We develop drug delivery systems using biomaterials such as liposomes, exosomes, and hydrogels โ to carry therapeutics more effectively, more safely, and precisely to their target sites.
Originally rooted in cancer immunotherapy, our research is now expanding through collaborations across the university into cancer, inflammatory diseases, and skin & hair disorders โ soon including a new direction in hydrogel-based therapy for hair loss. ๐ฑ
Designing delivery platforms from liposomes, exosomes, hydrogels, and nano/bio-materials to control where and how drugs are released.
From cancer immunotherapy to hydrogel-based delivery for hair-loss treatment, extending into a broad range of disease models.
Hands-on experience spanning biomaterial synthesis, protein and cell experiments, animal studies, and drug-delivery efficacy evaluation.
From fundamental biomaterial design to applied disease therapy โ research that connects the bench to real treatment.
We are looking for students who will not simply join predefined projects, but help shape new research questions, build experimental systems, and experience the early growth of the lab together. If that sounds like you, we'd love to hear from you.