Research Areas

Precision Synthetic Methodology
Harnessing the power of asymmetric catalysis and photoredox chemistry to streamline the divergent construction of structurally complex and biologically privileged scaffolds. We focus on developing high-efficiency synthetic methodologies that provide rapid access to diverse chemical space for drug discovery.
Frontiers in Chemical Biology
Exploring click chemistry, proximity labeling, and sophisticated biomacromolecule modulation to elucidate and manipulate the underlying molecular logic of physiological and pathological processes. By developing novel chemical probes, we aim to visualize and control protein functions in their native biological environments.
AI-Driven Therapeutic Innovation
Integrating Artificial Intelligence with rational molecular design to accelerate the development of next-generation Targeted Protein Degradation (TPD) platforms. Notably, the group pioneers the SenoTAC (Senolytic-Targeted Chimera) strategy, providing a leading international framework for the selective clearance of senescent cells and the treatment of age-related diseases.