Area of research
Molecular Biology · Biomedical Engineering
Research interest
Research interests include RNA Interference and Gene Delivery, Advanced biosensing and bioanalysis techniques, 3D Printing in Biomedical Research, and Electrospun Nanofibers in Biomedical Applications.
Incorporation of polylactic acid microplastics into the carbon cycle as a carbon source to remodel the endogenous metabolism of the gut
Starfysh integrates spatial transcriptomic and histologic data to reveal heterogeneous tumor–immune hubs
Intestinal Epithelial Serotonin as a Novel Target for Treating Disorders of Gut-Brain Interaction and Mood
FcRn-dependent IgG accumulation in adipose tissue unmasks obesity pathophysiology
Tackling Severe Neutrophilic Inflammation in Airway Disorders with Functionalized Nanosheets
PAR2 on oral cancer cells and nociceptors contributes to oral cancer pain that can be relieved by nanoparticle-encapsulated AZ3451
Modulation of Unregulated Inflammation‐Associated Coagulopathy in Sepsis Using Multifunctional Nanosheets
Spatial epigenome–transcriptome co-profiling of mammalian tissues
Circulating Cell‐Free DNAs as a Biomarker and Therapeutic Target for Acetaminophen‐Induced Liver Injury
Focused ultrasound–mediated brain genome editing
Phenylboronic Acid-Functionalized Polyplexes Tailored to Oral CRISPR Delivery
Leveraging efferocytosis blockade for improved cancer chemo-immunotherapy through synchronized release of doxorubicin and BMS777607 confined within tailored mesoporous silica nanoparticles
Spatial profiling of chromatin accessibility in mouse and human tissues
A nanoparticulate dual scavenger for targeted therapy of inflammatory bowel disease
Nanoparticulate cell-free DNA scavenger for treating inflammatory bone loss in periodontitis
An Injectable Antibiotic Hydrogel that Scavenges Proinflammatory Factors for the Treatment of Severe Abdominal Trauma
Selective targeting of visceral adiposity by polycation nanomedicine
Polycationic PAMAM ameliorates obesity-associated chronic inflammation and focal adiposity
The NIH Somatic Cell Genome Editing program
A Versatile and Robust Platform for the Scalable Manufacture of Biomimetic Nanovaccines
Nanotechnology for pain management: Current and future therapeutic interventions
A materials-science perspective on tackling COVID-19
Light: A Magical Tool for Controlled Drug Delivery
Treatment of severe sepsis with nanoparticulate cell-free DNA scavengers
Codelivery of CRISPR-Cas9 and chlorin e6 for spatially controlled tumor-specific gene editing with synergistic drug effects
Endosomal signaling of delta opioid receptors is an endogenous mechanism and therapeutic target for relief from inflammatory pain
A Versatile Nonviral Delivery System for Multiplex Gene‐Editing in the Liver
Flash technology-based self-assembly in nanoformulation: Fabrication to biomedical applications
Identification of Specific Joint-Inflammatogenic Cell-Free DNA Molecules From Synovial Fluids of Patients With Rheumatoid Arthritis
Engineering Cell Membrane‐Based Nanotherapeutics to Target Inflammation