Area of research
Molecular Biology · Cancer Research
Research interest
Research focused on Glioma and RNA interference, with related work in Cell-penetrating peptide, Nanoparticle, In vivo. Notable publications include 'Gene and doxorubicin co-delivery system for targeting therapy of glioma', 'Brain-targeted co-delivery of therapeutic gene and peptide by multifunctional nanoparticles in Alzheimer's disease mice', and 'T7 peptide-functionalized nanoparticles utilizing RNA interference for glioma dual targeting'.
Targeted Delivery of mRNA with Polymer–Lipid Nanoparticles for In Vivo Base Editing
Lung‐Specific mRNA Delivery by Ionizable Lipids with Defined Structure‐Function Relationship and Unique Protein Corona Feature
Targeted delivery of BMPR2 mRNA attenuates pulmonary arterial hypertension by reversing pulmonary vascular remodeling
Organ-Specific Gene Expression Control Using DNA Origami-Based Nanodevices
Engineering brain-derived neurotrophic factor mRNA delivery for the treatment of Alzheimer’s disease
Helper-Polymer Based Five-Element Nanoparticles (FNPs) for Lung-Specific mRNA Delivery with Long-Term Stability after Lyophilization
Dual Functional Peptide-Driven Nanoparticles for Highly Efficient Glioma-Targeting and Drug Codelivery
Brain-targeted co-delivery of therapeutic gene and peptide by multifunctional nanoparticles in Alzheimer's disease mice
Single-component self-assembled RNAi nanoparticles functionalized with tumor-targeting iNGR delivering abundant siRNA for efficient glioma therapy
Enhanced blood–brain barrier penetration and glioma therapy mediated by a new peptide modified gene delivery system
T7 peptide-functionalized nanoparticles utilizing RNA interference for glioma dual targeting
Tumor targeting and microenvironment-responsive nanoparticles for gene delivery
Targeting Caspase-3 as Dual Therapeutic Benefits by RNAi Facilitating Brain-Targeted Nanoparticles in a Rat Model of Parkinson’s Disease
Gene and doxorubicin co-delivery system for targeting therapy of glioma