Area of research
Biomedical Engineering · Molecular Biology
Research interest
Research interests include Materials science, Glioma, Photothermal therapy, Drug delivery, Nanotechnology, and Nanodot.
Glioma stem cell membrane-camouflaged photothermal nanozyme for synergistic antitumor via dual-targeted drug delivery across blood-brain barrier
Axially Chlorinated Carbon Nanodots for Hypoxia-Tolerant Neutrophil-Mimicking Photoenzymatic Cascade Therapy against Postoperative Tumor Recurrence
Interleukin-6-taregeted dual-drug nanoparticles enhance glioblastoma chemotherapy by facilitating blood-brain barrier penetration and alleviating cardiotoxicity
Iron ions-sequestrable and antioxidative carbon dot-based nano-formulation with nitric oxide release for Parkinson's disease treatment
Recent Developments in CaCO3 Nano-Drug Delivery Systems: Advancing Biomedicine in Tumor Diagnosis and Treatment
Single-atom and clustered iron-embedded graphitic nitrogen-doped carbon nanospheres for cancer imaging and ferroptosis
Regulating the Atomic Active Center by Covalent Organic Framework-Derived Photothermal Nanozyme to Arm Self-Gelling Powder for Bacterial Wound Healing
BBB-penetrating magnetoelectric nanoparticles with sustainable Gel formulation for enhanced chemotherapy and reduced postoperative glioma recurrence
Modulating active targeting nanoparticle design according to tumor progressions
Dual-drug nanoparticles activate pyroptosis in cancer cells synergistically target cancer stem cells to augment chemoimmunotherapy of triple-negative breast cancer
A Magnetic-Responsive Biomimetic Nanosystem Coated with Glioma Stem Cell Membranes Effectively Targets and Eliminates Malignant Gliomas
From structural design to delivery: mRNA therapeutics for cancer immunotherapy
<i>In Situ</i> Attached Photothermal Immunomodulation-Enhanced Nanozyme for the Inhibition of Postoperative Malignant Glioma Recurrence
Antioxidant Cascade Nanoenzyme Antagonize Inflammatory Pain by Modulating MAPK/p‐65 Signaling Pathway
Diabetes immunity-modulated multifunctional hydrogel with cascade enzyme catalytic activity for bacterial wound treatment
Magnetic covalent organic framework nanospheres-based miRNA biosensor for sensitive glioma detection
Sugar-originated carbon nanodots selectively damage the tumor and enhance the sensitivity of chemotherapy
Versatile hollow COF nanospheres via manipulating transferrin corona for precise glioma-targeted drug delivery
Multifunctional mesoporous black phosphorus-based nanosheet for enhanced tumor-targeted combined therapy with biodegradation-mediated metastasis inhibition
Biodegradable Mesoporous Silica Achieved via Carbon Nanodots-Incorporated Framework Swelling for Debris-Mediated Photothermal Synergistic Immunotherapy
Highly Crystalline Multicolor Carbon Nanodots for Dual-Modal Imaging-Guided Photothermal Therapy of Glioma
Combination Glioma Therapy Mediated by a Dual‐Targeted Delivery System Constructed Using OMCN–PEG–Pep22/DOX
Augmented glioma-targeted theranostics using multifunctional polymer-coated carbon nanodots
Antitumoral Cascade-Targeting Ligand for IL-6 Receptor-Mediated Gene Delivery to Glioma
An MSN-PEG-IP drug delivery system and IL13Rα2 as targeted therapy for glioma
Photothermal combined gene therapy achieved by polyethyleneimine-grafted oxidized mesoporous carbon nanospheres
Facile incorporation of dispersed fluorescent carbon nanodots into mesoporous silica nanosphere for pH-triggered drug delivery and imaging
Specific aptamer-conjugated mesoporous silica–carbon nanoparticles for HER2-targeted chemo-photothermal combined therapy
Mesoporous Carbon Nanospheres Featured Fluorescent Aptasensor for Multiple Diagnosis of Cancer <i>in Vitro</i> and <i>in Vivo</i>
Direct Solvent-Derived Polymer-Coated Nitrogen-Doped Carbon Nanodots with High Water Solubility for Targeted Fluorescence Imaging of Glioma