Institute of Advanced Biomedical Engineering and Science, TWIns, Tokyo Women's Medical University, Japan.
Nat Protoc. 2012 Apr 5;7(5):850-8. doi: 10.1038/nprot.2012.027.
The fabrication of 3D tissues retaining the original functions of tissues/organs in vitro is crucial for optimal tissue engineering and regenerative medicine. The fabrication of 3D tissues also contributes to the establishment of in vitro tissue/organ models for drug screening. Our laboratory has developed a fabrication system for functional 3D tissues by stacking cell sheets of confluent cultured cells detached from a temperature-responsive culture dish. Here we describe the protocols for the fabrication of 3D tissues by cell sheet engineering. Three-dimensional cardiac tissues fabricated by stacking cardiac cell sheets pulsate spontaneously, synchronously and macroscopically. Via this protocol, it is also possible to fabricate other tissues, such as 3D tissue including capillary-like prevascular networks, from endothelial cells sandwiched between layered cell sheets. Cell sheet stacking technology promises to provide in vitro tissue/organ models and more effective therapies for curing tissue/organ failures.
体外保留组织/器官原有功能的 3D 组织的构建对于优化组织工程和再生医学至关重要。3D 组织的构建还有助于建立用于药物筛选的体外组织/器官模型。我们的实验室已经开发出一种通过堆叠从温度响应培养皿中分离的细胞片来构建功能性 3D 组织的构建系统。在这里,我们描述了通过细胞片工程构建 3D 组织的方案。通过堆叠心脏细胞片构建的 3D 心脏组织可以自发、同步且宏观地搏动。通过该方案,还可以从层叠细胞片中夹入的内皮细胞构建包括毛细血管样前血管网络的 3D 组织等其他组织。细胞片堆叠技术有望为治疗组织/器官衰竭提供体外组织/器官模型和更有效的治疗方法。