Area of research
Biomedical Engineering · Biomaterials
Research interest
Research focused on Hypoxia (environmental) and Photodynamic therapy, with related work in Radiation therapy, Biocompatibility, Cancer research. Notable publications include 'Overcoming Hypoxia by Multistage Nanoparticle Delivery System to Inhibit Mitochondrial Respiration for Photodynamic Therapy', 'Au–Hemoglobin Loaded Platelet Alleviating Tumor Hypoxia and Enhancing the Radiotherapy Effect with Low-Dose X-ray', and 'Bypassing the Immunosuppression of Myeloid‐Derived Suppressor Cells by Reversing Tumor Hypoxia Using a Platelet‐Inspired Platform'.
Nano-Oncologic Vaccine for Boosting Cancer Immunotherapy: The Horizons in Cancer Treatment
Biodegradable <scp>3D</scp> Injectable Amino Acid Hydrogels Delivering Immune Adjuvant for Enhancing Immunotherapy in Colon Cancer
Editorial: Environmentally-responsive biomaterials for major diseases treatment
Engineering tumor-oxygenated nanomaterials: advancing photodynamic therapy for cancer treatment
A Platelet-Powered Drug Delivery System for Enhancing Chemotherapy Efficacy for Liver Cancer Using the Trojan Horse Strategy
Enhancing Chemotherapy Efficacy via an Autologous Erythrocyte-Anchoring Strategy with a Closed-System Drug-Transfer Device
Strategies to prolong drug retention in solid tumors by aggregating Endo-CMC nanoparticles
Platelet shipped IL-10 enhances drug delivery for attenuating I/R- or UUO-induced renal injury
Platelets as delivery vehicles for targeted enrichment of NO· to cerebral glioma for magnetic resonance imaging
Advances in Targeting Drug Biological Carriers for Enhancing Tumor Therapy Efficacy
Targeted delivery of T-cell agonists for enhancing immunotherapy
Hsa_circ_0000098 is a novel therapeutic target that promotes hepatocellular carcinoma development and resistance to doxorubicin
Ultrasound-Triggered On-Demand Insulin Release for Diabetes Mellitus Treatment
Relieving immunosuppression by Endo@PLT targeting anti-angiogenesis to improve the efficacy of immunotherapies
Glucose-activatable insulin delivery with charge-conversional polyelectrolyte multilayers for diabetes care
Erythrocyte-mimicking subcutaneous platform with a laser-controlled treatment against diabetes
Au–Hemoglobin Loaded Platelet Alleviating Tumor Hypoxia and Enhancing the Radiotherapy Effect with Low-Dose X-ray
Bypassing the Immunosuppression of Myeloid‐Derived Suppressor Cells by Reversing Tumor Hypoxia Using a Platelet‐Inspired Platform
Overcoming Hypoxia-Restrained Radiotherapy Using an Erythrocyte-Inspired and Glucose-Activatable Platform
Overcoming Hypoxia by Multistage Nanoparticle Delivery System to Inhibit Mitochondrial Respiration for Photodynamic Therapy
SQSTM1/p62 is involved in docosahexaenoic acid–induced cellular autophagy in glioblastoma cell lines
Ultrafast glucose-responsive, high loading capacity erythrocyte to self-regulate the release of insulin
Extracorporeal magnetic approach to reduce the unwanted side‐effects and improve antibacterial activity of Ag/Fe<sub>3</sub>O<sub>4</sub> nanocomposites in rat
Evaluation of a two-stage antibacterial hydrogel dressing for healing in an infected diabetic wound
Comparative Study of Biosafety, DNA, and Chromosome Damage of Different-Materials-Modified Fe3O4 in Rats
Effect of “phase change” complex on postoperative adhesion prevention
Influence of Reducing Agents on Biosafety and Biocompatibility of Gold Nanoparticles