Area of research
Biomedical Engineering · Pulmonary and Respiratory Medicine
Research interest
Research interests include Nanoplatforms for cancer theranostics, Photodynamic Therapy Research Studies, Advanced Nanomaterials in Catalysis, and Nanoparticle-Based Drug Delivery.
Investigation of the solution-phase structure of macrocyclic anti-leukemia drug midostaurin.
TLR Agonist/Copper-Based Metformin Carbon Dot-Loaded Homologous Membrane Nanocarriers with Enhanced Immunogenic Cell Death for Synchronous Amelioration of Tumor Microenvironment Hypoxia, Immunosuppression, and Metastasis Inhibition.
Exploration into the Antitumor Potential of Chiral Oligopeptides: a Comprehensive Study Encompassing Design, Synthesis, <i>In Silico</i> Target Screening and Experimental Validation.
Fasting-mimicking diet-enriched <i>Bifidobacterium pseudolongum</i> suppresses colorectal cancer by inducing memory CD8 <sup>+</sup> T cells
Optimization of Cancer Immunotherapy Through Synergistic Enhancement of Immunogenic Cell Death by Multifunctional Nanobioreactors Combined with Immune Checkpoint Inhibitors
NLRP12 decreases TRIM25-mediated HK2 degradation to promote glycolysis and H3K18la in gastric cancer
Dual-Responsive Nanodelivery System Synergizes Elevation in Hypoxia with PD-L1 Blocking to Activate Systemic Immunity and Inhibit Distant Tumors.
Small Molecular Oligopeptides Adorned with Tryptophan Residues as Potent Antitumor Agents: Design, Synthesis, Bioactivity Assay, Computational Prediction, and Experimental Validation.
Multifunctional Carbon Nanospheres Induced Immunogenic Cell Death and Inhibited Distal Tumor Growth Based on the Synergistic Effect of Chemodynamic Therapy/Photothermal Therapy
Investigation into Cyclopeptide-Based Antitumor Agents: Design, Precision Synthesis, Virtual Target Screening, and Experimental Verification.
Immunoantitumor Activity and Oxygenation Effect Based on Iron-Copper-Doped Folic Acid Carbon Dots.
Exploring the Potential of Cyclic Peptidyl Antitumor Agents Derived from Natural Macrocyclic Peptide Phakellistatin <b>13</b>.
An accelerated lattice Boltzmann method for natural convection coupled with convolutional neural network
Anti-Colon Cancer Activity of Copper-Doped Folate Carbon Dots/MnO<sub>2</sub> Complexes Based on Oxygenation and Immune-Enhancing Effects.
Design, synthesis, and anti-tumor activity of cyclic peptide–lenalidomide conjugated small molecules
CBL0137 activates ROS/BAX signaling to promote caspase-3/GSDME-dependent pyroptosis in ovarian cancer cells
Loss of SMURF2 expression enhances RACK1 stability and promotes ovarian cancer progression
Dual-Responsive Cu(I) and Cu(II) Co-Doped Carbon Dots for Synergistic Chemodynamic-Photothermal Antitumor Therapy
Multifunctional Tumor-Targeting Carbon Dots for Tumor Microenvironment Activated Ferroptosis and Immunotherapy in Cancer Treatment.
Experimental and Simulation Research on Heat Pipe Thermal Management System Coupled with Battery Thermo-Electric Model
DFT-aided infrared and electronic circular dichroism spectroscopic study of cyclopeptide S-PK6 and the exploration of its antitumor potential by molecular docking
Molecular electrostatic potential and volume-aided drug design based on the isoindolinone-containing cyclopeptide S-PK6
A Lattice Boltzmann Front-Tracking Interface Capturing Method based on Neural Network for Gas-Liquid Two-Phase Flow
Cu<sup>2+</sup>-pyropheophorbide-a-cystine conjugate-mediated multifunctional mesoporous silica nanoparticles for photo-chemodynamic therapy/GSH depletion combined with immunotherapy cancer.
Photo-induced synthesis, stereochemistry and antitumor activity of valine-based small cyclopeptides
Cyclopeptide-based Anti-liver Cancer Agents: A Mini-review.
A Multifunctional Nanoplatform Based on Fenton-like and Russell Reactions of Cu, Mn Bimetallic Ions Synergistically Enhanced ROS Stress for Improved Chemodynamic Therapy.
Self-Supply Oxygen ROS Reactor via Fenton-like Reaction and Modulating Glutathione for Amplified Cancer Therapy Effect.
Copper nanocrystalline-doped folic acid-based super carbon dots for an enhanced antitumor effect in response to tumor microenvironment stimuli.
Novel Isoindolinone-Based Analogs of the Natural Cyclic Peptide Fenestin A: Synthesis and Antitumor Activity.