Area of research
Biomedical Engineering · Electrical and Electronic Engineering
Research interest
Research interests include 3D Printing in Biomedical Research, Advanced Electrical Measurement Techniques, Electrospun Nanofibers in Biomedical Applications, and Bone Tissue Engineering Materials.
Immediately injectable modified gelatin and hyaluronic acid-based hydrogel encapsulating nano-hydroxyapatite and human adipose-derived MSCs for use as a bone filler in situ therapy
Aerogel‐Based Biomaterials for Biomedical Applications: From Fabrication Methods to Disease‐Targeting Applications
Injectable, Antibacterial, and Hemostatic Tissue Sealant Hydrogels
Injectable Shear‐Thinning Hydrogels with Sclerosing and Matrix Metalloproteinase Modulatory Properties for the Treatment of Vascular Malformations
Flexible patch with printable and antibacterial conductive hydrogel electrodes for accelerated wound healing
Laponite‐Based Nanomaterials for Drug Delivery
Lab‐on‐a‐Contact Lens: Recent Advances and Future Opportunities in Diagnostics and Therapeutics
Co‐Electrospun Silk Fibroin and Gelatin Methacryloyl Sheet Seeded with Mesenchymal Stem Cells for Tendon Regeneration
Tissue adhesive hemostatic microneedle arrays for rapid hemorrhage treatment
Anti‐bacterial and wound healing‐promoting effects of zinc ferrite nanoparticles
Serially pH-Modulated Hydrogels Based on Boronate Ester and Polydopamine Linkages for Local Cancer Therapy
Recent developments in mussel-inspired materials for biomedical applications
Engineering a naturally derived hemostatic sealant for sealing internal organs
Epidermis‐Inspired Wearable Piezoresistive Pressure Sensors Using Reduced Graphene Oxide Self‐Wrapped Copper Nanowire Networks
Cancer‐on‐a‐Chip for Modeling Immune Checkpoint Inhibitor and Tumor Interactions
Bioengineered Multicellular Liver Microtissues for Modeling Advanced Hepatic Fibrosis Driven Through Non‐Alcoholic Fatty Liver Disease
Recent Advances in Bioinspired Hydrogels: Materials, Devices, and Biosignal Computing
pH-Responsive doxorubicin delivery using shear-thinning biomaterials for localized melanoma treatment
Gelatin Methacryloyl‐Based Tactile Sensors for Medical Wearables
Gelatin Methacryloyl Microneedle Patches for Minimally Invasive Extraction of Skin Interstitial Fluid
A Patch of Detachable Hybrid Microneedle Depot for Localized Delivery of Mesenchymal Stem Cells in Regeneration Therapy
Biodegradable <i>β</i>‐Cyclodextrin Conjugated Gelatin Methacryloyl Microneedle for Delivery of Water‐Insoluble Drug
Biofabrication of endothelial cell, dermal fibroblast, and multilayered keratinocyte layers for skin tissue engineering
Biodegradable microneedle patch for transdermal gene delivery
Thrombolytic Agents: Nanocarriers in Controlled Release
Combinatorial screening of biochemical and physical signals for phenotypic regulation of stem cell–based cartilage tissue engineering
Synthesis of Injectable Shear‐Thinning Biomaterials of Various Compositions of Gelatin and Synthetic Silicate Nanoplatelet
Room‐Temperature‐Formed PEDOT:PSS Hydrogels Enable Injectable, Soft, and Healable Organic Bioelectronics
Three-dimensional printing of metals for biomedical applications
Organ‐on‐a‐Chip for Cancer and Immune Organs Modeling