
Academic Article Impact of delivery mode of hyaluronan oligomers on elastogenic responses of adult vascular smooth muscle cells.
Concept Tissue Engineering
Academic Article Bone tissue engineering techniques, advances and scaffolds for treatment of bone defects.
Academic Article Engineering approaches for cardiac organoid formation and their characterization.
Academic Article 3D Bioprinted Spheroidal Droplets for Engineering the Heterocellular Coupling between Cardiomyocytes and Cardiac Fibroblasts.
Academic Article Development and Characterization of Furfuryl-Gelatin Electrospun Scaffolds for Cardiac Tissue Engineering.
Academic Article 3D Biofabrication of a Cardiac Tissue Construct for Sustained Longevity and Function.
Academic Article A Semi-Three-Dimensional Bioprinted Neurocardiac System for Tissue Engineering of a Cardiac Autonomic Nervous System Model.
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