We are creating tissues and organs
while exploring new applications of therapeutics and biopharmaceuticals.
We design bioconstructs fabricated with functional biomaterials and advanced biofabrication techniques to deliver therapeutic cells to damaged tissues. Our goal is to promote tissue regeneration by enhancing cell viability, retention, and integration within the injured microenvironment.
손상된 조직 재건을 위한 세포-전달 시스템을 디자인하고 제작하고자 합니다.
▪ Development of functional biomaterials ▪ Modification of biofabrication methods ▪ Co-culture and stimulation systems
We fabricate 3D tissue constructs that mimic native biological environments using advanced bioprinting and biofabrication techniques. These models are used for studying regenerative medicine, disease modeling, and drug responses in vitro.
조직공학적 바이오가공기술을 이용해 재생의학, 질병 모델링, 약물 반응성 평가에 적용할 수 있는 3D 조직/질병 모델을 제작하고자 합니다.
▪ Biomimetic cellular microenvironments for living tissue models ▪ Organoids and 3D bioprinted organs ▪ In vitro disease Models
We are creating integrated biochips that combine bioengineered organs, organ-on-a-chip (OoC), and microphysiological systems (MPS) for real-time biological analysis. These platforms aim to enable precise drug and biopharmaceuticals testing, disease modeling, and personalized medicine applications.
바이오엔지니어드 인공장기와 OoC/MPS를 기반으로 다기능성 차세대 바이오칩 플랫폼을 개발하고자 합니다.
▪ Integrative biochips consisting of healthy/disease models ▪ Multi-organ chips like gut-liver axis ▪ AI-biochips integrated with biosensor
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