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POSTECH

Education

  • 2010.03 ~ 2015.08 POSTECH (통합-융합생명공학부)
  • 2006.03 ~ 2010.02 (학사-기계설계·자동화공학부)

Career

  • 2016.09 ~ 2017.02 UNIVERSITY OF WASHINGTON DEPARTMENT OF PATHOLOGY & BIOENGINEERING
  • 2015.08 ~ 2017.02 포항공과대학교 기계공학과

Profession

Journal Papers

International
  • Bioprinting approaches in cardiac tissue engineering to reproduce bloodpumping heart function, iScience, , 28, - (2025 )
  • Dragging 3D printing technique controls pore sizes of tissue engineered blood vessels to induce spontaneous cellular assembly, Bioactive Materials, , 31, 590-602 (2024 )
  • Programming temporal stiffness cues within extracellular matrix hydrogels for modelling cancer niches, Materials Today Bio, , 25, - (2024 )
  • Tissuespecific gelatin bioink as a rheology modifier for high printability and adjustable tissue properties, Biomaterials Science, , , - (2024 )
  • Biohybrid Printing Approaches for Cardiac Pathophysiological Studies, Biosensors and Bioelectronics, , 260, 116420- (2024 )
  • Bioprinting‐assisted Tissue Assembly for Structural and Functional Modulation of Engineered Heart Tissue Mimicking Left Ventricular Myocardial Fiber Orientation, Advanced Materials, , 36, - (2024 )
  • Bridgerich and loopless hydrogel networks through suppressed micellization of multiblock polyelectrolytes, NATURE COMMUNICATIONS, , 15, - (2024 )
  • Roboticsassisted modular assembly of bioactive soft materials for enhanced organ fabrication, VIRTUAL AND PHYSICAL PROTOTYPING, , 19, - (2024 )
  • Photoacoustic imaging for threedimensional bioprinted constructs, INTERNATIONAL JOURNAL OF BIOPRINTING, , 10, - (2024 )
  • Enhancing differentiation and functionality of insulinproducing cells derived from iPSCs using esterified collagen hydrogel for cell therapy in diabetes mellitus, Stem Cell Research Therapy, , 15, - (2024 )
  • The Effect of 3DimensionalPrinted Sequential Dual DrugReleasing Patch on the Capsule Formation Around the Silicone Implant in a Rat Model, Aesthetic Surgery Journal, , 44, NP411-NP420 (2024 )
  • Dragging 3D printing technique controls pore sizes of tissue engineered blood vessels to induce spontaneous cellular assembly vol 31C pg 590 2024, Bioactive Materials, , 40, - (2024 )
  • Regeneration of the female reproductive tract using 3D bioprinting technology, Virtual and Physical Prototyping, , 19, - (2024 )
  • Unsupervised interdomain transformation for virtually stained highresolution midinfrared photoacoustic microscopy using explainable deep learning, Nature Communications, , 15, - (2024 )
  • CerebrovascularSpecific Extracellular Matrix Bioink Promotes Blood–Brain Barrier Properties, Biomaterials Research, , 28, - (2024 )
  • 3D cellprinting of gradient multitissue interfaces for rotator cuff regeneration, Bioactive Materials, , 19, 611-625 (2023 )
  • Electroconductive Adhesive NonSwelling and Viscoelastic Hydrogels for Bioelectronics, Advanced Materials, , 35, - (2023 )
  • Bioprintingassisted tissue assembly to generate organ substitutes at scale, Trends in Biotechnology, , 41, 93-105 (2023 )
  • Modular assembly of bioprinted perfusable blood vessel and tracheal epithelium for studying inflammatory respiratory diseases, Biofabrication, , 15, - (2023 )
  • Extracellular matrixbased sticky sealants for scarfree corneal tissue reconstruction, Biomaterials, , 292, - (2023 )
  • Erratum 3D bioprinted in vitro secondary hyperoxaluria model by mimicking intestinaloxalatemalabsorptionrelated kidney stone disease Applied Physics Reviews 2022 9 041408 DOI 10106350087345, Applied Physics Reviews, , 10, - (2023 )
  • Coaxial cell printing of a human glomerular model an in vitro glomerular filtration barrier and its pathophysiology, Biofabrication, , 15, - (2023 )
  • Biohybrid 3D Printing of a Tissue‐Sensor Platform for Wireless Real‐Time and Continuous Monitoring of Drug‐Induced Cardiotoxicity, Advanced Materials, , 35, 2208983- (2023 )
  • Pathophysiological Reconstruction of a TissueSpecific MultipleOrgan OnAChip for Type 2 Diabetes Emulation using 3D Cell Printing, Advanced Functional Materials, , , - (2023 )
  • 3D printed multigrowth factor delivery patches fabricated using dualcrosslinked decellularized extracellular matrixbased hybrid inks to promote cerebral angiogenesis, Acta Biomaterialia, , 157, 137-148 (2023 )
  • Nanomaterialsincorporated hydrogels for 3D bioprinting technology, Nano Convergence, , 10, - (2023 )
  • Contrast Agent‐Free 3D Renal Ultrafast Doppler Imaging Reveals Vascular Dysfunction in Acute and Diabetic Kidney Diseases, Advanced Science, , 10, - (2023 )
  • LamininAugmented Decellularized Extracellular Matrix Ameliorating Neural Differentiation and Neuroinflammation in Human MiniBrains, Small, , 20, - (2023 )
  • Bioprinted Organoids Platform with Tumor Vasculature for Implementing Precision Personalized Medicine Targeted Towards Gastric Cancer, Advanced Functional Materials, , , - (2023 )
  • Uterus‐Derived Decellularized Extracellular Matrix‐Mediated Endometrial Regeneration and Fertility Enhancement, Advanced Functional Materials, , 33, - (2023 )
  • Advancements in biomaterials and biofabrication for enhancing islet transplantation , International Journal of Bioprinting, , 9, 391-412 (2023 )
  • Volumetric bioprinting strategies for creating largescale tissues and organs, MRS Bulletin, , 48, 657-667 (2023 )
  • 3D bioprinted vascularized lung cancer organoid models with underlying disease capable of more precise drug evaluation, Biofabrication, , 15, - (2023 )
  • A 3D bioprinted hybrid encapsulation system for delivery of human pluripotent stem cellderived pancreatic isletlike aggregates, Biofabrication, , 14, - (2022 )
  • Facile Bioprinting Process for Fabricating SizeControllable Functional Microtissues Using LightActivated Decellularized Extracellular MatrixBased Bioinks, Advanced Materials Technologies, , 7, - (2022 )
  • A Bioprinted Tubular Intestine Model Using a ColonSpecific Extracellular Matrix Bioink, Advanced Healthcare Materials, , 11, - (2022 )
  • Bimodal nearinfrared fluorescence and ultrasound imaging via a transparent ultrasound transducer for sentinel lymph node localization, Optics Letters, , 47, 393-396 (2022 )
  • Enhanced Differentiation Capacity and Transplantation Efficacy of InsulinProducing Cell Clusters from Human iPSCs Using Permeable Nanofibrous MicrowellArrayed Membrane for Diabetes Treatment, Pharmaceutics, , 14, - (2022 )
  • Review on Multicomponent Hydrogel Bioinks Based on Natural Biomaterials for Bioprinting 3D Liver Tissues, FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, , 10, - (2022 )
  • Bimodal nearinfrared fluorescence and ultrasound imaging via a transparent ultrasound transducer for sentinel lymph node localization vol 47 393 2022, OPTICS LETTERS, , 47, 1258-1258 (2022 )
  • A Bioprinted Bruchs Membrane for Modeling SmokeInduced Retinal Pigment Epithelium Degeneration via Hybrid Membrane Printing Technology, Advanced Healthcare Materials, , , - (2022 )
  • Enhancement strategy for effective vascular regeneration following myocardial infarction through a dual stem cell approach, EXPERIMENTAL AND MOLECULAR MEDICINE, , 54, 1165-1178 (2022 )
  • 3D bioprinted in vitro secondary hyperoxaluria model by mimicking intestinaloxalatemalabsorptionrelated kidney stone disease, APPLIED PHYSICS REVIEWS, , 9, - (2022 )
  • Predicting multipotency of human adult stem cells derived from various donors through deep learning, Scientific Reports, , 12, - (2022 )
  • 3D printable conductive composite inks for the fabrication of biocompatible electrodes in tissue engineering application, International Journal of Bioprinting, , 9, - (2022 )
  • Construction of a Novel In Vitro Atherosclerotic Model from GeometryTunable Artery Equivalents Engineered via InBath Coaxial Cell Printing, Advanced Functional Materials, , 31, - (2021 )
  • 3D CellPrinted Hypoxic CanceronaChip for Recapitulating Pathologic Progression of Solid Cancer, JOVEJOURNAL OF VISUALIZED EXPERIMENTS, , , - (2021 )
  • Controlling Cancer Cell Behavior by Improving the Stiffness of Gastric TissueDecellularized ECM Bioink With Cellulose Nanoparticles, FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, , 9, - (2021 )
  • A Wearable SurfaceEnhanced Raman Scattering Sensor for LabelFree Molecular Detection, ACS APPLIED MATERIALS INTERFACES, , 13, 3024-3032 (2021 )
  • Tissue printing for engineering transplantable human parathyroid patch to improve parathyroid engraftment integration and hormone secretion in vivo, BIOFABRICATION, , 13, - (2021 )
  • Quadruple ultrasound photoacoustic optical coherence and fluorescence fusion imaging with a transparent ultrasound transducer, Proceedings of the National Academy of Sciences of the United States of America, , 118, - (2021 )
  • Engineering of diseased human skin equivalent using 3D cell printing for representing pathophysiological hallmarks of type 2 diabetes in vitro, BIOMATERIALS, , 272, - (2021 )
  • Application of 3D bioprinting in the prevention and the therapy for human diseases, SIGNAL TRANSDUCTION AND TARGETED THERAPY, , 6, - (2021 )
  • 3D BioprintingBased Vascularized Tissue Models Mimicking TissueSpecific Architecture and Pathophysiology for in vitro Studies, Frontiers in Bioengineering and Biotechnology, , 9, - (2021 )
  • 3D bioprinted and integrated platforms for cardiac tissue modeling and drug testing, Essays in Biochemistry, , 65, 545-554 (2021 )
  • Employing Extracellular MatrixBased Tissue Engineering Strategies for AgeDependent Tissue Degenerations, INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, , 22, - (2021 )
  • Recapitulating the Cancer Microenvironment Using Bioprinting Technology for Precision Medicine, MICROMACHINES, , 12, - (2021 )
  • Neural stem cell delivery using brainderived tissuespecific bioink for recovering from traumatic brain injury, BIOFABRICATION, , 13, - (2021 )
  • Customized 3Dprinted occluders enabling the reproduction of consistent and stable heart failure in swine models, Biodesign and Manufacturing, , 4, 833-841 (2021 )
  • Fabrication of an alignrandom distinct heterogeneous nanofiber mat endowed with bifunctional properties for engineered 3D cardiac anisotropy, COMPOSITES PART BENGINEERING, , 226, - (2021 )
  • 3D bioprinted tissuespecific spheroidal multicellular microarchitectures for advanced cell therapy, BIOFABRICATION, , 13, - (2021 )
  • Construction of 3D hierarchical tissue platforms for modeling diabetes, APL BIOENGINEERING, , 5, - (2021 )
  • Quantitative Photothermal Characterization with Bioprinted 3D Complex Tissue Constructs for EarlyStage Breast Cancer Therapy Using Gold Nanorods, Advanced Healthcare Materials, , 10, - (2021 )
  • Promoting LongTerm Cultivation of Motor Neurons for 3D Neuromuscular Junction Formation of 3D In Vitro Using CentralNervousTissueDerived Bioink, Advanced Healthcare Materials, , 10, - (2021 )
  • Recent Trends in Biofabrication Technologies for Studying Skeletal Muscle TissueRelated Diseases, FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, , 9, - (2021 )
  • 3D bioprinting of stem cellladen cardiac patch A promising alternative for myocardial repair, Apl Bioengineering, , 5, - (2021 )
  • LightActivated Decellularized Extracellular MatrixBased Bioinks for Volumetric Tissue Analogs at the Centimeter Scale, Advanced Functional Materials, , 31, - (2021 )
  • 3D Pancreatic Tissue Modeling in vitro Advances and Prospects, BIOCHIP JOURNAL, , 14, 84-99 (2020 )
  • In vivo priming of human mesenchymal stem cells with hepatocyte growth factorengineered mesenchymal stem cells promotes therapeutic potential for cardiac repair, SCIENCE ADVANCES, , 6, - (2020 )
  • Visibility of Bioresorbable Vascular Scaffold in Intravascular Ultrasound Imaging, IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, , 67, 1090-1101 (2020 )
  • A 3Dimensional Bioprinted Scaffold With Human Umbilical Cord BloodMesenchymal Stem Cells Improves Regeneration of Chronic FullThickness Rotator Cuff Tear in a Rabbit Model, AMERICAN JOURNAL OF SPORTS MEDICINE, , 48, 947-958 (2020 )
  • Vascularized Lower RespiratoryPhysiologyOnAChip, Applied Sciencesbasel, , 10, - (2020 )
  • The bioprinting roadmap, BIOFABRICATION, , 12, - (2020 )
  • Recapitulation of the accessible interface of biopsyderived canine intestinal organoids to study epithelialluminal interactions, PLOS ONE, , 15, - (2020 )
  • 3D bioprinting strategies for the regeneration of functional tubular tissues and organs, Bioengineering, , 7, - (2020 )
  • Multilayered Freeform 3D Cellprinted Tubular Construct with Decellularized Inner and Outer Esophageal Tissuederived Bioinks, SCIENTIFIC REPORTS, , 10, - (2020 )
  • Decellularized Extracellular Matrixbased Bioinks for Engineering Tissue and Organspecific Microenvironments, CHEMICAL REVIEWS, , 120, 10941-10994 (2020 )
  • 3D printing of drugloaded multishell rods for local delivery of bevacizumab and dexamethasone A synergetic therapy for retinal vascular diseases, ACTA BIOMATERIALIA, , 116, 174-185 (2020 )
  • Microphysiological systems for neurodegenerative diseases in central nervous system, Micromachines, , 11, - (2020 )
  • In Vitro Study of Neurochemical Changes Following LowIntensity Magnetic Stimulation, IEEE ACCESS, , 8, 194363-194372 (2020 )
  • Drilling of sub100 mu m hourglassshaped holes in diamond with femtosecond laser pulses, QUANTUM ELECTRONICS, , 50, 201-204 (2020 )
  • Interdisciplinary approaches to advanced cardiovascular tissue engineering ECMbased biomaterials 3D bioprinting and its assessment, Progress in Biomedical Engineering, , 2, 42003- (2020 )
  • Recent Strategies in ExtrusionBased ThreeDimensional Cell Printing toward Organ Biofabrication, ACS BIOMATERIALS SCIENCE ENGINEERING, , 5, 1150-1169 (2019 )
  • Threedimensional printing of a patientspecific engineered nasal cartilage for augmentative rhinoplasty, JOURNAL OF TISSUE ENGINEERING, , 10, - (2019 )
  • Characterization of corneaspecific bioink high transparency improved in vivo safety, JOURNAL OF TISSUE ENGINEERING, , 10, - (2019 )
  • 3D Cell Printing of Isletladen Pancreatic Tissuederived Extracellular Matrix Bioink Constructs for Enhancing Pancreatic Functions, Journal of Materials Chemistry B, , 10, 1513-1796 (2019 )
  • A bioprinted humanglioblastomaonachip for the identification of patientspecific responses to chemoradiotherapy, NATURE BIOMEDICAL ENGINEERING, , 3, 509-519 (2019 )
  • A 3D cell printed muscle construct with tissuederived bioink for the treatment of volumetric muscle loss, BIOMATERIALS, , 206, 160-169 (2019 )
  • Decellularized extracellular matrix bioinks and the external stimuli to enhance cardiac tissue development in vitro, ACTA BIOMATERIALIA, , 95, 188-200 (2019 )
  • Shearinduced alignment of collagen fibrils using 3D cell printing for corneal stroma tissue engineering, BIOFABRICATION, , 11, 35017- (2019 )
  • Compressed collagen intermixed with corneaderived decellularized extracellular matrix providing mechanical and biochemical niches for corneal stroma analogue, MATERIALS SCIENCE ENGINEERING CMATERIALS FOR BIOLOGICAL APPLICATIONS, , 103, - (2019 )
  • Dual stem cell therapy synergistically improves cardiac function and vascular regeneration following myocardial infarction, NATURE COMMUNICATIONS, , 10, - (2019 )
  • Biocompatibility evaluation of bioprinted decellularized collagen sheet implanted in vivo cornea using sweptsource optical coherence tomography, JOURNAL OF BIOPHOTONICS, , , - (2019 )
  • Correction 3D cell printing of isletladen pancreatic tissuederived extracellular matrix bioink constructs for enhancing pancreatic functions vol 7 pg 1773 2019, JOURNAL OF MATERIALS CHEMISTRY B, , 7, 4592-4592 (2019 )
  • Directed differential behaviors of multipotent adult stem cells from decellularized tissueorgan extracellular matrix bioinks, BIOMATERIALS, , 224, - (2019 )
  • Tissueengineering of vascular grafts containing endothelium and smoothmuscle using triplecoaxial cell printing, APPLIED PHYSICS REVIEWS, , 6, - (2019 )
  • Accelerated Bone Regeneration via ThreeDimensional CellPrinted Constructs Containing Human Nasal TurbinateDerived Stem Cells as a Clinically Applicable Therapy, ACS BIOMATERIALS SCIENCE ENGINEERING, , 5, 6171-6185 (2019 )
  • Pancreatic TissueDerived Extracellular Matrix Bioink for Printing 3D CellLaden Pancreatic Tissue Const, JOVEJOURNAL OF VISUALIZED EXPERIMENTS, , , - (2019 )
  • Biomaterials-based 3D cell printing for next-generation therapeutics and diagnostics, BIOMATERIALS, , 156, 88-106 (2018 )
  • 3D Bioprinting and its application to organonachip, MICROELECTRONIC ENGINEERING, , 200, 1-11 (2018 )
  • Coaxial Cell Printing of Freestanding Perfusable and Functional In Vitro Vascular Models for Recapitulation of Native Vascular Endothelium Pathophysiology, Advanced Healthcare Materials, , 7, - (2018 )
  • Biomaterialsbased 3D cell printing for nextgeneration therapeutics and diagnostics, BIOMATERIALS, , 156, 88-106 (2018 )
  • Recent Strategies in Extrusion-Based Three-Dimensional Cell Printing toward Organ Biofabrication, ACS Biomaterials-Science & Engineering, , , - (2018 )
  • Decellularized extracellular matrix: A step towards the next generation source for bioink manufacturing, Biofabrication, , 9, - (2017 )
  • Tissue Engineered BioBloodVessel using a Tissue Specific Bioink and 3D Coaxial Cell Printing Technique A Novel Therapy for Ischemic Disease, Advanced Functional Materials, , 27, - (2017 )
  • Development of liver decellularized extracellular matrix bioink for 3D cell printing-based liver tissue engineering, Biomacromolecules, , 18, 1229-1237 (2017 )
  • Recapitulation of Microtissue Models Connected with Realtime Readout Systems via 3D Printing Technology, Journal of Thoracic Disease, , 9, 233-236 (2017 )
  • Development of Liver Decellularized Extracellular Matrix Bioink for ThreeDimensional Cell PrintingBased Liver Tissue Engineering, Biomacromolecules, , 18, 1229-1237 (2017 )
  • Decellularized extracellular matrix a step towards the next generation source for bioink manufacturing, Biofabrication, , 09, - (2017 )
  • 3D printed complex tissue construct using stem cellladen decellularized extracellular matrix bioinks for cardiac repair, BIOMATERIALS, , 112, 264-274 (2017 )
  • 3D Bioprinting and In Vitro Cardiovascular Tissue Modeling, Bioengineering, , 4, - (2017 )
  • Threedimensional printing of tissueorgan analogues containing living cells, Annals of Biomedical Engineering, , 45, 180-194 (2017 )
  • 3D printed structures for delivery of biomolecules and cells tissue repair and regeneration, JOURNAL OF MATERIALS CHEMISTRY B, , 4, 7521-7539 (2016 )
  • Fabrication of a nanofibrous mat with a human skin pattern, LANGMUIR, , 31, 424-431 (2015 )
  • An additive manufacturingbased PCLalginatechondrocyte bioprinted scaffold for cartilage tissue engineering, JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, , 9, 1286-1297 (2015 )
  • Ornamenting 3D printed scaffolds with celllaid extracellular matrix for bone tissue regeneration, BIOMATERIALS, , 37, 230-241 (2015 )
  • Printing threedimensional tissue analogues with decellularized extracellular matrix bioink, NATURE COMMUNICATIONS, , 5, - (2014 )
Domestic Journal Papers
  • 극친수 듀얼스케일 구조 임플란트의 골유착 성능 향상 연구, 한국기계가공학회지, , 22, 10-16 (2023 )
General Journal Journal
  • Advances in 3D Bioprinting Technologies for Cardiovascular Intervention and Regeneration Therapeutics, Journal of Cardiovascular Intervention, , 4, - (2025 )
  • Transformative potential of threedimensional bioprinting technology for advanced organoid research, Organoid, , 4, e8- (2024 )
  • Recent advances in biofabricated gut models to understand the gutbrain axis in neurological diseases, Frontiers in Medical Technology, , 4, - (2022 )
  • 3D bioprinting and decellularized ECMbased biomaterials for in vitro CV tissue engineering, Journal of 3D Printing in Medicine, , 2, 69-87 (2018 )
  • 3D bioprinting technologies and bioinks for therapeutic and tissue engineering applications, Journal of 3D Printing in Medicine, , 2, 187-203 (2018 )
  • Human turbinatederived mesenchymal stem cells differentiated into keratocyte progenitor cells, Journal of Clinical Experimental Ophthalmology, , , - (2017 )

Conference Proceedings

  • Longitudinal Vascular Monitoring of Acute and Diabetic Kidney Diseases with 3D Renal Ultrafast Ultrasound Doppler Imaging, 2024 IEEE Ultrasonics Ferroelectrics and Frequency Control Joint Symposium UFFCJS, 0, 0, 1-4 (2024)
  • 3D Printing of DrugLoaded MultiShell Rods with TimeControlled Release of DexamethasoneBevacizumab for Wet Agerelated Macular Degeneration AMD, , 0, 0, - (2021)
  • Neural Stem Cell Delivery Using Brainderived TissueSpecific Bioink for Recovering from Traumatic Brain Injury, , 0, 0, - (2021)
  • The Development of 3D Cell Printed Vascularized Gastric Cancer Organoid Model for Preclinical Assays by Providing a TissueSpecific microenvironment, , 0, 0, - (2021)
  • 3D Cell Printing of Stomach Cancer Model with Vasculature for Preclinical Assays by Providing a TissueSpecific microenvironment, , 0, 0, - (2021)
  • Seamlessly integrated multimodal imaging system through transparent ultrasound transducer in vivo, Photons Plus Ultrasound Imaging and Sensing 2021, 0, 0, - (2021)
  • A 3D bioprinted occluder for creating stable porcine myocardial infarction models, 대한기계학회 2020년 학술대회, 0, 0, 41-41 (2020)
  • Biofabrication of Cellladen Spheroids for Improving Intercellular Crosstalk, 대한기계학회 2020년 학술대회, 0, 0, 35-35 (2020)
  • Development of highthroughput drug screening platform that reproduces the gastric cancerspecific microenvironment using 3D Bioprinting technology, 대한의용생체공학회 2020 추계학술대회, 0, 0, 27-27 (2020)
  • VisibleLight Activated TissueDerived ECM Bioinks for Printing Biofunctional Tissue Equivalents in CentimeterScale, 제21차 한국조직공학 재생의학회 학술대회, 0, 0, 102-102 (2020)
  • 3D Bioprinting of MultiScale Encapsulation System for Islet Transplantation, 제21차 한국조직공학 재생의학회 학술대회, 0, 0, 145-145 (2020)
  • 3D Bioprinting of Multilayered Tubular Constructs using Esophageal Tissuederived Bioinks for Esophageal Regeneration, 제21차 한국조직공학 재생의학회 학술대회, 0, 0, 140-140 (2020)
  • 3D Bioprinting of InsulinProducing Cell AggregatesDerived from Human Pluripotent Stem Cells with Pancreatic TissueDerived Bioink, 제21차 한국조직공학 재생의학회 학술대회, 0, 0, 101-101 (2020)
  • 3D printed patch of sequential sustainedrelease of dual growth factors for angiogenesis in Moyamoya disease, 2020 KSME 바이오공학부문 춘계학술대회, 0, 0, 35-35 (2020)
  • Seamlessly integrated optical and acoustical imaging systems through transparent ultrasonic transducer, Proc SPIE 112401P Photons Plus Ultrasound Imaging and Sensing 2020, 0, 0, - (2020)
  • Development of mechanically enhanced kagomestructure scaffold for bone regeneration, 대한메이컬3D프린팅학회 제5회 동계학술대회, 0, 0, 12-12 (2020)
  • Efficacy Evaluation of 3D CellPrinted Cardiac Patch using a Swine Model, 2019 한국정밀공학회 추계학술대회, 0, 0, 97-97 (2019)
  • Development of a novel threedimensional printing method dragging technique and its application, 2019 한국정밀공학회 추계학술대회, 0, 0, - (2019)
  • 3D Bioprinting with Light Active Tissuespecific Bioink to Improve Structural Fidelity and Tissue Function, International Conference on Biofabrication 2019, 0, 0, 40-40 (2019)
  • 3D Cell Printing of Patch Type Stem Cell Therapy for Treatment of Liver Cirrhosis, 2019 BMES ANNUAL MEETING, 0, 0, - (2019)
  • Fabrication of Multicellular Spheroids for Demonstrating the Intercellular Crosstalk Using a 3D Bioprinting Technology, Biomedical Engineering Society BMES 2019, 0, 0, - (2019)
  • Optical Fluorescence Imagingbased Realtime Monitoring of Myocardial Tissue Regeneration, Biomedical Engineering Society BMES 2019, 0, 0, - (2019)
  • Efficacy Evaluation of 3D CellPrinted Cardiac Patch using a Swine Model, 대한심장학회 기초과학연구회 하계심포지엄 2019, 0, 0, 59-59 (2019)
  • Biofabrication of Injectable Stem Cellladen Spheroids for the Treatment of Ischemic Heart Diseases, 2019 한국정밀공학회 춘계학술대회, 0, 0, 135-135 (2019)
  • 3D Bioprinting of MicroPorous Macro Encapsulation System for Pancreatic Islet Transplantation, 2019 한국정밀공학회 춘계학술대회, 0, 0, 122-122 (2019)
  • Optical Fluorescence Imagingbased Monitoring of Myocardial Tissue Regeneration after Transplanting Prevascularized Tissue Construct Fabricated by 3D Bioprinting Technology, 2019 한국정밀공학회 춘계학술대회, 0, 0, 122-122 (2019)
  • Fabrication of multilayer complex tubular construct using dragging technique for esophageal regeneration, 2019 한국정밀공학회 춘계학술대회, 0, 0, 83-83 (2019)
  • Development and MechanicalBiological Analyses of Mechanically Enhanced KagomeStructure Scaffold for Bone Regeneration, 2019 한국정밀공학회 춘계학술대회, 0, 0, 123-123 (2019)
  • Development of MacroEncapsulation System for Pancreatic Islet Transplantation using 3D bioprinting, 2019 대한의용생체공학회 춘계학술대회, 0, 0, 16-16 (2019)
  • Development of Stem Cellladen Spheroids Fabrication Using 3D Bioprinting Technology, 2019 대한의용생체공학회 춘계학술대회, 0, 0, 16-16 (2019)
  • Concentric Drugs Carrier controlled Dual Release of DexamethasoneBevacizumab for Wet Agerelated Macular Degeneration AMD, 2019 춘계 대한기계학회 바이오공학부문 학술집, 0, 0, - (2019)
  • Efficacy Study of the 3DBioprinted Stem Cellladen Cardiac Patch using Large Animal Model, 2019 대한기계학회 바이오공학부분 춘계학술대회, 0, 0, 35-35 (2019)
  • Comparison of Human and Porcine Pancreatic Decellularzied Extracellular Matrix Bioink using Proteomic Approaches, SOCIETY FOR BIOMATERIALS 2019 ANNUAL MEETING EXPOSITION, 0, 0, 82-82 (2019)

IP

  • 이세환,장진아,용의중, 카테시안 좌표계용 아르키메데스 와선 g-code 생성기, 한국, C-2019-026431 (PR20)
  • 장진아,김민지,한호현,용의중,조영권, 탈세포화 세포외기질 기반 하이드로겔과 젤라틴화된 탈세포화 세포외기질 기반 하이드겔이 혼합된 하이브리드 바이오잉크, -, PCT/KR2024/0201 (P202)
  • 차형준,차혜교,이재윤,장진아,강다윤, 지혈 및 상처 치유용 탈세포화 세포외기질과 홍합 접착 단백질의 복합 소재, 한국, 10-2024-0114915 (P202)
  • 장진아,김명지, 췌장 유래 탈세포화 세포외기질을 포함하는 췌도세포 배양용 조성물 및 이것의 제조방법, -, PCT/KR2024/0010 (P202)
  • 장진아,김명지, 췌장 유래 탈세포화 세포외기질을 포함하는 췌도세포 배양용 조성물 및 이것의 제조방법, USA, 18/881,567 (P202)
  • 장진아,안혜련,김혜진,이보람, 탈세포화 반응 장치, -, PCT/KR2023/0198 (P202)
  • 장진아,김혜진,이보람, 바이오 잉크 제조 장치, -, PCT/KR2023/0198 (P202)
  • 장진아,강병민,조동우,김대근,김현지, 가시광선 경화용 바이오잉크 조성물, 이것의 제조 방법 및 프린팅 방법, -, PCT/KR2023/0133 (P202)
  • 장진아,강병민,조동우,김대근,김현지, 가시광선 경화용 바이오잉크 조성물, 이것의 제조 방법 및 프린팅 방법, USA, 18/998,223 (P202)
  • 장진아,황승현,김현지, 3D 프린팅용 세포외기질 기반 하이브리드 잉크 및 이의 제조방법 , 일본, 2024-537132 (P202)
  • 장진아,황승현,김현지, 3D 프린팅용 세포외기질 기반 하이브리드 잉크 및 이의 제조방법, USA, 18/721,363 (P202)
  • 장진아,황동규,김명지,최유미,이하람, 폐 오가노이드 배양용 조성물의 제조 방법, 그 조성물 및 이를 이용한 오가노이드 배양 방법, USA, 18/012,958 (P202)
  • 장진아,황동규,이하람,김명지,최유미, 췌장 오가노이드 배양용 조성물의 제조 방법, 그 조성물 및 이를 이용한 오가노이드 배양 방법, USA, 18/012,959 (P202)
  • 장진아,최환용,황동규, 자성 구조체를 포함하는 하이드로젤 구조체 및 이것의 제조방법, 한국, 10-2024-0187603 (IP24)
  • 정완균,최원빈,장진아, 생물 조직 마이크로 박리 장치, 한국, 10-2024-0111591 (IP24)
  • 장진아,김민지,한호현,용의중,조영권, 탈세포화 세포외기질 기반 하이드로겔과 젤라틴화된 탈세포화 세포외기질 기반 하이드겔이 혼합된 하이브리드 바이오잉크, 한국, 10-2024-0023343 (IP24)
  • 김기훈,정운룡,장진아,인용석,황동현, 말초 신경 인터페이스 시스템 및 이를 이용하는 말초 신경 인터페이싱 방법, 한국, 10-2024-0075569 (IP23)
  • 장진아,김현지,조동우,강병민,김대근, 가시광선 경화용 바이오잉크 조성물, 이것의 제조 방법 및 프린팅 방법, 한국, 10-2023-0112689 (2023)
  • 장진아,조동우,김지수, 위 또는 위암 조직 배양을 위한 돼지 위 점막 조직 탈세포화 방법, 지지체 생성용 조성물 및 조직 배양 방법, USA, 18/274,532 (2023)
  • 조동우,장진아,안중호,배미현,이단비,SENTUGCE,강윤정, 자궁 유래 탈세포화 세포외기질을 포함하는 자궁 내막 재생용 조성물 및 이것의 제조방법, -, PCT/KR2023/0082 (2023)
  • 장진아,강다윤,최동휘,이동한,조수민, 대전방지 세포배양 플랫폼 및 그 제조방법, 한국, 10-2023-0058964 (2023)
  • 장진아,조영권,김형배,한현호,엄진섭,박주영, 보형물 삽입 수술에 이용되는 약물전달 패치 및 이의 제조방법, 한국, 10-2023-0081088 (2023)
  • 장진아,황동규, 다축 인공 근육 조직, 이를 형성하기 위한 방법 및 구조체, USA, 18/034,443 (2023)
  • 장진아,강병민,조동우,김대근,김현지, 가시광선 경화용 바이오잉크 조성물, 이것의 제조 방법 및 프린팅 방법, -, PCT/KR2023/0133 (2023)
  • 장진아,김명지, 췌장 유래 탈세포화 세포외기질을 포함하는 췌도세포 배양용 조성물 및 이것의 제조방법, 한국, 10-2023-0009798 (2023)
  • 장진아,김혜진,이보람, 바이오 잉크 제조 장치, 한국, 10-2022-0177590 (2022)
  • 장진아,김혜진,이보람,안혜련, 탈세포화 반응 장치, 한국, 10-2022-0177587 (2022)
  • 장진아,황동규,이하람,김명지,최유미, 췌장 오가노이드 배양용 조성물의 제조 방법, 그 조성물 및 이를 이용한 오가노이드 배양 방법, EP, 21831827.7 (2022)
  • 장진아,황동규,김명지,최유미,이하람, 폐 오가노이드 배양용 조성물의 제조 방법, 그 조성물 및 이를 이용한 오가노이드 배양 방법, EP, 21832927.4 (2022)
  • 장진아,황동규,이하람,김명지,최유미, 췌장 오가노이드 배양용 조성물의 제조 방법, 그 조성물 및 이를 이용한 오가노이드 배양 방법, USA, 18/012,959 (2022)
  • 장진아,황동규,김명지,최유미,이하람, 폐 오가노이드 배양용 조성물의 제조 방법, 그 조성물 및 이를 이용한 오가노이드 배양 방법, USA, 18/012,958 (2022)
  • 장진아,황동규,이하람,김명지,최유미, 췌장 오가노이드 배양용 조성물의 제조 방법, 그 조성물 및 이를 이용한 오가노이드 배양 방법, -, PCT/KR2021/0079 (2022)
  • 장진아,황동규,김명지,최유미,이하람, 폐 오가노이드 배양용 조성물의 제조 방법, 그 조성물 및 이를 이용한 오가노이드 배양 방법, -, PCT/KR2021/0079 (2022)
  • 장진아,조동우, 유도만능줄기세포 유래 세포치료제의 치료 효율 및 성능 향상을 위한 중간엽 줄기세포 기반 패치 적용 기술, 한국, 10-2020-0026109 (2022)
  • 조동우,배미현,장진아,강윤정,안중호,이단비,SENTUGCE, 자궁 유래 탈세포화 세포외기질을 포함하는 자궁 내막 재생용 조성물 및 이것의 제조방법, 한국, 10-2022-0131178 (2022)
  • 장진아,정승만,홍영준,김한별, 3차원 바이오 프린팅 폐색기를 이용한 허혈성 심질환 동물 모델 및 이의 제조방법, USA, 17/912,480 (2022)
  • 장진아,김준영,김현지,한원일,조동우,장제환, 세포외기질 기반 생체접착제, USA, 17/936,385 (2022)
  • 장진아,조동우,배미현,응오 티 후옌,조한상, 돼지 뇌 유래 탈세포화 세포외기질을 포함하는 신경전구세포 분화 및 신경세포 배양용 조성물, 및 이것의 제조방법, 한국, 10-2022-0057848 (2022)
  • 조동우,응오 티 후옌,배미현,장진아,조한상, 매트리젤을 포함하는 뇌면역세포 배양용 조성물, 및 이것의 제조방법, 한국, 10-2022-0057849 (2022)
  • 장진아,조동우,김지수, 위 또는 위암 조직 배양을 위한 돼지 위 점막 조직 탈세포화 방법, 지지체 생성용 조성물 및 조직 배양 방법, -, PCT/KR2022/0031 (2022)
  • 장진아,황승현,김철홍,백선하,김종범, 생체재료 기반 약물전달 패치, 이의 제조방법 및 이의 용도, -, PCT/KR2022/0041 (2022)
  • 장진아,남효영,조영삼,서경덕,정훈진,김지현,정재희,조영권,이승재,조동우,하동헌, 3D 바이오프린팅을 이용한 다층구조를 갖는 인공 식도 구조체 제작 및 그 제작 방법, USA, 17/764,055 (2022)
  • 장진아,황승현,김현지, 3D 프린팅용 세포외기질 기반 하이브리드 잉크 및 이의 제조방법, -, PCT/KR2022/0035 (2022)
  • 조동우,배미현,장진아,응오 티 후옌,조한상, 돼지 뇌 유래 탈세포화 세포외기질을 포함하는 신경전구세포 분화 및 신경세포 배양용 조성물, 및 이것의 제조방법, 한국, 10-2022-0029549 (2021)
  • 조동우,배미현,장진아,응오 티 후옌,조한상, 돼지 뇌 유래 탈세포화 세포외기질을 포함하는 신경전구세포 분화 및 신경세포 배양용 조성물, 및 이것의 제조방법, 한국, 10-2022-0027799 (2021)
  • 조동우,배미현,장진아,응오 티 후옌,조한상, 매트리젤을 포함하는 뇌면역세포 배양용 조성물, 및 이것의 제조방법, 한국, 10-2022-0029550 (2021)
  • 조동우,배미현,장진아,응오 티 후옌,조한상, 매트리젤을 포함하는 뇌면역세포 배양용 조성물, 및 이것의 제조방법, 한국, 10-2022-0027800 (2021)
  • 조동우,김현지,장진아, 개질된 세포외기질 기반 하이드로겔, 이의 제조방법 및 이의 용도, -, PCT/KR2021/0173 (2021)
  • 장진아,황승현,김철홍,김종범,백선하, 생체재료 기반 약물전달 패치, 이의 제조방법 및 이의 용도, 한국, 10-2022-0002182 (2021)
  • 장진아,황승현,김철홍,김종범,백선하, 생체재료 기반 약물전달 패치, 이의 제조방법 및 이의 용도, 한국, 10-2022-0002182 (2021)
  • 장진아,황승현,김현지, 3D 프린팅용 세포외기질 기반 하이브리드 잉크 및 이의 제조방법, 한국, 10-2021-0182375 (2021)
  • 장진아,황동규, 다축 인공 근육 조직, 이를 형성하기 위한 방법 및 구조체, -, PCT/KR2021/0156 (2021)
  • 장진아,황동규, 다축 인공 근육 조직, 이를 형성하기 위한 방법 및 구조체, 한국, 10-2021-0147809 (2021)
  • 장진아,황동규, 다축 인공 근육 조직, 이를 형성하기 위한 방법 및 구조체, 한국, 10-2021-0147809 (2021)
  • 장진아,용의중,남효영,조성건,김동환, 수축력 측정 센서 및 그 제조 방법, 한국, 10-2021-0143053 (2021)
  • 장진아,용의중,남효영,조성건,김동환, 수축력 측정 센서 및 그 제조 방법, 한국, 10-2021-0143053 (2021)
  • 조동우,김현지,장진아, 개질된 세포외기질 기반 하이드로겔, 이의 제조방법 및 이의 용도, USA, 17/502,152 (2021)
  • 조동우,김현지,장진아,한원일,김준영,장제환, 세포외기질 기반 생체접착제, 한국, 10-2021-0133757 (2021)
  • 김현지,장진아,조동우,한원일,김준영,장제환, 세포외기질 기반 생체접착제, 한국, 10-2021-0133757 (2021)
  • 장진아,김현지,조동우,강병민,김대근, 가시광선 경화용 바이오잉크 조성물, 이것의 제조 방법 및 프린팅 방법, 한국, 10-2022-0116901 (2021)
  • 장진아,최유미,이하람,김명지,황동규, 탈세포 기술을 이용한 췌장 지지체 제작 및 오가노이드 배양응용, 한국, 10-2021-0056943 (2021)
  • 장진아,최유미,이하람,김명지,황동규, 췌장 오가노이드 배양용 조성물의 제조 방법, 그 조성물 및 이를 이용한 오가노이드 배양 방법, 한국, 10-2021-0056943 (2021)
  • 장진아,최유미,이하람,김명지,황동규, 폐 오가노이드 배양용 조성물의 제조 방법, 그 조성물 및 이를 이용한 오가노이드 배양 방법, 한국, 10-2021-0056942 (2021)
  • 장진아,황동규,조영권, 3차원 바이오 프린팅을 이용한 마크로-마이크로 통합형 세포 캡슐화 시스템의 제조 방법, 한국, 10-2021-0057587 (2021)
  • 장진아,황동규,조영권, 3차원 바이오 프린팅을 이용한 마크로-마이크로 통합형 세포 캡슐화 시스템의 제조 방법, 한국, 10-2021-0057587 (2021)
  • 김지수,조동우,장진아, 위 또는 위암 조직 배양을 위한 돼지 위 점막 조직 탈세포화 방법, 지지체 생성용 조성물 및 조직 배양 방법, 한국, 10-2021-0029911 (2021)
  • 장진아,김지수,조동우, 위 또는 위암 조직 배양을 위한 돼지 위 점막 조직 탈세포화 방법, 지지체 생성용 조성물 및 조직 배양 방법, 한국, 10-2021-0029911 (2021)
  • 김현지,조동우,장진아, 개질된 세포외기질 기반 하이드로겔, 이의 제조방법 및 이의 용도, 한국, 10-2021-0005008 (2021)
  • 조동우,김현지,장진아, 개질된 세포외기질 기반 하이드로겔, 이의 제조방법 및 이의 용도, 한국, 10-2021-0005008 (2021)
  • 장진아,이수연,한호현,백선하,이희경,Gao Ge, 두 종류 이상의 조직으로부터 유래된 탈세포화 물질의 생성 방법 및 이를 이용한 생체모사체 생성방법, 한국, 10-2020-0186802 (2020)
  • 장진아,이수연,한호현,백선하,이희경,Gao Ge, 두 종류 이상의 조직으로부터 유래된 탈세포화 물질의 생성 방법 및 이를 이용한 생체모사체 생성방법, 한국, 10-2020-0186802 (2020)
  • 장진아,용의중,김동환,남효영,조성건, 3차원 인공 심근 조직의 수축력 측정을 위한 센서가 내장된 2-포스트 구조체 및 3차원 프린팅을 이용한 그 제조방법, 한국, 10-2020-0139693 (2020)
  • 장진아,황동규, 3차원 인공 근육 조직의 방향을 조절하는 폴리머 구조체의 제작 방법, 한국, 10-2020-0143769 (2020)
  • 장진아,이승재,조영삼,서경덕,정훈진,조동우, 3D 바이오프린팅을 이용한 다층구조를 갖는 인공 혈관 구조체 제작 및 그 제작 방법, -, PCT/KR2020/0114 (2020)
  • 장진아,최유미,황동규,이하람,김명지, 폐 오가노이드 배양용 조성물의 제조 방법, 그 조성물 및 이를 이용한 오가노이드 배양 방법, 한국, 10-2020-0080518 (2020)
  • 장진아,정승만,홍영준,김한별, 3차원 바이오 프린팅 폐색기를 이용한 허혈성 심질환 동물 모델 및 이의 제조방법, -, PCT/KR2020/0088 (2020)
  • 장진아,최유미,황동규,이하람,김명지, 췌장 오가노이드 배양용 조성물의 제조 방법, 그 조성물 및 이를 이용한 오가노이드 배양 방법, 한국, 10-2020-0080514 (2020)
  • 장진아,남효영,조영삼,서경덕,정훈진,김지현,정재희,조영권,이승재,조동우,하동헌, 3D 바이오프린팅을 이용한 다층구조를 갖는 인공 식도 구조체 제작 및 그 제작 방법, -, PCT/KR2020/0118 (2020)
  • 조동우,김현지,장진아, 3D 프린팅 기술을 이용하여 정렬된 콜라겐 섬유를 포함하는 투명한 각막 조직의 제조방법, 한국, 10-2020-0048830 (2020)
  • 김현지,조동우,장진아, 3D 프린팅 기술을 이용하여 정렬된 콜라겐 섬유를 포함하는 투명한 각막 조직의 제조방법, 한국, 10-2020-0048830 (2020)
  • 조동우,김지수,장진아,Gao Ge,원재연,박영훈,김종민, 이중 약물 방출을 위한 약물 전달체, -, PCT/KR2020/0025 (2020)
  • 장진아,최유미,김지수,조동우,이장철,권지영,이희경,나득채,민서연, 생체 내 종양 미세 환경을 재현하는 생체 외 종양 약물 시험 플랫폼 및 그 제조방법, 한국, 10-2020-0085584 (2019)
  • 장진아,최유미,김지수,조동우,이장철,권지영,이희경,나득채,민서연, 생체 내 종양 미세 환경을 재현하는 생체 외 종양 약물 시험 플랫폼 및 그 제조방법, 한국, 10-2020-0085584 (2019)
  • 장진아,정승만,홍영준,김한별, 3차원 바이오 프린팅 폐색기를 이용한 허혈성 심질환 동물 모델 및 이의 제조방법, 한국, 10-2020-0034704 (2019)
  • 장진아,정승만,홍영준,김한별, 3차원 바이오 프린팅 폐색기를 이용한 허혈성 심질환 동물 모델 및 이의 제조방법, 한국, 10-2020-0034704 (2019)
  • 장진아,DasSanskrita,박예진,황동규,용의중, 3차원 바이오프린팅 기술을 이용한 세포 스페로이드 제조방법, 한국, 10-2019-0130991 (2019)
  • 장진아,DasSanskrita,박예진,황동규,용의중, 3차원 바이오프린팅 기술을 이용한 세포 스페로이드 제조방법, 한국, 10-2019-0130991 (2019)
  • 장진아,황동규,박예진,DasSanskrita,용의중, 3차원 바이오프린팅 기술을 이용한 세포 스페로이드 제조방법, USA, 16/660,924 (2019)
  • 장진아,이승재,조영삼,서경덕,정훈진,조동우, 3D 바이오프린팅을 이용한 다층구조를 갖는 인공 혈관 구조체 제작 및 그 제작 방법, 한국, 10-2019-0104975 (2019)
  • 장진아,이승재,조영삼,서경덕,정훈진,조동우, 3D 바이오프린팅을 이용한 다층구조를 갖는 인공 혈관 구조체 제작 및 그 제작 방법, 한국, 10-2019-0104975 (2019)
  • 장진아,남효영,조영삼,서경덕,정훈진,김지현,정재희,조영권,이승재,조동우,하동헌, 3차원 바이오프린팅을 이용한 다층 구조를 갖는 인공 식도 구조체 및 제조장치와 제조방법, 한국, 10-2019-0118951 (2019)
  • 장진아,남효영,조영삼,서경덕,정훈진,김지현,정재희,조영권,이승재,조동우,하동헌, 3D 바이오프린팅을 이용한 다층구조를 갖는 인공 식도 구조체 제작 및 그 제작 방법, 한국, 10-2019-0118951 (2019)
  • 조동우,김지수,장진아,Gao Ge,원재연,박영훈,김종민, 이중 약물 방출을 위한 약물 전달체, 한국, 10-2019-0034479 (2019)
  • 조동우,김지수,장진아,Gao Ge,원재연,박영훈,김종민, 이중 약물 방출을 위한 약물 전달체, 한국, 10-2019-0034479 (2019)
  • 장진아,황동규,박예진,DasSanskrita,용의중, 3차원 바이오프린팅 기술을 이용한 세포 스페로이드 제조방법, 한국, 10-2018-0127389 (2018)
  • 조동우,김석원,장진아,김혜연,이순민,박훈준,DasSanskrita, 간세포성장인자를 발현하는 중간엽줄기세포를 유효성분으로 포함하는 혈관계 질환 예방 또는 치료용 약학적 조성물, -, PCT/KR2018/0089 (2018)
  • 장진아,조동우,이순민,박훈준,김혜연,김석원,DasSanskrita, 간세포성장인자를 발현하는 중간엽줄기세포를 유효성분으로 포함하는 혈관계 질환 예방 또는 치료용 약학적 조성물, 한국, 10-2018-0091280 (2018)
  • 조동우,김재욱,공정식,이희경,장진아, 체외 세포 배양 블록, -, PCT/KR2018/0080 (2018)
  • 조동우,김현지,하동헌,신종철,고현선,장진아, 양막 수복용 플러그, USA, 15/869,071 (2018)
  • 조동우,장진아, 3차원 프린팅용 조성물, 이의 제조방법, 및 이를 사용한 3차원 구조체의 제조방법, USA, 15/561,350 (2017)
  • 조동우,장진아, 3차원 프린팅용 조성물, 이의 제조방법, 및 이를 사용한 3차원 구조체의 제조방법, 중국, 201680018382.8 (2017)
  • 조동우,김석원,장진아,김혜연,이순민,박훈준, 간세포성장인자를 발현하는 중간엽줄기세포를 유효성분으로 포함하는 혈관계 질환 예방 또는 치료용 약학적 조성물, 한국, 10-2017-0099112 (2017)
  • 조동우,윤승규,한원일,김정희,이형석,이은별,박동준,장진아, 간 질환 치료제, 한국, 10-2018-0015798 (2017)
  • 조동우,김재욱,공정식,이희경,장진아, 체외 세포 배양 블록, 한국, 10-2017-0091016 (2016)
  • 조동우,Gao Ge,김택경,박영훈,원재연 ,장진아, 이중 약물 방출을 위한 안과용 조성물, 한국, 10-2016-0115911 (2016)
  • 조동우,최영진,김택경,이희경,김석원,황운봉,정종현,박지원,장진아, 근육 유래 탈세포화 세포외기질을 이용한 이식용 근육 조직 제작 방법, 한국, 10-2016-0114039 (2016)
  • 조동우,장진아, 3차원 프린팅용 조성물, 이의 제조방법, 및 이를 사용한 3차원 구조체의 제조방법, -, PCT/KR2016/0018 (2016)
  • 조동우,김병수,나완근,양희석,이민석,장진아, 세포 외 기질이 코팅된 골 재생용 지지체, -, PCT/KR2015/0114 (2016)
  • 조동우,김현지,하동헌,신종철,고현선,장진아, 양막 수복용 플러그, 한국, 10-2017-0006198 (2016)
  • 조동우,김현지,문영미,박문여,장진아, 생체적합성 각막 제작방법 및 생체적합성 조직 탈세포 처리 조성물, USA, 15/131,302 (2015)
  • 조동우,박훈준,장진아, 심근조직 재생용 3차원 구조체 및 이의 제조방법, -, PCT/KR2016/0030 (2015)
  • 조동우,장진아, 3차원 프린팅용 조성물, 이의 제조방법, 및 이를 사용한 3차원 구조체의 제조방법, 한국, 10-2015-0042412 (2015)
  • 조동우,박훈준,장진아, 심근조직 재생용 3차원 구조체의 제조방법, 한국, 10-2015-0042418 (2015)
  • 조동우,박문여,문영미,김현지,장진아, 생체적합성 각막 생성방법 및 생체적합성 조직 탈세포 처리 조성물, 한국, 10-2015-0054725 (2015)
  • 조동우,김병수,양희석,나완근,이민석,장진아, 세포 외 기질이 코팅된 골 재생용 지지체, 한국, 10-2015-0050930 (2015)

Book

  • 재생의학, 1180, JANG, J (2023 )
  • Organ Printing 2nd edition, 83, JANG, J (2023 )
  • Handbook of the Extracellular Matrix BiologicallyDerived Materials, 500, JANG, J (2023 )
  • Biomimetic Microengineering, 380, Jang, Jinah (2020 )
  • Biofabrication and 3D Tissue Modeling, 352, JANG, J (2019 )
  • 3D Bioprinting Modeling In Vitro Tissues and Organs Using TissueSpecific Bioinks, 114, JANG, J (2019 )
  • Decellularized Extracellular Matrix Characterization Fabrication and Applications, 352, JANG, J (2019 )
  • 3D Bioprinting in Medicine, 209, JANG, J (2019 )
  • 재생의학 Regenerative Medicine, 1544, JANG, J (2018 )
  • 3D 세포프린팅 기술 첨단바이오의약품의 새 장을 열다, na, JANG, J (2017 )

Invited Talk or Presentations

  • Bioprinting Technology for Advanced Tissue Therapeutics, , 0, 0, - (2024)
  • A new extrusionbased 3D printing approach for tubular tissue regeneration, , 0, 0, - (2024)
  • 3D 프린팅 기술로 제작된 다층 구조의 약물 패치를 이용한 가슴 보형물 수술 이후 구형구축의 예방, , 0, 0, - (2024)
  • Development of a Bioreactor Mimicking Peristalsis for Esophageal Tissue Regeneration, , 0, 0, - (2024)
  • Bioprinting Technology for Advanced Tissue Therapy, , 0, 0, - (2024)
  • Enhancing Crosslinking Efficiency via Chain Reaction in a Visible LightActivated Photocrosslinking System Using Cationized TissueSpecific Bioinks, , 0, 0, - (2024)
  • 3D Printed Multilayered ECM Patch for Delivering Dualdrugs to Prevent Implant Induced Capsular Contracture, , 0, 0, - (2024)
  • Development of Cardiac ChamberShaped 4DPrinted Structure Mimicking Myocardial Fiber Orientation Using Magnetic Polarity Patterning, , 0, 0, - (2024)
  • 3D Bioprinting of Cellular Constructs and Extracellular Matrices for Customized Microarchitecture and Microenvironments, , 0, 0, - (2024)
  • Multiscale Conformal 3D Bioprinting Technique for Recapitulating MacrotoMicroscopic Tissue Construct, , 0, 0, - (2024)
  • Embedded 3D Bioprinting of Stem Cellderived Pancreatic Islets with PeriVasculature in a Bespoke Isletspecific Niche, , 0, 0, - (2024)
  • Fabrication of a Vascularized Hepatobiliary in vitro Model through 3D Bioprinting for Studying Metabolic Liver Diseases, , 0, 0, - (2024)
  • Biohybrid 3D printing of Plugin Vertical Electrode for the Integration with Engineered Pancreatic Tissue to Enhance Function and Promote Maturation, , 0, 0, - (2024)
  • Recapitulation of Gastric Tumor Microenvironment to Investigate its Abnormal Physical Traits via Bioprinting Technology, , 0, 0, - (2024)
  • Development of an Elastic Artificial Esophagus Structure Using a 3D Dragging Printing Technique, , 0, 0, - (2024)
  • Advanced in vitro multiorgan models address complex disease interactions and enhance clinical applications, , 0, 0, - (2024)
  • Bespoke Bioprinting of Stem Cellderived Pancreatic Islets and Vasculatures within the Engineered PeriIslet Niche, , 0, 0, - (2024)
  • Exploration of Tissue Specificity Preservation in Liver Decellularized Extracellular Matrix for Guiding Hepatic Progenitor Differentiation into Functional Hepatocytes, , 0, 0, - (2024)
  • An in vitro GutBrain Axis Model for Studying the Role of Enteroendocrine Pathway, , 0, 0, - (2024)
  • 3D Printed Multilayered Local Drug Delivery Patch for Preventing Implant Induced Capsular Contracture, , 0, 0, - (2024)
  • A Biohybrid 3DPrinted Muscular TissueElectronics Platforms for Continuous Musculoskeletal Disease Research, , 0, 0, - (2024)
  • Bioprinting Technology for Advanced Tissue Therapy, , 0, 0, - (2024)
  • Bioprinting Technology for Advanced Tissue Therapy, , 0, 0, - (2024)
  • Bioprinting Technology for Advanced Tissue Therapy, , 0, 0, - (2024)
  • Bioprinting Technology for Advanced Tissue Therapeutics, , 0, 0, - (2024)
  • Biohybrid 3D Printing of ElectrodeInterconnected Pancreatic Tissue to Stimulate and Enhance Beta Cell Functions, , 0, 0, - (2024)
  • Development of a Novel Extrusionbased 3dprinting Method Dragging Technique and its Application to Tubular Tissue Engineering, , 0, 0, - (2024)
  • Investigation Of Preserved Tissue Specificity Of Liver Decellularized Extracellular Matrix To Guide Hepatic Progenitor Differentiation Into Functional Hepatocyte, , 0, 0, - (2024)
  • Onestep Biohybrid Printing of 3D Tissue and Electrode for Uniform Electrical Stimulation to Pancreatic Islets, , 0, 0, - (2024)
  • Development of a Biohybrid 3DPrinted Muscular TissueSensor Platform for Excitation–Contraction Coupling Monitoring, , 0, 0, - (2024)
  • Application of advanced various tissuespecific bioinks for engineering vascularized in vitro multiorgandisease constructs, , 0, 0, - (2024)
  • Bioprintingassisted Tissue Assembly for Cardiac Chamber Fabrication and disease modeling, , 0, 0, - (2024)
  • Development of a Transplantable Prevascularized Constructs with Low Viscous Tissuespecific Bioinks by Using Microfluidic 3D Bioprinting Technique, , 0, 0, - (2024)
  • 3D Bioprinted Patch with Placentabased ECM and Adjustable Drug Release for Holistic Diabetic Wound Healing, , 0, 0, - (2024)
  • Spontaneous cellular assembly in artificial small diameter blood vessels produced using a novel extrusionbased 3D printing technique, , 0, 0, - (2024)
  • Development of Cardiac ChamberShaped 4DPrinted Structure Mimicking Myocardial Fiber Orientation Using Magnetic Polarity Patterning, , 0, 0, - (2024)
  • Bioprinting Technology for Translational Medicine, , 0, 0, - (2024)
  • Bespoke Bioprinting of Stem Cellderived Islets and Vascular Network within the Engineered Pancreatic Niche for Studying Diabetic Diseases, , 0, 0, - (2024)
  • Enhancing the stress durability of 3D bioprinted tissues using sequential crosslinking of bioinks, , 0, 0, - (2024)
  • Elaboration of Liver Decellularized Extracellular MatrixDerived Bioink to Confer Microenvironmental Cues for Hepatic Progenitor Differentiation Towards Hepatocyte Lineage Specification, , 0, 0, - (2024)
  • Tissue regenerative Extracellular Matrixbased Bioadhesive Hydrogel for Neural Interfaces, , 0, 0, - (2024)
  • An In Vitro Human Gut Model With Enhanced Enteroendocrine Function Using GutSpecific Biochemical and Biophysical Cues, , 0, 0, - (2024)
  • Bioprinting Technology for Advanced Tissue Therapeutics, , 0, 0, - (2024)
  • VIsible LightInduced 3D Coaxial Bioprinting of 3D BIomimetic Liverlike Tissue Module with Patterned Vascular Structures for Volumetric Tissue Reconstruction, , 0, 0, - (2024)
  • Investigation of Tissue Specificity Retention in Liver Decellularized Extracellular Matrix to Direct Hepatic Progenitor Differentiation into Functional Hepatocytes, , 0, 0, - (2024)
  • Enhancing Hydrogel Networks via SingleStep Sequential Crosslinking Strategy Initiated by Visible LightActivated Photocrosslinking Systems, , 0, 0, - (2024)
  • Advancing In Vitro Human Gut Modeling Through Enhanced Enteroendocrine Functionality Using GutSpecific Biochemical and Biophysical Stimuli, , 0, 0, - (2024)
  • 3D Bioprinting Technologies for Fabrication of Human Tissues Orchestrating Cells and Extracellular Matrix for Tailored Microenvironments, , 0, 0, - (2024)
  • Optimization of the Manufacturing Bioprinted 3D Corneal Patches Derived from Electron Beam Sterilized CorneadECM Hydrogel for Clinical Translations, , 0, 0, - (2024)
  • Development of an artificial esophageal structure using thermoplastic polyurethane to attribute elasticity using a 3D dragging printing technique , , 0, 0, - (2024)
  • Bioprinting Technology for Advanced Tissue Therapeutics, , 0, 0, - (2024)
  • A 3D Printed ECMbased Patch for Local Drug Delivery with Controlledrelease in Prevention of Capsular Contracture, , 0, 0, - (2024)
  • A Strategy to Strengthen Hydrogel Network through Sequential Crosslinking via Chain Reaction in Visible LightActivated Photocrosslinking Systems, , 0, 0, - (2024)
  • 3D Printing of Magnetic Patterned Construct to Recapitulate Left Ventricular Myocardial Fiber Orientation, , 0, 0, - (2024)
  • 3D Bioprinted Vascularized Tubular Bile Duct Conduits, , 0, 0, - (2024)
  • Bioprinting Technology for Advanced Tissue Therapeutics, , 0, 0, - (2024)
  • Dragging 3D printing technique controls pore sizes of tissue engineered blood vessels to induce spontaneous cellular assembly, , 0, 0, - (2023)
  • 조직공학 응용을 위한 바이오프린팅 기술, , 0, 0, - (2023)
  • 3D Bioprinting of Multilayered Drug Delivery Patch with Controlled Drug Release, , 0, 0, - (2023)
  • 신경퇴행성 질환 연구를 위한 3차원 세포프린팅 기반 뇌 미세환경 모사 모델의 개발, , 0, 0, - (2023)
  • Advancing in vitro organ models for integrative disease analysis and exploration, , 0, 0, - (2023)
  • 3D 바이오프린팅 기술의 외과 분야 응용 방안, , 0, 0, - (2023)
  • Bioprinting Technology for Advanced Tissue Therapeutics , , 0, 0, - (2023)
  • Highly Biocompatible Extracellular Matrixbased Adhesive Hydrogel for Neural Interfaces, , 0, 0, - (2023)
  • UTERINEDERIVED DECMS IMPROVE ENDOMETRIAL REGENERATION RECEPTIVITY AND FERTILIZATION IN THIN ENDOMETRIUM MODEL, , 0, 0, - (2023)
  • Bioprintingbased Selfassembly of Human Isletlike Cellular Aggregates and Vasculatures within the Engineered PeriIslet Niche, , 0, 0, - (2023)
  • Bioprintingbased bespoke pancreatic niche for stem cellderived human isletlike cellular aggregates and vasculatures to study diabetic diseases, , 0, 0, - (2023)
  • 3D Printing of Tissuestimulator Integrated Biohybrid Platform to Increase Efficacy of Pancreatic Islets Through Electrical Stimulation, , 0, 0, - (2023)
  • Advancements in 3D bioprinting technologyderived biofabrications for establishing highquality in vitro tissuedisease models, , 0, 0, - (2023)
  • Biohybrid 3D Printing of a TissueSensor Platform for Cardiac Excitation–Contraction Coupling Monitoring, , 0, 0, - (2023)
  • Microfluidic 3D Bioprinting Technique for Developing a Transplantable Prevascularized Tissue Constructs with Low Viscous Bioinks, , 0, 0, - (2023)
  • 3D Bioprinted Multilayered Sequential Drug Releasing Patch for Regulating Capsular Contrature, , 0, 0, - (2023)
  • Bioprinting of LiverSpecific Extracellular Matrix for Providing Microenvironmental Cues in Hepatic Progenitor Differentiation into Hepatocytes, , 0, 0, - (2023)
  • A Strategy for Enhancing Shape Fidelity Using Modulus Switching TissueSpecific Bioinks, , 0, 0, - (2023)
  • Enhancement of Enteroendocrine Function in an in vitro Gut Model via Increased Cell Plasticity Using GutSpecific Biochemical and Biophysical Cues, , 0, 0, - (2023)
  • Development of 3D CellPrinted TissueSpecific Type 2 Diabetes MultipleOrgan OnAChip Model Applicable to Diabetes Complications, , 0, 0, - (2023)
  • Development of 3D Bioprinted Neural Network to Simulate Brain Microenvironment and Its Application to Neurodegeneration Study, , 0, 0, - (2023)
  • 3D vascularized patient derived organoid model ex vivo prediction of response to VEGFR2 targeted therapy for HER2 negative gastric cancer patients, , 0, 0, - (2023)
  • Assembled Trachea Epithelium and Blood Vessel Endothelium Modular Study for Asthma, , 0, 0, - (2023)
  • Development of in vitro multiorgan model by focusing on the gutkidney axis in secondary hyperoxaluria disease, , 0, 0, - (2023)
  • Hybrid Biofabrication Technique to Fabricate Innervated in vitro Gut Models, , 0, 0, - (2023)
  • Bioprinting of Bespoke Pancreatic Niche for Human Isletlike Cellular Aggregates and Vasculatures to Model Diabetic Diseases, , 0, 0, - (2023)
  • Establishment of microfluidic in vitro multiorgan model using 3D bioprinting technique for understanding the intestinekidney axis related in secondary hyperoxaluria disease, , 0, 0, - (2023)
  • Development of in vitro Human Enteroendocrine Models to Study Neurodegenerative Disease in GutBrain Axis Context, , 0, 0, - (2023)
  • Influence of Intrinsic Electrostatic Fields Detected in Cellular Cultures on Cell Proliferation and Functionality, , 0, 0, - (2023)
  • Bioprinting Technology For Advanced Future Therapeutics, , 0, 0, - (2023)
  • 3D Printed TissueStimulator Integrated Biohybrid Platform for Electrical Stimulation on Pancreatic Tissue, , 0, 0, - (2023)
  • Assessing the Influence of Electrostatic Fields Observed in Cell Culture on Cellular Proliferation, , 0, 0, - (2023)
  • Development of 3D Bioprinted Vascularized Respiratory Modular Assembly for Inflammatory Respiratory Disease, , 0, 0, - (2023)
  • Engineering Periislet Niche and Cellular Organization for Stem Cellderived Islets and Vasculatures using Bioprinting Technology, , 0, 0, - (2023)
  • Gutspecific biochemical and biophysical cues promote the enteroendocrine function of in vitro gut model, , 0, 0, - (2023)
  • Evaluation of the Impact of Inherent Electrostatic Fields Observed in Cell Culture on Cellular Proliferation, , 0, 0, - (2023)
  • Uterinederived dECMs Provide Enhanced Endometrial Regeneration Receptivity And Fertilization, , 0, 0, - (2023)
  • 3D Bioprinting of Multilayered Drug Delivery Patch for Suppressing Implant Fibrosis, , 0, 0, - (2023)
  • 바이오프린팅 기반 바이오 인공장기 제조 기술, , 0, 0, - (2023)
  • 3D Printed Biohybrid Pancreatic Platform to Promote Insulin Secretion of Beta Cells Through Electrical Stimulation, , 0, 0, - (2023)
  • Establishment of microfluidic 3D in vitro multiorgan model by recapitulating the crosstalk of gut and kidney related in secondary hyperoxaluria disease, , 0, 0, - (2023)
  • Advanced in Vitro Lung Cancer Models 3D Bioprinted Vascularized Lung Cancer Organoid Models with Underlying Disease to Enable Accurate Drug Evaluation, , 0, 0, - (2023)
  • 3D bioprinting of ex vivo patientderived organoid model for prediction of response to targeted therapy for diffuse type gastric cancer patients, , 0, 0, - (2023)
  • 신경퇴행성 질환 연구를 위한 3차원 세포프린팅 기반 뇌 미세환경 모사 모델의 개발, , 0, 0, - (2023)
  • Bioprinting Technology for Manufacturing OrganonDemand , , 0, 0, - (2023)
  • Development of in vitro Human Enteroendocrine Models by Recapitulating IntestineSpecific Biochemical and Biophysical Cues, , 0, 0, - (2023)
  • Bioprinting Technology for Modeling Tumor Microenvironment in vitro, , 0, 0, - (2023)
  • Bioprinting Technology for Manufacturing OrganonDemand , , 0, 0, - (2023)
  • Bioprinting Technology for Advanced Tissue Therapeutics , , 0, 0, - (2023)
  • Biohybrid Platform for Electrical Stimulation to Promote Insulin Secretion of Beta Cells, , 0, 0, - (2022)
  • 3D Bioprintingbased Fabrication of Placentaderived ECM Bioink Patch with Adiposederived MSCs for Diabetic Wound Healing, , 0, 0, - (2022)
  • 3D Bioprinting of Drug Releasing Encapsulation System for Supporting Survival of Pancreatic Islet Transplants, , 0, 0, - (2022)
  • Fabrication of a tissuesensor platform using biohybrid 3D printing technology for continuously monitoring of the chronic effect of druginduced cardiotoxicity, , 0, 0, - (2022)
  • A Transplantable Prevascularized Tissue Platform by using a Multimaterial Microfluidic 3D Bioprinting Method, , 0, 0, - (2022)
  • Development of a TissueSensor Platform using Biohybrid 3D Printing Technology for Continuous Monitoring of DrugInduced Cardiac Contraction Changes, , 0, 0, - (2022)
  • Development of Pancreatic Construct for Type 1 Diabetes by 3D cell Printing Technology, , 0, 0, - (2022)
  • Development of 3D Cell Printed Retina Onachip for Retinal Vascular Disease Study, , 0, 0, - (2022)
  • 3차원 세포프린팅을 통한 VEGFR2 타겟의 개인맞춤형 진단을 위한 혈관화 환자 유래 위암 오가노이드, , 0, 0, - (2022)
  • 3차원 세포프린팅 기반 체외 신경망 제작, , 0, 0, - (2022)
  • AngiogenesisMyogenesis Coupling in an InBath Bioprinted Skeletal Muscle Tissue provides a Regenerationcompetent Satellite Cell Niche, , 0, 0, - (2022)
  • Development of 3D Bioprinted in Vitro Distal Lung Cancer Models with Lung Fibrosis for Personalized Cancer Therapy, , 0, 0, - (2022)
  • 3D Printing of Biohybrid Electrical Stimulation Platform to Promote Insulin Secretion of Pancreatic Beta Cell, , 0, 0, - (2022)
  • 3D Bioprintingbased Tissue Assembly to Generate Multiaxially Contracting Engineered Heart Tissue, , 0, 0, - (2022)
  • Development of 3D printed thermo responsive skin derived decellularizedextracellular matrix hydrogel adhesive patch with controllable shrinkage behavior, , 0, 0, - (2022)
  • Selfassembly small diameter vasculature via dragging 3D printing technique, , 0, 0, - (2022)
  • 3D Bioprinting of Isletlike Aggregates Using Dualcrosslinked Hydrogel with Promoted Biofunctionality and Enhanced Shape Stability, , 0, 0, - (2022)
  • A transplantable prevascularized tissue platform by using a multimaterial microfluidic 3D bioprinting method, , 0, 0, - (2022)
  • 3D printing of biohybrid electrical stimulation platform to promote insulin secretion of pancreatic β cell, , 0, 0, - (2022)
  • Spatiotemporal modulation of skeletal muscle regeneration with varying vasculature patterns in an inbath bioprinted skeletal muscle tissue, , 0, 0, - (2022)
  • Physiomimetic bioprinting of stem cellderived human pancreatic isletlike cellular aggregatesvascular platform for studies of diabetic diseases, , 0, 0, - (2022)
  • Small diameter vascular structure via dragging 3D printing technique to induce endothelium formation, , 0, 0, - (2022)
  • Development of tissuespecific multipleorgan onachip to mimic type 2 diabetes and complication using 3D cell printing, , 0, 0, - (2022)
  • Biomaterials for Regulating Phenotype Plasticity In Human Intestinal Epithelium In Vitro, , 0, 0, - (2022)
  • 3D Bioprinting of Macro Hepatic Tissue Module Using LightActivated Liver Decellularized Extracellular MatrixBased Bioink, Digestive system Liver Pancreas Gut, 0, 0, - (2022)
  • Development of Pancreatic Construct for Type 1 Diabetes by 3D cell Printing Technology, , 0, 0, - (2022)
  • A Bioprinted Placentaderived Decellularized ECM Bioink Patch with Adiposederived MSC for Diabetic Wound Healing, , 0, 0, - (2022)
  • In Vitro Vascularized Lung Cancer Models To Evaluate Cancer Progression and Metastasis Under Pulmonary Fibrosis, , 0, 0, - (2022)
  • Bioprinting of Vascularized Patientderived Gastric Cancer Organoids for Precision Personalized Medicine Targeting VEGFR2 Signals, , 0, 0, - (2022)
  • Provision of Human Brain Microenvironment with BrainSpecific Extracellular Matrix , , 0, 0, - (2022)
  • Modular Assembly of 3D Bioprinted Engineered Heart Tissue to Reconstruct Contractile Direction to Mimic Myocardial Fiber Orientation, , 0, 0, - (2022)
  • A Biohybrid 3DPrinted TissueSensor Platform for Continuous Monitoring of Cardiac Muscle Contraction, , 0, 0, - (2022)
  • 3D Bioprinting of Human Isletlike Cellular AggregatesVascular Platform for Modeling Diabetes, , 0, 0, - (2022)
  • Nanoencapsulation of stem cellderived βcell aggregates using 3D bioprinting system, , 0, 0, - (2022)
  • 3D Bioprintingbased Tissue Assembly to Modulate Contraction Direction of Engineered Heart Tissue, , 0, 0, - (2022)
  • 3D Printing of TissueSensor Biohybrid Platform for Continuous Monitoring of Contraction Changes Induced by Drug Cardiotoxicity, , 0, 0, - (2022)
  • Bioprinting of Physiomimetic Human Isletlike Cellular AggregatesVascular Platform for Functional Maturation of Beta Cells, , 0, 0, - (2022)
  • Development of retinal pigment epithelium via thin membrane printing technology and its application, , 0, 0, - (2022)
  • Establishment of An Integrative 3D Bioprinted In Vitro Disease Model by Recapitulating Pathophysiological Features of Secondary Hyperoxaluria, , 0, 0, - (2022)
  • 3D Cell Printing of Vascularized PatientDerived Gastric Cancer Organoid model for Preclinical Assays by Providing a TissueSpecific Microenvironment, , 0, 0, - (2022)
  • Modulation of AngiogenesisMyogenesis Coupling with Varying Vasculature Patterns in an InBath Bioprinted Skeletal Muscle Tissue, , 0, 0, - (2022)
  • Novel dragging 3D printing for vascular tissue engineering in musculoskeletal regeneration, , 0, 0, - (2022)
  • A hybrid bioprinted tissue platform with bipillargrafted strain gauge sensors for continuous wireless monitoring in drug screening, , 0, 0, - (2021)
  • Fabrication of a Tubular Intestine Model With a Hollow Lumen Using a Colon Derived Extracellular Matrix, , 0, 0, - (2021)
  • 3D bioprinting of stem cellderived βcell aggregates in multiencapsulation system, , 0, 0, - (2021)
  • Construction of Physiomimetic Pancreatic Tissue Models Using Stem CellDerived Islets and Extracellular MatrixBased Pancreatic Islet NicheLike Bioink, , 0, 0, - (2021)
  • Fabrication of 3D Skeletal Muscle Tissue with Integrated Vasculature by InBath Cell Printing Method, , 0, 0, - (2021)
  • Modular Assembly of 3D Bioprinted Engineered Heart Tissue to Modulate Contraction Direction, , 0, 0, - (2021)
  • 3D Printed Extracellular Matrix Patches with Spatiotemporally Compartmentalized MultiGrowth Factors for Promoting Cerebral Angiogenesis, , 0, 0, - (2021)
  • A 3D Bioprinted FreeStanding and SelfOrganized Intestine Model Using a ColonSpecific Bioink, , 0, 0, - (2021)
  • Modular Assembly of 3D Bioprinted Heart Tissue to Facilitate Multiaxial Contractions, , 0, 0, - (2021)
  • Lightactivated Decellularized Extracellular Matrixbased Bioinks for Volumetric Tissue Analogs in Centimeterscale, , 0, 0, - (2021)
  • Construction of 3D Thick Skeletal Muscle Tissue with Integrated Vasculature by InBath Cell Printing, , 0, 0, - (2021)
  • Reproduction of Tumor Microenvironment in the Multicellular 3D Bioprinted Drug Testing Platform using Patientderived Tumorladen Tissuespecific Bioinks, 제 22차 한국조직공학 재생의학회 학술대회, 0, 0, - (2021)
  • Development of a new extrusionbased 3Dprinting method Dragging technique and its application to tissue engineering, , 0, 0, - (2021)
  • 3D bioprinting of functional pancreatic tissue constructs using stem cellderived insulin producingbeta cells and endothelial cells, , 0, 0, - (2021)
  • A Facile Bioprinting Technique for SizeControllable Microtissues Using Photocurable Decellularized Extracellular MatrixBased Bioinks, , 0, 0, - (2021)
  • Printing of cardiac microphysiological system for monitoring the contractile force of 3D engineered heart tissue using carbonbased conductive polymer, , 0, 0, - (2021)
  • MultiMaterial Microfluidic 3D Bioprinting Approach for the Fabrication of Prevascularized Heart Patches with Low Viscous Bioinks, , 0, 0, - (2021)
  • Morphological Prediction of hTMSCs Lineage to Keratocyte using Deep Learning, 대한기계학회 바이오공학부문 2021년도 춘계학술대회, 0, 0, - (2021)
  • 3D Bioprinting of Stem CellDerived Pancreatic Isletlike Spheroid and MultiEncapsulation System, , 0, 0, - (2021)
  • Central nervous tissuederived bioink offer an advantage in longterm cultivation of lower motor neurons for neuromuscular junction formation of 3D in vitro motor system, , 0, 0, - (2020)
  • Monitoring realtime contractility of 3D engineered heart tissues by printing a strain gaugeembedded microphysiological system, PRESM 2020, 0, 0, 49-49 (2020)
  • Development of a new extrusionbased 3D printing method and its application to esophagus tissue engineering, PRESM 2020, 0, 0, 67-67 (2020)
  • Development of mechanically enhanced biomimetic cornea based on corneal tissuederived bioink and 3D cell printing technology , , 0, 0, - (2020)
  • Bioprinting of insulinproducing multicellular aggregates with the pancreatic tissuederived bioink, 2020 The New York Stem Cell Foundation Conference NYSCF Conference, 0, 0, 37-37 (2020)
  • Provision of physiological cerebral environment by using brain decellularized extracellular matrix, , 0, 0, - (2020)
  • 3D Cell Printing of Stomach Cancer Model with Vasculature Using Stomach Decellularized ECM Bioink for Preclinical Assays, , 0, 0, - (2020)
  • 각막 조직 유래 바이오잉크와 3D 세포 프린팅 기술을 통한 기계적 물성이 향상된 생체 각막 유사체의 개발 , , 0, 0, - (2020)
  • Development of an Ex Vivo Drug Testing Platform for Recapitulating Gastric Cancerspecific Microenvironment, The Keystone symposia 20192020 conference series, 0, 0, 20-20 (2020)
  • Development of implantable vascularized pancreatic construct by 3D cell printing technology, 대한3D프린팅융합의료학회 2019 추계교육심포지엄, 0, 0, - (2019)
  • Recapitulation of 3D cylindrical human bloodbrain barrier in vitro using brain and blood vessel tissue specific bioinks and 3D bioprinting technology, The 13th IEEE Int’l Conference on NanoMolecular Medicine Engineering IEEENANOMED 2019, 0, 0, - (2019)
  • Development of Physiologically HumanRelevant in vitro Brain Environment with Brain Decellularized Extracellular Matrix, 2019 한국바이오칩학회 추계 학술대회, 0, 0, - (2019)
  • 3D Cell Printing of Prevascularized Stem Cell Patch for Treatment of Liver Cirrhosis, 2019 International Conference on Biofabrication, 0, 0, - (2019)
  • Potentials assessment of spinal cord tissue derived bioink in printing human motor neurons for the fabrication of 3D neuromuscular system, Biofabrication 2019, 0, 0, - (2019)
  • Potentials assessment of spinal cord tissue derived bioink in printing human motor neurons for the fabrication of 3D neuromuscular system, 2019 BMES annual meeting, 0, 0, - (2019)
  • Development of Physiologically relevant Human Brain Models by Using Brain Decellularized Extracellular Matrix, 2019 BMES Annual Meeting, 0, 0, - (2019)
  • 3D Cell Printing of Implantable Vascularized Pancreatic Construct using iPSCderived IPC for T1D, TERMISAP ABMC7 2019 Congress, 0, 0, - (2019)
  • Multiscale of Immunoprotection Approach using 3D printing technology for Islet Transplantation, SELECTBIO 3DPrinting in the Life Sciences 2019, 0, 0, - (2019)
  • Recapitulation of 3D Cylindrical Human BloodBrain Barrier in vitro by Brain and Blood Vessel Tissue Specific Bioinks and 3D Bioprinting Technology, SELECTBIO 3DPrinting in the Life Sciences 2019, 0, 0, - (2019)
  • Comparative Analysis of Human and Porcine derived Pancreatic dECM using hiPSCsderived IPCs and LCMSMS, Approximating Organs Small Talk 2019, 0, 0, - (2019)
  • In vivo Evaluation Using Fluorescence Imaging after Transplanting Tissue Constructs Fabricated by 3D Bioprinting Technology, Approximating Organs Small Talk 2019, 0, 0, - (2019)
  • 3D Cell Printingbased Stem Cell Therapy for Liver Cirrhosis, 20th Anniversary International Meeting of Korean Tissue Engineering and Regenerative Medicine Society, 0, 0, - (2019)
  • Characterization and Validation of Brain and Blood Vesselderived Extracellular Matrix Bioinks for Recapitulating Human BloodBrain Barrier in vitro, 2019 창립20주년 한국조직공학 재생의학회 국제학술대회 KTERMS, 0, 0, 19-19 (2019)
  • Comparative Analysis of Human and Porcine derived Pancreatic Decellularized Extracellular Matrix Bioinks to Recapitulate Microenvironment of Human Pancreatic Tissue in vitro, 2019 창립20주년 한국조직공학 재생의학회 국제학술대회 KTERMS, 0, 0, 19-19 (2019)
  • Development of brain decellularized extracellular matrix bioink to recapitulate native microenvironment for 3D neural cell culture, Engineering biology for medicine, 0, 0, - (2019)
  • Development of Implantable Vascularized Pancreatic Construct by 3D Cell Printing Technology, 2019년도 바이오공학부문 춘계학술대회 KSME JSME Bioengineering Joint Symposium 논문집, 0, 0, 30-30 (2019)
  • 3D 세포 프린팅 기술을 이용한 이식 가능한 혈관화 췌장 구조체 개발, , 0, 0, - (2019)
  • Decellularized extracellular matrix bioink and the external stimuli to enhance cardiac tissue development in vitro, International Conference on Additive Manufacturing and BioManufacturing, 0, 0, - (2018)
  • Combinatorial Therapeutic Approach Using 3D Printed Cardiac Patch with High Performance Genetically Engineered Stem Cells for Cardiac Repair, International Conference on Biofabrication, 0, 0, - (2018)
  • 3D cell printing of implantable vascularized pancreatic construct using tissuespecific bioink and islet for T1D, International conference on Biofabrication 2018, 0, 0, - (2018)
  • 3D cell printed prevascularized muscle tissue for functional muscle recovery in VML injuries, International conference on Biofabrication 2018, 0, 0, - (2018)
  • 3D cell printed corneal stromal analogues for corneal tissue engineering, IEEE CBS 2018, 0, 0, - (2018)
  • 3D cell printing of implantable vascularized pancreatic construct using tissuespecific bioink and islet for T1D, 한국정밀공학회 2018년도 추계학술대회논문집, 0, 0, - (2018)
  • Development of brain decellularized extracellular matrix bioink for 3D cellprinting of neural stem cellladen construct to treat a damaged brain, Knowing Brain Healing Brain, 0, 0, - (2018)
  • 3D Cellprinting of prevascularized stem cell patch for liver cirrhosis treatment, 2018 annual meeting of Korean Society for Stem Cell Research KSSCR, 0, 0, 170-170 (2018)
  • 3D Bioprinting based Modified Macro Encapsulation system for the Transplantation of Pancreatic Islets, UKC 2018 USKOREA Conference on Science Technology and Entepreneurship, 0, 0, 41-41 (2018)
  • Engineering Human Tissues via 3D Bioprinting Technology, 대한심장학회 기초과학연구회 하계심포지엄 2018, 0, 0, - (2018)
  • Development of Biomimetic Corneal Stroma Based on 3D Bioprinting Technology , Ubiquitous Robots 2018, 0, 0, - (2018)
  • 3D cell printed corneal stromal analogues for corneal tissue engineering, KTERMS 2018, 0, 0, - (2018)
  • 3차원 세포 프린팅 기술 기반의 간 경변증 치료용 패치 형태의 줄기세포 치료제 개발, 2018년도 바이오공학부문 춘계학술대회 논문집, 0, 0, 18-18 (2018)
  • 3D cell printed corneal stromal equivalent for corneal tissue engineering, 대한기계학회 바이오공학부문 2018년도 춘계학술대회, 0, 0, - (2018)
  • Development of Biomimetic Corneal Stroma Based on 3D Bioprinting Technology , 제13회 한국로봇종합학술대회KRoC 2018, 0, 0, - (2018)
  • Development of Mesenchymal Stem Cell Laden PatchType Therapy using 3D CellPrinting Technology for Liver Cirrhosis Treatment, 2017 추계학술대회 논문집, 0, 0, 70-70 (2017)
  • Decellularized Extracellular Matrixbased Bioinks for Engineering Functional Human Tissues, International Conference on Biofabrication 2017, 0, 0, - (2017)
  • 3D Bioprinting of a Multi Composition Stem Cell Patch Using Tissue Specific Bioinks, Biomedical Engineering Society BMES 2017 Annual Meeting, 0, 0, - (2017)
  • 3D cell printed skeletal muscle construct for treatment of volumetric muscle loss injury using decellularized extracellular matrix bioinks, Biofabrication 2017, 0, 0, - (2017)
  • Biomaterialsbased 3D cell printing for nextgeneration therapeutics and diagnostics, 39th Annual International Conference of the IEEE Engineering in Medicine and Biology Society, 0, 0, - (2017)
  • 3D Bioprinting of MultiComposition Stem Cell Patch Using TissueSpecific Bioinks, 39th Annual International Conference of the IEEE Engineering in Medicine and Biology Society, 0, 0, - (2017)
  • Development of 3D Cell Printed PatchType Stem Cell Therapy for Treatment of Liver Cirrhosis, 18th International Meeting of Korean Tissue Engineering and Regenerative Medicine Society, 0, 0, - (2017)
  • 결정형 나노 셀룰로스를 이용한 각막 유래 하이드로젤의 물성 강화, 정밀공학회 2017년 춘계학술대회 학술집, 0, 0, - (2017)
  • 3차원 세포프린팅을 위한 탈세포화 된 간 조직 유래 바이오잉크의 개발, 2017 춘계학술대회 바이오공학부문, 0, 0, - (2017)
  • 3차원 세포프린팅을 위한 탈세포화 된 간 조직 유래 바이오잉크의 개발, 대한기계학회 춘계학술대회 바이오공학부문, 0, 0, - (2017)

Research Activities

  • , 농림식품기술기획평가원 (2016-2016)
  • DEVELOPMENT OF 3D-BIOPRINTED HIGH FUNCTIONAL BIOMYOCARDIUM FOR THE TREATMENT OF ISCHEMIC HEART DISEASES, 재단법인한국연구재단 (2016-2017)
  • , 농림식품기술기획평가원 (2017-2017)
  • , 포항공과대학교 (2017-2018)
  • ENGINEERING PANCREAS TISSUES WITH STEM CELL NICHE ENVIRONMENT VIA 3D BIOPRINTING TECHNOLOGY, 울산대학교산학협력단 (2017-2017)
  • , 전남대학교산학협력단 (2017-2017)
  • , 재단법인한국연구재단 (2017-2018)
  • , 포항공대산학협력단 (2017-2022)
  • ENGINEERING PANCREAS TISSUES WITH STEM CELL NICHE ENVIRONMENT VIA 3D BIOPRINTING TECHNOLOGY, 울산대학교산학협력단 (2018-2018)
  • , 농림식품기술기획평가원 (2018-2018)
  • , 전남대학교산학협력단 (2018-2018)
  • , 포항공과대학교 (2018-2019)
  • , 중소기업기술정보진흥원 (2018-2019)
  • , 재단법인한국연구재단 (2018-2019)
  • , 정보통신기획평가원 (2019-2019)
  • ENGINEERING PANCREAS TISSUES WITH STEM CELL NICHE ENVIRONMENT VIA 3D BIOPRINTING TECHNOLOGY, 울산대학교산학협력단 (2019-2019)
  • , 포항공과대학교 (2019-2020)
  • , 포항공과대학교 (2019-2020)
  • , 한국전자통신연구원 (2019-2019)
  • , ㈜인터파크홀딩스 (2019-2020)
  • , 중소기업기술정보진흥원 (2019-2020)
  • , 중소기업기술정보진흥원 (2019-2020)
  • DEVELOPMENT OF 3D-BIOPRINTED HIGH FUNCTIONAL BIOMYOCARDIUM FOR THE TREATMENT OF ISCHEMIC HEART DISEASES, 재단법인한국연구재단 (2019-2020)
  • 3D BIOPRINTING IPSC-DERIVED IMMUNE PROTECTED TISSUES WITH VASCULARIZATION AS IMPLANTABLE TISSUE THERAPIES, 한국산업기술진흥원 (2019-2020)
  • ENGINEERING PANCREAS TISSUES WITH STEM CELL NICHE ENVIRONMENT VIA 3D BIOPRINTING TECHNOLOGY, 울산대학교산학협력단 (2020-2021)
  • , 삼성전자(주) (2020-2021)
  • , 포항공과대학교 (2020-2021)
  • DEVELOPMENT OF 3D-BIOPRINTED HIGH FUNCTIONAL BIOMYOCARDIUM FOR THE TREATMENT OF ISCHEMIC HEART DISEASES, 재단법인한국연구재단 (2020-2020)
  • DEVELOPMENT OF NOVEL ICT CONVERGENCE TECHNOLOGIES FOR DRUG EVALUATION, 정보통신기획평가원 (2020-2021)
  • DEVELOPMENT OF CANCER ORGANOID CULTURE SYSTEM BASED ON BIOMATERIAL, 주식회사 인터파크바이오컨버전스 (2020-2021)
  • 3D BIOPRINTING IPSC-DERIVED IMMUNE PROTECTED TISSUES WITH VASCULARIZATION AS IMPLANTABLE TISSUE THERAPIES, 한국산업기술진흥원 (2020-2021)
  • , 포항공과대학교 (2021-2040)
  • 3D BIOPRINTED MULTISCALE PANCREATIC TISSUE-MIMETIC CONSTRUCTS USING FUNCTIONAL STEM CELL-DERIVED BETA CELLS FOR DIABETES TREATMENT, 재단법인한국연구재단 (2021-2022)
  • , (재)포항산업과학연구원 (2021-2022)
  • DEVELOPMENT OF A BIOPRINTED ORGAN EVALUATION PLATFORM USING ICT FUSION NANOMEMBRANE SYSTEM, 정보통신기획평가원 (2021-2022)
  • 3D BIOPRINTING OF MULTI-AXIALLY CONTRACTIBLE CARDIAC MUSCLE CONSTRUCTS USING DECELLULARIZED TISSUE-SPECIFIC BIOINKS, 재단법인한국연구재단 (2021-2022)
  • DEVELOPMENT OF AN ORGANOID CULTURE SYSTEM MIMICKING TUMOR MICRO-ENVIRONMENT BASED ON BIOMATERIALSLS, 주식회사 인터파크바이오컨버전스 (2021-2022)
  • 3D BIOPRINTING OF MULTI-AXIALLY CONTRACTIBLE CARDIAC MUSCLE CONSTRUCTS USING DECELLULARIZED TISSUE-SPECIFIC BIOINKS, 재단법인한국연구재단 (2022-2022)
  • , 재단법인한국연구재단 (2022-2022)
  • , 재단법인한국연구재단 (2022-2023)
  • 3D BIOPRINTED MULTISCALE PANCREATIC TISSUE-MIMETIC CONSTRUCTS USING FUNCTIONAL STEM CELL-DERIVED BETA CELLS FOR DIABETES TREATMENT, 재단법인한국연구재단 (2022-2023)
  • , (재)포항산업과학연구원 (2022-2023)
  • THE ESTABLISHMENT OF 3D BIOPRINTING TECHNOLOGY APPLIED PLATFORM FOR THE ADVANCED NON-ANIMAL ALTERNATIVES TESTING, 한국산업기술진흥원 (2022-2022)
  • The establishment of 3D bioprinting technology applied platform for the advanced non-animal alternatives testing, 산업자원부 (2022-2022)
  • DEVELOPMENT AND OPTIMIZATION OF CORNEA TISSUE-SPECIFIC BIOINKS AND CHARACTERIZATION OF ITS PRINTABILITY, 주식회사 바이오브릭스 (2022-2023)
  • , 포항공과대학교 (2022-2023)
  • 3D BIOPRINTING OF MULTI-AXIALLY CONTRACTIBLE CARDIAC MUSCLE CONSTRUCTS USING DECELLULARIZED TISSUE-SPECIFIC BIOINKS, 재단법인한국연구재단 (2023-2023)
  • , 한국산업기술진흥원 (2023-2023)
  • THE ESTABLISHMENT OF 3D BIOPRINTING TECHNOLOGY APPLIED PLATFORM FOR THE ADVANCED NON-ANIMAL ALTERNATIVES TESTING, 한국산업기술진흥원 (2023-2023)
  • 3D BIOPRINTED MULTISCALE PANCREATIC TISSUE-MIMETIC CONSTRUCTS USING FUNCTIONAL STEM CELL-DERIVED BETA CELLS FOR DIABETES TREATMENT, 재단법인한국연구재단 (2023-2024)
  • , 포항공과대학교 (2023-2024)
  • , 포항공과대학교 (2023-2023)
  • DEVELOPMENT AND OPTIMIZATION OF CORNEA TISSUE-SPECIFIC BIOINKS AND CHARACTERIZATION OF ITS PRINTABILITY, 주식회사 바이오브릭스 (2023-2024)
  • 3D BIOPRINTING OF MULTI-AXIALLY CONTRACTIBLE CARDIAC MUSCLE CONSTRUCTS USING DECELLULARIZED TISSUE-SPECIFIC BIOINKS, 재단법인한국연구재단 (2024-2025)
  • THE ESTABLISHMENT OF 3D BIOPRINTING TECHNOLOGY APPLIED PLATFORM FOR THE ADVANCED NON-ANIMAL ALTERNATIVES TESTING, 한국산업기술진흥원 (2024-2024)
  • , 한국산업기술진흥원 (2024-2024)
  • 3D BIOPRINTED MULTISCALE PANCREATIC TISSUE-MIMETIC CONSTRUCTS USING FUNCTIONAL STEM CELL-DERIVED BETA CELLS FOR DIABETES TREATMENT, 재단법인한국연구재단 (2024-2025)
  • , 재단법인한국연구재단 (2024-2025)
  • , (재)과학기술사업화진흥원 (2024-2024)
  • 3D BIOPRINTING OF MULTI-AXIALLY CONTRACTIBLE CARDIAC MUSCLE CONSTRUCTS USING DECELLULARIZED TISSUE-SPECIFIC BIOINKS, 재단법인한국연구재단 (2025-2025)

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