首页> 外文会议>IIR workshop on cold applications in life sciences >STRATEGIES FOR THE DESIGN OF BI-LAYER SCAFFOLDS FOR THE REGENERATIVE MEDICINE AND TISSUE ENGINEERING
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STRATEGIES FOR THE DESIGN OF BI-LAYER SCAFFOLDS FOR THE REGENERATIVE MEDICINE AND TISSUE ENGINEERING

机译:用于再生医学和组织工程的双层支架设计的策略

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In the field of regenerative medicine and tissue engineering 3-dimensional collagen scaffolds play an important role to guide the formation of functional novel tissue structures. Thereby, different cell types often have to be separated for a defined period of time to generate multilayer tissue structures like skin or to control cell migration in the process of tissue regeneration. Such applications require heterogeneous scaffold structures with a bi-layer structure. Such scaffolds can decelerate or prevent cell migration by a barrier of compacted material. Additionally they may provide different pore sizes in both of the separated scaffold areas to perfectly suit the needs of different cell types. With the patented MBIT technology such materials can be generated in a single freeze-drying process. This novel approach can drastically reduce the production costs for 3-dimensional biomaterials with a multilayer structure because a stepwise construction of those scaffolds or a subsequent combination of two or more separately produced material layers is no longer necessary.
机译:在再生医学和组织工程的领域中,三维胶原支架起着重要作用以引导功能性新型组织结构的形成。由此,通常必须分离不同的细胞类型,以便为特定的时间段分离,以产生皮肤状的多层组织结构或控制组织再生过程中的细胞迁移。这些应用需要具有双层结构的异质支架结构。这种支架可以减速或通过压实材料的屏障减速或防止细胞迁移。另外,它们可以在分离的脚手架区域中提供不同的孔径,以完美地适应不同细胞类型的需求。利用专利的Mbit技术,这种材料可以在单一的冷冻干燥过程中产生。这种新方法可以大大降低三维生物材料的生产成本,具有多层结构,因为这些支架的逐步构造或随后的两个或多个单独制备的材料层的组合不再需要。

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