Area of research
Biomedical Engineering · Cell Biology
Research interest
Research interests include 3D Printing in Biomedical Research, Cellular Mechanics and Interactions, Tissue Engineering and Regenerative Medicine, and Electrospun Nanofibers in Biomedical Applications.
Viscoelastic extracellular matrix enhances epigenetic remodeling and cellular plasticity
Bioresorbable, wireless dual stimulator for peripheral nerve regeneration
A soft magnetoelastic sensor to decode levels of fatigue
Neural network-assisted personalized handwriting analysis for Parkinson’s disease diagnostics
Distal electrical stimulation enhances neuromuscular reinnervation and satellite cell differentiation for functional recovery
Permanent fluidic magnets for liquid bioelectronics
Advances in wearable respiration sensors
Biphasic regulation of epigenetic state by matrix stiffness during cell reprogramming
Viscoelastic synthetic antigen-presenting cells for augmenting the potency of cancer therapies
Viscoelasticity in 3D Cell Culture and Regenerative Medicine: Measurement Techniques and Biological Relevance
Engineering programmable material-to-cell pathways via synthetic notch receptors to spatially control differentiation in multicellular constructs
Grand Challenges at the Interface of Engineering and Medicine
Dynamic regulation of alternative polyadenylation by PQBP1 during neurogenesis
Harnessing Biomaterials to Amplify Immunity in Aged Mice through T Memory Stem Cells
Dissolvable microneedle patch enables local delivery of immunomodulatory microparticles containing bifunctional molecules for periodontal tissue regeneration
Establishment and validation of a nomogram for predicting the risk of hip fracture in patients with stroke: A multicenter retrospective study
Development and Validation of Diagnostic Models for Transcriptomic Signature Genes for Multiple Tissues in Osteoarthritis
Molecular weight of hyaluronic acid crosslinked into biomaterial scaffolds affects angiogenic potential
Engineering multicomponent tissue by spontaneous adhesion of myogenic and adipogenic microtissues cultured with customized scaffolds
Reduction of Intracellular Tension and Cell Adhesion Promotes Open Chromatin Structure and Enhances Cell Reprogramming
Giant Magnetoelastic Effect Enabled Stretchable Sensor for Self-Powered Biomonitoring
Transient nuclear deformation primes epigenetic state and promotes cell reprogramming
Microneedle Patches Loaded with Nanovesicles for Glucose Transporter-Mediated Insulin Delivery
Self‐Powered Programming of Fibroblasts into Neurons via a Scalable Magnetoelastic Generator Array
Electroceuticals for peripheral nerve regeneration
Systemic enhancement of antitumour immunity by peritumourally implanted immunomodulatory macroporous scaffolds
Engineering organ-on-a-chip systems to model viral infections
Giant magnetoelastic effect in soft systems for bioelectronics
Soft fibers with magnetoelasticity for wearable electronics
Bioorthogonal catalytic patch
Collaborative Research: TRTech-PGR Developing computational tools for single-cell genomic data analysis and annotation across diverse plant species.
I-Corps: Translation potential of a microfluidic device to improve gene editing of therapeutic cells
Collaborative Research: EAGER/Tools4Cells: Translating single cell data into an ultra-high resolution spatial map using fluorescent marker genes
Student Travel Award for Mechanotransduction and Mechanobiology Symposium - Fall 2011
SBIR Phase I: Development of Cadmium-Free, Water-Soluble and Multicolor Quantum Dots by Chemical Doping
SBIR Phase II: Highly Efficient, Long Lifetime, and Inexpensive Nanocrystal Light Emitting Diodes (LEDs)
Harmonic Analysis and Complex Non-linear PDEs with Applications
Mathematical Sciences: Problems in Harmonic Analysis and Several Complex Variables
Mathematical Sciences: Problems in Harmonic Analysis and Several Complex Variables