Jinah Jang
0000-0001-9046-3495
Pohang University of Science and Technology (POSTECH)
36 papers found
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3D Cell Printing of Advanced Vascularized Proximal Tubule-on-a-Chip for Drug Induced Nephrotoxicity Advancement
3D bioprinted vascularized lung cancer organoid models with underlying disease capable of more precise drug evaluation
Volumetric bioprinting strategies for creating large-scale tissues and organs
Biohybrid 3D Printing of a Tissue‐Sensor Platform for Wireless, Real‐Time, and Continuous Monitoring of Drug‐Induced Cardiotoxicity
Coaxial cell printing of a human glomerular model: an in vitro glomerular filtration barrier and its pathophysiology
Bioprinting-assisted tissue assembly to generate organ substitutes at scale
Enhanced Differentiation Capacity and Transplantation Efficacy of Insulin-Producing Cell Clusters from Human iPSCs Using Permeable Nanofibrous Microwell-Arrayed Membrane for Diabetes Treatment
Self-assembly small diameter vasculature via dragging 3D printing technique
Spatiotemporal modulation of skeletal muscle regeneration with varying vasculature patterns in an in -bath bioprinted skeletal muscle tissue
A transplantable pre-vascularized tissue platform by using a multi-material microfluidic 3D bioprinting method
3D bioprinting-based tissue assembly to generate multi-axially contracting engineered heart tissue
3D printing of biohybrid electrical stimulation platform to promote insulin secretion of pancreatic β cell
Development of 3D printed thermo-responsive skin-derived decellularized extracellular matrix hydrogel adhesive patch with controllable shrinkage behavior
A Bioprinted Tubular Intestine Model Using a Colon‐Specific Extracellular Matrix Bioink
Facile Bioprinting Process for Fabricating Size‐Controllable Functional Microtissues Using Light‐Activated Decellularized Extracellular Matrix‐Based Bioinks
Neural stem cell delivery using brain-derived tissue-specific bioink for recovering from traumatic brain injury
Recapitulating the Cancer Microenvironment Using Bioprinting Technology for Precision Medicine
Employing Extracellular Matrix-Based Tissue Engineering Strategies for Age-Dependent Tissue Degenerations
3D bioprinted and integrated platforms for cardiac tissue modeling and drug testing
Light‐Activated Decellularized Extracellular Matrix‐Based Bioinks for Volumetric Tissue Analogs at the Centimeter Scale
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