Area of research
Biomedical Engineering · Cellular and Molecular Neuroscience
Research interest
Research interests include 3D Printing in Biomedical Research, Neuroscience and Neural Engineering, Innovative Microfluidic and Catalytic Techniques Innovation, and Membrane Separation and Gas Transport.
Multilayered microelectrode array for monitoring electrophysiological signals of 3d neural networks in cerebral organoid.
Recent advances in biosensing platforms utilizing exosomal biomarker profiling for cancer diagnosis
Microenvironmental Reprogramming by 3D Anisotropic Cardiac Extracellular Matrix Induces Nuclear Remodeling and Epigenetic Maturation of Chemically Induced Cardiomyocytes
Harnessing CRISPR technology for next-generation microphysiological systems
Meso-macroporous hydrogel for direct litre-scale isolation of extracellular vesicles.
Length-encoded rod-shaped magnetic particle-based multipurpose immuno- and molecular assay system for rapid and accurate diagnostics: VEUS
Filtering evaluation of multiplex respiratory virus-like particles by machine learning-assisted surface-enhanced Raman spectroscopy
Hydrogel-enriched salivary exosomal microRNAs: reliable biomarkers for head and neck squamous cell carcinoma
Silane-Functionalized MXene-PEGDA Hydrogel for Enhanced Electrochemical Sensing of Neurotransmitters and Antioxidants
Patient-Derived Microphysiological Systems for Precision Medicine.
Understanding organotropism in cancer metastasis using microphysiological systems.
IGZO charge trap flash device for reconfigurable logic functions
Implementation of two-step gradual reset scheme for enhancing state uniformity of 2D hBN-based memristors for image processing
Miniaturized multicolor fluorescence imaging system integrated with a PDMS light-guide plate for biomedical investigation
The Detection of Urinary Exosomal miRNAs for Cancer Diagnostics and Prognostics
Beads- and oil-free single molecule assay with immuno-rolling circle amplification for detection of SARS-CoV-2 from saliva.
3D engineered tissue models for studying human-specific infectious viral diseases.
Modulating and monitoring the functionality of corticostriatal circuits using an electrostimulable microfluidic device.
Streamlined Specimen Purification for Rapid COVID-19 Diagnosis Using Positively Charged Polymer Thin Film-Coated Surfaces and Chamber Digital PCR.
Integration of reconfigurable microchannels into aligned three-dimensional neural networks for spatially controllable neuromodulation.
Neural probe system for behavioral neuropharmacology by bi-directional wireless drug delivery and electrophysiology in socially interacting mice.
Hyperglycemic Neurovasculature-On-A-Chip to Study the Effect of SIRT1-Targeted Therapy for the Type 3 Diabetes "Alzheimer's Disease".
Brain organoid-on-a-chip: A next-generation human brain avatar for recapitulating human brain physiology and pathology.
Visualization of differential GPCR crosstalk in DRD1-DRD2 heterodimer upon different dopamine levels.
Tunable and scalable fabrication of block copolymer-based 3D polymorphic artificial cell membrane array.
Clinical application of serological Alzheimer's disease diagnosis using a highly sensitive biosensor with hydrogel-enhanced dielectrophoretic force.
A Hybrid Zeolite Membrane-Based Breakthrough for Simultaneous CO<sub>2</sub> Capture and CH<sub>4</sub> Upgrading from Biogas.
Multiplex SNP Genotyping Using SWITCH: Sequence-Specific Nanoparticle with Interpretative Toehold-Mediated Sequence Decoding in Hydrogel.
Three-Dimensional Axotomy and Regeneration on Open-Access Microfluidic Platform.
Microfluidic device with brain extracellular matrix promotes structural and functional maturation of human brain organoids.