Department of Biomedical Engineering, Columbia University, New York, NY 10032, USA.
Cell Stem Cell. 2011 Mar 4;8(3):252-61. doi: 10.1016/j.stem.2011.02.014.
Stem cells are central to developing new treatment options for tissue regeneration and constructing controllable models for biological research. Bioengineered cell culture environments that combine microenvironmental control with tissue-specific transport and signaling are critical tools in our efforts to study tissue development, regeneration, and disease under conditions that predict the human in vivo context. We propose that experimentation at the interfaces of biology, engineering, and medical sciences is critical for unlocking the full potential of stem cells. Here, we focus on the design and utilization of in vitro platforms that recapitulate the environments associated with tissue development, disease, and regeneration.
干细胞是开发组织再生新治疗方案和构建生物研究可控模型的核心。将微环境控制与组织特异性运输和信号相结合的生物工程细胞培养环境是我们在预测体内人类环境条件下研究组织发育、再生和疾病的重要工具。我们提出,生物学、工程学和医学科学的交叉实验对于释放干细胞的全部潜力至关重要。在这里,我们专注于设计和利用体外平台,这些平台可再现与组织发育、疾病和再生相关的环境。