Area of research
Pulmonary and Respiratory Medicine · Electrical and Electronic Engineering
Research interest
Research interests include Medicine, Lung cancer, Cancer research, Materials science, Oncology, and Epidermal growth factor receptor.
Dual efficacy of tocilizumab in managing PD-1 inhibitors-induced myocardial inflammatory injury and suppressing tumor growth with PD-1 inhibitors: a preclinical study
Integrated multi-omics reveals glycolytic gene signatures of lung adenocarcinoma brain metastasis and the impact of Rac2 lactylation on immunosuppressive microenvironment
Acetylation of FABP3 alleviates radioimmunotherapy-induced cardiomyocyte senescence by modulating long-chain polyunsaturated fatty acid metabolism
Tuning CO<sub>2</sub> Electrocatalytic Reduction Path for High Performance of Li‐CO<sub>2</sub> Battery
Oncostatin M/Oncostatin M Receptor Signal Induces Radiation-Induced Heart Fibrosis by Regulating SMAD4 in Fibroblast
Reflecting on the cardiac toxicity in non-small cell lung cancer in the era of immune checkpoint inhibitors therapy combined with thoracic radiotherapy
Non-small cell lung cancer cells with uncommon EGFR exon 19delins variants respond poorly to third-generation EGFR inhibitors
Effect of EGFR amplification on the prognosis of EGFR-mutated advanced non–small-cell lung cancer patients: a prospective observational study
Effect and safety of anlotinib combined with S-1 for recurrent or metastatic esophageal cancer patients who refused or were intolerant to intravenous chemotherapy
Efficacy and acquired resistance for EGFR-TKI plus thoracic SBRT in patients with advanced EGFR-mutant non–small-cell lung cancer: a propensity-matched retrospective study
Two different patients with pulmonary pleomorphic carcinoma response to PD-1 inhibitor plus anlotinib
EGFR (p. G719A+L747V)/EML4-ALK Co-alterations in Lung Adenocarcinoma with Leptomeningeal Metastasis Responding to Afatinib Treatment: A Case Report
Mo-Doped FeP Nanospheres for Artificial Nitrogen Fixation
Amorphous/Crystalline Hetero‐Phase TiO<sub>2</sub>‐Coated α‐Fe<sub>2</sub>O<sub>3</sub> Core–Shell Nanospindles: A High‐Performance Artificial Nitrogen Fixation Electrocatalyst
B<sub>4</sub>C nanosheets decorated with<i>in situ</i>-derived boron-doped graphene quantum dots for high-efficiency ambient N<sub>2</sub>fixation
Colorimetric and electrochemical arsenate assays by exploiting the peroxidase-like activity of FeOOH nanorods