Area of research
Molecular Biology · Materials Chemistry
Research interest
Research interests include Advanced biosensing and bioanalysis techniques, Advanced Nanomaterials in Catalysis, Electrochemical sensors and biosensors, and Cardiac Fibrosis and Remodeling.
From Intention to Action: A Grounded Theory Study on the Staged Mechanisms of Postoperative Exercise Behavior Among Breast Cancer Patients.
Targeting sorting nexin 3 to treat pulmonary fibrosis by dual modulating Wnt/β-catenin signaling.
Cardiac Dual-Targeting Nanocatalysts for Heart Failure Therapy by Breaking the ROS-Inflammation Positive Feedback.
Development of a dissolving microneedle patch for transdermal delivery of SARS-CoV-2 mRNA vaccine with enhanced stability and immunogenicity
YAP K236 acetylation facilitates its nucleic export and deprived the protection against cardiac hypertrophy in mice
GPLD1 Attenuates Heart Failure via Dual-Membrane Localization to Inhibit uPAR.
SNX3 mediates heart failure by interacting with HMGB1 and subsequently facilitating its nuclear-cytoplasmic translocation
PERK's novel agonist protects against myocardial ischemia-reperfusion injury by modulating ER-mitochondria contacts and phosphatidic acid transport.
SNX3 mediates heart failure by interacting with HMGB1 and subsequently facilitating its nuclear-cytoplasmic translocation.
DST-3, a novel cryptotanshinone derivate, attenuates glutamate excitotoxicity after ischemic stroke via CREB-Homer1 axis activation.
Phytochemical Analysis and Neuroprotective Effect of <i>Salvia castanea</i> Diels f. <i>Tomentosa</i> Stib Extracts.
Sorting nexin 3 promotes ischemic retinopathy through RIP1- and RIP3-mediated myeloid cell necroptosis and mitochondrial fission.
Anti-atherosclerotic effects and molecular targets of ginkgolide B from Ginkgo biloba
Palmitic Acid Accelerates Endothelial Cell Injury and Cardiovascular Dysfunction via Palmitoylation of PKM2
Tetrahedral framework nucleic acids for improving wound healing
Targeting the smooth muscle cell Keap1-Nrf2-GSDMD-pyroptosis axis by cryptotanshinone prevents abdominal aortic aneurysm formation.
The SIRT3-ATAD3A axis regulates MAM dynamics and mitochondrial calcium homeostasis in cardiac hypertrophy.
Aptamer-Based Electrochemical Biosensing Platform for Analysis of Cardiac Biomarkers
Inhalable FN-binding liposomes or liposome-exosome hybrid bionic vesicles encapsulated microparticles for enhanced pulmonary fibrosis therapy
Aptamer-functionalized quasi-ZIF-67@methylene blue hybrid nanoprobes for the electrochemical aptasensing of epithelial cancer biomarkers
One-pot assembly of gold nanoparticles in different dimensional MOFs with peroxidase-like activity for enhanced bacterial eradication
Tetrahedral framework nucleic acids for improving wound healing.
Mitochondrial MOF regulates energy metabolism in heart failure via ATP5B hyperacetylation.
Integrating Artificial DNAzymes with Natural Enzymes on 2D MOF Hybrid Nanozymes for Enhanced Treatment of Bacteria-Infected Wounds.
Efficient pulmonary fibrosis therapy via regulating macrophage polarization using respirable cryptotanshinone-loaded liposomal microparticles.
AgAu-modified quasi-MIL-53 hybrid nanozymes with triple enzyme-like activities for boosting biocatalytic disinfection.
Aptamer-Based Electrochemical Biosensing Platform for Analysis of Cardiac Biomarkers.
Potential regulatory role of epigenetic modifications in aging-related heart failure
Enhanced Electrochemical Characterization of the Immune Checkpoint Protein PD-L1 using Aptamer-Functionalized Magnetic Metal-Organic Frameworks.
Double hook-type aptamer-based colorimetric and electrochemical biosensor enables rapid and robust analysis of EpCAM expression.