Department of Cell and Tissue Engineering, Fraunhofer Institute of Interfacial Engineering and Biotechnology (IGB) Stuttgart, Germany.
Biotechnol J. 2013 Mar;8(3):298-307. doi: 10.1002/biot.201200162. Epub 2012 Nov 19.
Bioreactor technology is vital for tissue engineering. Usually, bioreactors are used to provide a tissue-specific physiological in vitro environment during tissue maturation. In addition to this most obvious application, bioreactors have the potential to improve the efficiency of the overall tissue-engineering concept. To date, a variety of bioreactor systems for tissue-specific applications have been developed. Of these, some systems are already commercially available. With bioreactor technology, various functional tissues of different types were generated and cultured in vitro. Nevertheless, these efforts and achievements alone have not yet led to many clinically successful tissue-engineered implants. We review possible applications for bioreactor systems within a tissue-engineering process and present basic principles and requirements for bioreactor development. Moreover, the use of bioreactor systems for the expansion of clinically relevant cell types is addressed. In contrast to cell expansion, for the generation of functional three-dimensional tissue equivalents, additional physical cues must be provided. Therefore, bioreactors for musculoskeletal tissue engineering are discussed. Finally, bioreactor technology is reviewed in the context of commercial constraints.
生物反应器技术对于组织工程至关重要。通常,生物反应器用于在组织成熟过程中提供组织特异性的生理体外环境。除了最明显的应用外,生物反应器还有潜力提高整体组织工程概念的效率。迄今为止,已经开发出了各种用于组织特异性应用的生物反应器系统。其中,一些系统已经商业化。通过生物反应器技术,可以在体外生成和培养各种不同类型的功能性组织。然而,这些努力和成就本身并没有导致许多临床上成功的组织工程植入物。我们回顾了生物反应器系统在组织工程过程中的可能应用,并介绍了生物反应器开发的基本原理和要求。此外,还讨论了生物反应器系统在临床相关细胞类型扩增中的应用。与细胞扩增不同,为了生成功能性三维组织等效物,必须提供额外的物理线索。因此,讨论了用于肌肉骨骼组织工程的生物反应器。最后,根据商业限制对生物反应器技术进行了审查。