Area of research
Biomedical Engineering · Immunology
Research interest
Research interests include Nanoplatforms for cancer theranostics, Antibiotic Resistance in Bacteria, Immune Response and Inflammation, and Immune cells in cancer.
Engineered nanovesicles as a DC vaccine to enhance the antitumor efficacy of CAR-T cells against solid tumors.
Anti-CD19-engineered exosomes enable B cell-targeted anti-BAFF mRNA delivery to alleviate lupus progression
Inhalable nanovesicles loaded with a STING agonist enhance CAR-T cell activity against solid tumors in the lung
Inhalable nanovesicles loaded with a STING agonist enhance CAR-T cell activity against solid tumors in the lung.
Lung metastasis and recurrence is mitigated by CAR macrophages, in-situ-generated from mRNA delivered by small extracellular vesicles
AR<sup>+</sup>TREM2<sup>+</sup> macrophage induced pathogenic immunosuppression promotes prostate cancer progression.
Lung metastasis and recurrence is mitigated by CAR macrophages, in-situ-generated from mRNA delivered by small extracellular vesicles.
Removal of antibiotic resistance from wastewater in aquatic ecosystems dominated by submerged macrophytes
Macrophage Immunometabolism in Pulmonary Homeostasis and Chronic Lung Diseases
Cantharidin-Loaded Nanomedicine Modified with Amphiphilic Peptides Induce Immunogenic Cell Death to Enhance PD-1 Blockade
Platelet membrane-coated nanoparticles inhibit platelet activation and neutrophil extracellular traps formation in acute lung injury.
Corrigendum to “Removal of antibiotic resistance from wastewater in aquatic ecosystems dominated by submerged macrophytes” [J Hazard Mater 489 (2025) 137706]
Inflammatory CD11c+ B Cells Induced by the TREM2 Signal Accelerate Sepsis Development.
Correction to "Targeted Theranostics for Tuberculosis: A Rifampicin-Loaded Aggregation-Induced Emission Carrier for Granulomas Tracking and Anti-Infection".
Overcoming Immunotherapy Barriers: CA@TPGS-AmP Nanomedicine Induces Immunogenic Cell Death to Enhance PD-1 Blockade
Pyroptotic Macrophage-Derived Microvesicles Accelerate Formation of Neutrophil Extracellular Traps <i>via</i> GSDMD-N-expressing Mitochondrial Transfer during Sepsis
Galectin-3 induces pathogenic immunosuppressive macrophages through interaction with TREM2 in lung cancer
Disulfiram-loaded nanovesicles hydrogel promotes healing of diabetic wound
Dual‐Targeted Engineered Bacterial Outer Membrane Vesicles for Hepatocellular Carcinoma Immunotherapy
Disulfiram-loaded nanovesicles hydrogel promotes healing of diabetic wound.
Estrogen receptor α aggravates intestinal inflammation via promoting the activation of NLRP3 inflammasome
Multifunctional Bispecific Nanovesicles Targeting SLAMF7 Trigger Potent Antitumor Immunity.
Microencapsulated essential oils alleviate diarrhea in weaned piglets by modulating the intestinal microbial barrier as well as not inducing antibiotic resistance: a field research
NLRP12 Senses the SARS-CoV-2 Membrane Protein and Promotes an Inflammatory Response.
Supplementary Table 4 from Multifunctional Bispecific Nanovesicles Targeting SLAMF7 Trigger Potent Antitumor Immunity
Supplementary Figure 13 from Multifunctional Bispecific Nanovesicles Targeting SLAMF7 Trigger Potent Antitumor Immunity
Supplementary Table 3 from Multifunctional Bispecific Nanovesicles Targeting SLAMF7 Trigger Potent Antitumor Immunity
Supplementary Figure 16 from Multifunctional Bispecific Nanovesicles Targeting SLAMF7 Trigger Potent Antitumor Immunity
Supplementary Figure 16 from Multifunctional Bispecific Nanovesicles Targeting SLAMF7 Trigger Potent Antitumor Immunity
Supplementary Figure 1 from Multifunctional Bispecific Nanovesicles Targeting SLAMF7 Trigger Potent Antitumor Immunity