The University of Osaka · Medicine
Yoshiki Sawa 교수의 연구실은 심장 질환 치료를 위한 혁신적 세포 기반 치료 전략 개발에 초점을 맞추고 있습니다. 특히 유도 만능줄기세포(iPSC)에서 유래한 심장세포를 활용한 심장조직 시트, 3차원 인공심장조직 등 신진대사 효율과 수축 기능 향상을 위한 생체공학적 접근을 연구하고 있습니다. 약물 유도 심장독성 평가를 위한 인간 유도만능줄기세포 유래 심장세포 기반의 3D 모델 개발도 동시에 진행 중입니다. 이는 심부전 치료의 임상적 응용 가능성을 높이는 데 기여하고 있습니다.
Figures are computed from collected data and may differ slightly.
This study demonstrated the feasibility and safety of the transplantation of TCD-51073 in the patients with severe chronic HF due to ischemic heart disease, suggesting that TCD-51073 might maintain or improve cardiac function, symptoms, and physical function.
These findings suggest that mouse CD34(+) cells may represent a functional EPC population in bone marrow, which could benefit the investigation of therapeutic EPC biology.
The iPS-CM is superior to other somatic cell sources in terms of improving regional contractile function and cardiac bioenergetic efficiency, suggesting greater clinical benefits in severely damaged myocardium.
An in vitro drug-induced cardiotoxicity assay is a critical step in drug discovery for clinical use. The use of human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) is promising for this purpose. However, single hiPSC-CMs are limited in their ability to mimic native cardiac tissue structurally and functionally, and the generation of artificial cardiac tissue using hiPSC-CMs is an ongoing challenging. We therefore developed a new method of constructing three-dimensional (3D) art
Cell-based therapies are promising strategies for myocardial repair following myocardial infarction. Induced pluripotent stem (iPS) cells have the potential to generate many cardiomyocytes, and they hold significant promise for the application of regenerative medicine to heart failure. Here, we developed cardiac tissue sheets, termed bioengineered myocardium (BM), from mouse iPS cells and measured cardiac performance following BM implantation in a rat chronic myocardial infarction model. Immunos
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